{"id":30,"date":"2015-11-05T14:35:18","date_gmt":"2015-11-05T14:35:18","guid":{"rendered":"http:\/\/blogs.cardiff.ac.uk\/bioimaging\/?page_id=30"},"modified":"2026-02-17T10:35:52","modified_gmt":"2026-02-17T10:35:52","slug":"unit-publications","status":"publish","type":"page","link":"https:\/\/blogs.cardiff.ac.uk\/bioimaging\/unit-publications\/","title":{"rendered":"Publications"},"content":{"rendered":"<p style=\"text-align: justify\">The following list comprises known publications that have utilized the services and\/or facilities provided by the Bioimaging Research Hub. If you use our imaging or histology services and\/or facilities then (i) please properly credit the support you have received, and (ii) make us aware of any publications that arise through your work so that we can keep these pages up to date. Your continued support is essential to our success as a core facility. Thank you : )<\/p>\n<p>The Bioimaging Hub should be cited in your manuscripts as \u201cCardiff University Bioimaging Hub Core Facility, RRID:SCR_022556\u2033<\/p>\n<p><strong>2026<\/strong><\/p>\n<ul>\n<li>Hughes, C.S., Tayeb, S., Muir, D., Hayes, A.J., Watson, P., Jones, A.T. (2026) <a href=\"https:\/\/pubs.rsc.org\/en\/content\/articlelanding\/2026\/pm\/d5pm00168d\">Rapid plasma membrane reorganisation and endocytosis in HER2 breast cancer cells incubated with trastuzumab decorated polymer nanoparticles.<\/a> <i>RSC Pharm.<\/i>, 2026, Advance Article.<\/li>\n<li>Mitchell-Gee, R., Hoff, R., Vishal, K., Hancock, D., McKitrick, S., Newnes-Querejeta, C.V., Aguayo, A., Liotta, D., Waters, J.A., Lovato, T.L., Cripps, R.M., Taylor, M.V. (2026)\u00a0<a href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S2589004226000453\">The Drosophila Him gene is essential for adult muscle function and muscle stem cell maintenance.<\/a>\u00a0<em>iScience<\/em>\u00a0<strong>29<\/strong>\u00a0(2) , 114670<\/li>\n<li>Lauder, S.N., Pires, A., Somerville, M., Capitani, L., Smart, K., Geary, J., Mills, E.M., Vanhaesebroeck, B., Godkin, A., Gallimore, A. (2026) <a href=\"https:\/\/jitc.bmj.com\/content\/14\/2\/e012157\">Optimising anti-PI3K\u03b4 and anti-LAG-3 immunotherapy dosing regimens in a mouse model of triple negative breast cancer improves outcome by removing treatment-related adverse events<\/a>.<em> J ImmunoTher Cancer<\/em> <strong>14<\/strong> (2) , e012157.<\/li>\n<li>Alahmadi, A., Alotibi, R., Chan, Y-H., Taha, S., Rifqi, D., Alshehri, N., Alalawi, S., Alradi, F., Gibbs, A., Hughes, T.R.,\u00a0 Ramji, D.P. (2026) <a href=\"https:\/\/www.mdpi.com\/2076-3921\/15\/1\/76\">Resveratrol Mediates Anti-Atherogenic Actions In Vitro and in LDL Receptor-Deficient Mice Fed a High-Fat Diet via Antioxidant, Anti-Inflammatory and Plaque-Stabilising Activities.<\/a> <em>Antioxidants<\/em> <strong>15<\/strong> (1) , 76.<\/li>\n<\/ul>\n<p><strong>2025<\/strong><\/p>\n<ul>\n<li>Pan, J., Albarrak, A., Hicks, J., Williams, D., Williamson, A. (2025) <a href=\"http:\/\/10.1016\/j.bioflm.2025.100292\">Influence of the ATP-dependent DNA ligase, Lig E, on Neisseria gonorrhoeae microcolony and biofilm formation.<\/a> <em>Biofilm<\/em> <strong>10<\/strong> , 100292. DOI: <a href=\"http:\/\/10.1016\/j.bioflm.2025.100292\">10.1016\/j.bioflm.2025.100292<\/a><\/li>\n<li>Hornsby, A. K.E., Brown, R.C., Tilston, T.W., Smith, H.A, Moreno-Caba\u00f1as, A., Arms-Williams, B., Hopkins, A.L., Taylor, K.D., Rogaly, S. K.R., Wells, L. H.M., Walker, J. J., Davies, J. S., Sun, Y., Zigman, J.M., Betts, J. A., Wells, T. (2025) <a href=\"https:\/\/doi.org\/10.1172\/JCI189202\">Meal-feeding promotes skeletal growth by ghrelin-dependent enhancement of growth hormone rhythmicity<\/a>. <em>J Clin Invest<\/em>\u00a0<strong>135<\/strong> (12) , e189202. DOI: <a href=\"https:\/\/doi.org\/10.1172\/JCI189202\">10.1172\/JCI189202<\/a><\/li>\n<li>Farrell, L., Bonnet, C., Tang, A., Peneva, S., Williams, N. G., Dolwani, S., Parry, L., Dyson, P. (2025) <a href=\"https:\/\/dx.doi.org\/10.3390\/cells14070524\">Organoids with a type I collagen scaffold to model bacterial cancer therapy<\/a>. <em>Cells<\/em> <strong>14<\/strong> (7), 524. DOI: <a href=\"https:\/\/dx.doi.org\/10.3390\/cells14070524\">10.3390\/cells14070524<\/a><\/li>\n<li>Craddock, R., Tiguret, C.M., Sengpiel, F. (2025) <a href=\"https:\/\/dx.doi.org\/10.1093\/cercor\/bhaf162\">Disruptions in primary visual cortex physiology and function in a mouse model of Timothy syndrome<\/a>. <em>Cerebral Cortex<\/em> <strong>35<\/strong> (6) , bhaf162. DOI: <a href=\"https:\/\/dx.doi.org\/10.1093\/cercor\/bhaf162\">10.1093\/cercor\/bhaf162<\/a><\/li>\n<li>Best, H.L., Cook, S.R., Waller-Evans, H., Lloyd-Evans, E. (2025) <a href=\"https:\/\/dx.doi.org\/10.3390\/ijms26041471\">Niemann-Pick C-like Endolysosomal Dysfunction in DHDDS Patient Cells, a Congenital Disorder of Glycosylation, Can Be Treated with Miglustat<\/a> <em>Int. J. Mol. Sci.<\/em> 2025, <strong>26<\/strong> (4), 1471. DOI: <a href=\"https:\/\/dx.doi.org\/10.3390\/ijms26041471\">10.3390\/ijms26041471<\/a><\/li>\n<li>Salvador-Barbero, B., Alatsatianos, M., Morton, J.P., Sansom, O.J., Hogan, C. (2025) KRASG12D <a href=\"https:\/\/doi.org\/10.1053\/j.gastro.2025.02.042\">Cells Override Homeostatic Cell Elimination Mechanisms in Adult Pancreas Via Wnt5a and Cell Dormancy<\/a>. <em>Gastroenterology<\/em> <strong>169<\/strong> (5), 983-999.e21. DOI: <a href=\"https:\/\/doi.org\/10.1053\/j.gastro.2025.02.042\">10.1053\/j.gastro.2025.02.042<\/a><\/li>\n<\/ul>\n<p><strong>2024<\/strong><\/p>\n<ul>\n<li>Hayes, A.J. (2024) <a href=\"http:\/\/dx.doi.org\/10.22443\/rms.inf.1.277\">The 3D pollen library collection at NIH3D: From humble beginnings to the largest open-source collection of online 3D pollen models worldwide.<\/a> RMS <em>infocus<\/em> magazine <strong>76<\/strong>(Dec), pp. 4-17. DOI: 10.21873\/invivo.13538.<\/li>\n<li>Lu, Y.A, Smith, T., Deshpande, S., Liao, C-T., Talabani, B., Grigorieva, I., Mason, A., Andrews, R., Bowen, T., Taylor, P.R., Fraser, D. (2024) <a href=\"https:\/\/doi.org\/10.1038\/s41598-024-73102-7\">Sex-specific proximal tubular cell differentiation pathways identified by single-nucleus RNA sequencing<\/a>. Scientific Reports <strong>14<\/strong> (1) 24041. DOI: <a href=\"https:\/\/doi.org\/10.1038\/s41598-024-73102-7\">10.1038\/s41598-024-73102-7<\/a><\/li>\n<li>Coates, R.J., Scofield, S., Young, M.T. (2024) <a href=\"https:\/\/www.nature.com\/articles\/s41598-024-80444-9\">Incorporation of regulatory DNA elements within a viral vector improves recombinant protein expression in plants.<\/a> <em>Scientific Reports<\/em> <strong>14<\/strong> (1) , 28865. DOI: 10.1038\/s41598-024-80444-9.<\/li>\n<li>Gilbert, S.J., Jones, R., Elgan, B.J., Bonnet, C.S., Sam L. Evans, S.J., Mason, D.J. (2024) <a href=\"https:\/\/www.frontiersin.org\/journals\/endocrinology\/articles\/10.3389\/fendo.2024.1359052\/full\">Investigating mechanical and inflammatory pathological mechanisms in osteoarthritis using MSC-derived osteocyte-like cells in 3D.<\/a> <em>Frontiers In Endocrinology<\/em> <strong>15<\/strong> 1359052. DOI: \u00a010.3389\/fendo.2024.1359052.<\/li>\n<li>Morgan, H.J., Olivero, C., Shorning, B.Y., Gibbs, A., Phillips, A.L., Ananthan, L., Lim, A.X.H., Martuscelli, L., Borgogna, C., De Andrea, M., Hufbauer, M., Goodwin, R., Akg\u00fcl, B., Gariglio, M., Patel, G.K. (2024). <a href=\"https:\/\/insight.jci.org\/articles\/view\/177898\">HPV8-induced STAT3 activation led keratinocyte stem cell expansion in human actinic keratoses<\/a>.<em> JCI Insight<\/em> <strong>9<\/strong> (15) , e177898. DOI: 10.1172\/jci.insight.177898.<\/li>\n<li>Badder, L.M., Davies, J.A., Meniel, V.S., Maru\u0161kov\u00e1, M., Salvador-Barbera, B., Bayliss, R.J., Phesse, T.J., Hogan, C., Parker, A.J. (2024) <a href=\"https:\/\/www.nature.com\/articles\/s41416-024-02869-3\">The \u03b1v\u03b2 integrin specific virotherapy, Ad5NULL-A20.FCU1, selectively delivers potent \u201cin-tumour\u201d chemotherapy to pancreatic ductal adenocarcinoma.<\/a> <em>British Journal of Cancer<\/em> <strong>131<\/strong>, p 1694-1706. DOI: 10.1038\/s41416-024-02869-3.<\/li>\n<li>Grigorieva, I., Midgley, A., Brown, C., Chevez, G., Williams, A., Manetta-Jones, D., Bowen, T., Chan, D., Plaas, A., Chevez, R., Steadman, R., Khalid, U., Meran, S. (2024) <a href=\"https:\/\/www.biorxiv.org\/content\/10.1101\/2024.03.27.586996v1\">The hyaluronan synthase isoforms direct distinct patterns of fibroblast activation linked to fibrosis progression versus resolution following renal ischaemia.<\/a> biorxiv (preprint) DOI: 10.1101\/2024.03.27.586996.<\/li>\n<li>Brown, C.V.M., Pino-Chavez, G., Zaidi, A., Grigorieva, I., Woods, E., Steadman, R., Chavez, R., Meran, S., Khalid, U. (2024) <a href=\"https:\/\/pmc.ncbi.nlm.nih.gov\/articles\/PMC11070433\/\">Protective effect of ischaemic preconditioning on acute and chronic renal damage following ischaemia reperfusion injury: characterisation of fibrosis development after inflammation resolution<\/a>. <em>Int J Clin Exp Pathol<\/em> 2024;<strong>17<\/strong>(4):151-164.\u00a0DOI: 10.62347\/MFJG1164.<\/li>\n<li>Smith, T., Zaida, A., Brown, C.V.M., Pino-Chavez, G., Bowen, T., Meran, S., Fraser, D., Chavez, R., Khalid, U. (2024) <a href=\"https:\/\/iv.iiarjournals.org\/content\/38\/3\/1049\">Robust rat and mouse models of bilateral renal ischemia reperfusion injury.<\/a> <em>In Vivo<\/em> May 2024, <strong>38<\/strong> (3) 1049-1057. DOI: 10.21873\/invivo.13538.<\/li>\n<li>Williams, J.S., Higgins, A.T., Stott, K.J., Thomas, C., Farrell, L., Bonnet, C.S., Peneva, S., Derrick, A.V., Hay, T., Wang, T., Morgan, C., Dwyer, S., D\u2019Ambrogio, J., Hogan, C., Smalley, M.J., Parry, L., Dyson, P. (2024) <a href=\"https:\/\/cellandbioscience.biomedcentral.com\/articles\/10.1186\/s13578-024-01206-8\">Enhanced bacterial cancer therapy delivering therapeutic RNA interference of c-Myc.<\/a> <em>Cell &amp; Bioscience<\/em> (2024) <strong>14<\/strong>:38. DOI:10.1186\/s13578-024-01206-8.<\/li>\n<li>Turnham, D.J., Mullen, M.S., Bullock, N.P., Gilroy, K.L.,Richards, A.E., Patel, R., Quintela, M., Meniel, V.S., Seaton, G., Kynaston, H., Clarkson, R.W.E., Phesse, T.J., Nelson, P.S., Haffner, M.C., Staffurth, J.N., Pearson, H.B. (2024) <a href=\"https:\/\/www.mdpi.com\/2073-4409\/13\/8\/673\">Development and characterisation of a new patient-derived xenograft model of AR-negative metastatic castration-resistant prostate cancer.<\/a> <em>Cells<\/em> 2024, <strong>13<\/strong>, 673. DOI: 10.3390\/cells13080673.<\/li>\n<li>Tahani Saeedi, T.,\u00a0 Prokopovich, P. (2024) <a href=\"https:\/\/pubs.rsc.org\/en\/content\/articlelanding\/2024\/tb\/d4tb00313f\">Screening of poly-beta amino ester coated emulsion of ketorolac for cartilage delivery<\/a>. <em>J. Mater. Chem.<\/em> B, 24, 2024. DOI: 10.1039\/D4TB00313F.<\/li>\n<li>Kim, M., Kim, J.Y., Rhim, W.Y., Cimaglia, G., Want, A., Morgan, J.E., Williams, P.E., Park, C.G., Han, D.K., Rho, S. (2024) <a href=\"https:\/\/actaneurocomms.biomedcentral.com\/articles\/10.1186\/s40478-024-01777-0\">Extracellular vesicle encapsulated nicotinamide delivered via a trans-scleral route provides retinal ganglion cell neuroprotection.<\/a> <em>Acta Neuropathologica Communications.<\/em> 2024 <strong>12<\/strong>: 65. DOI: 10.1186\/s40478-024-01777-0.<\/li>\n<li>Moth, M., Messer, M., Chaudhary, S., White-Cooper, H. (2024) <a href=\"https:\/\/www.biorxiv.org\/content\/10.1101\/2023.12.13.571524v1\">Differential gene expression underpinning production of distinct sperm morphs in the wax moth <em>Galleria mellonella<\/em>.<\/a> <em>Biorxiv<\/em> (preprint). DOI: 10.1101\/2023.12.13.571524.<\/li>\n<\/ul>\n<p><strong>2023<\/strong><\/p>\n<ul>\n<li class=\"publication\">Hayes, A. J. and Melrose, J. 2023.\u00a0<a class=\"publication-article-title\" href=\"https:\/\/www.mdpi.com\/1422-0067\/24\/2\/1148\">HS, an ancient molecular recognition and information storage glycosaminoglycan, equips HS-proteoglycans with diverse matrix and cell-interactive properties operative in tissue development and tissue function in health and disease<\/a>.\u00a0<span class=\"publication-article-publication\"><em>Int. J. Mol. Sci.<\/em><\/span>\u00a0<strong>24<\/strong>(2), article number: 1148. DOI: 10.3390\/ijms24021148\/.<\/li>\n<li>Brown, C.V.M., Pino-Chavez, G., Zaidi, A., Grigorieva, I., Emma Woods, I., Steadman, S., Chavez, R., Meran, S., Khalid, U. (2023) <a href=\"https:\/\/www.biorxiv.org\/content\/10.1101\/2023.07.13.548869v1\">Ischaemic preconditioning attenuates chronic renal damage following ischaemia reperfusion injury.<\/a> <em>biorxiv<\/em> (preprint). DOI: 10.1101\/2023.07.13.548869.<\/li>\n<li>Koudouna, E., Young, R.D., Quantock, A.J., Ralphs, J.R. (2023) <a href=\"https:\/\/www.mdpi.com\/1422-0067\/24\/4\/3555\">Developmental changes in patterns of distribution of fibronectin and tenascin-C in the chicken cornea: evidence for distinct and independent functions during corneal development and morphogenesis.<\/a> <em>Int J Mol Sci.<\/em> <strong>24<\/strong>(4): 3555. DOI: 10.3390\/ijms24043555.<\/li>\n<li>Bains, K.K., Ashworth, S., Koudouna, E., Young, R.D., Hughes, C.E., Quantock, A.J. (2023) <a href=\"https:\/\/www.mdpi.com\/1422-0067\/24\/3\/2095\">Chondroitin sulphate\/dermatan sulphate proteoglycans: Potential regulators of corneal stem\/progenitor cell phenotype <em>in vitro<\/em>.<\/a><em> Int J. Mol. Sci.<\/em> <strong>24<\/strong>, 3: DOI: 10.3390\/ijms24032095.<\/li>\n<li>Klipa, O., El Gammal, M., Hamaratoglu, F. (2023) <a class=\"urlextern\" style=\"font-size: 1rem\" title=\"https:\/\/journals.biologists.com\/jcs\/article\/136\/13\/jcs259935\/323416\/Elimination-of-aberrantly-specified-cell-clones-is\" href=\"https:\/\/journals.biologists.com\/jcs\/article\/136\/13\/jcs259935\/323416\/Elimination-of-aberrantly-specified-cell-clones-is\" rel=\"nofollow\">Elimination of aberrantly specified cell clones is independent of interfacial Myosin II accumulation.<\/a><span style=\"font-size: 1rem\">\u00a0<\/span><em style=\"font-size: 1rem\">J Cell Sci<\/em><span style=\"font-size: 1rem\">\u00a0<\/span><strong style=\"font-size: 1rem\">136<\/strong><span style=\"font-size: 1rem\"> (13): jcs259935. DOI: 10.1242\/jcs.259935.<\/span><\/li>\n<li>Board-Davies, E.L., Rhys-Williams, W., Hynes, D., Love, W.G., Williams, D.W. (2023)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.frontiersin.org\/articles\/10.3389\/ffunb.2023.1225647\/full\" href=\"https:\/\/www.frontiersin.org\/articles\/10.3389\/ffunb.2023.1225647\/full\" rel=\"nofollow\">Antimicrobial effects of XF drugs against <em>Candida albicans<\/em> and its biofilms.<\/a>\u00a0<em>Frontiers in Fungal Biology<\/em>\u00a0<strong>4<\/strong>: 1225647. DOI: 10.3389\/ffunb.2023.1225647.<\/li>\n<li>Nassar, R., Nassar, M., Senok, A., Williams, D. (2023)\u00a0<a class=\"urlextern\" title=\"https:\/\/journals.asm.org\/doi\/full\/10.1128\/spectrum.00267-23?rfr_dat=cr_pub++0pubmed&amp;url_ver=Z39.88-2003&amp;rfr_id=ori%3Arid%3Acrossref.org\" href=\"https:\/\/journals.asm.org\/doi\/full\/10.1128\/spectrum.00267-23?rfr_dat=cr_pub++0pubmed&amp;url_ver=Z39.88-2003&amp;rfr_id=ori%3Arid%3Acrossref.org\" rel=\"nofollow\">Phytic acid demonstrates rapid antibiofilm activity and inhibits biofilm formation when used as a surface conditioning agent.<\/a>\u00a0<em>Microbiol Spectrum<\/em>\u00a0<strong>11<\/strong>(3):e0026723. DOI: 10.1128\/spectrum.00267-23<\/li>\n<li>Slesiona, N., Payne, L., Pope, I., Borri, P., Langbein, W., Watson, P. (2023)\u00a0<a class=\"urlextern\" title=\"https:\/\/onlinelibrary.wiley.com\/doi\/full\/10.1002\/admi.202300568\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/full\/10.1002\/admi.202300568\" rel=\"nofollow\">Correlative extinction and single fluorophore bleaching microscopy for ligand quantification on gold nanoparticles.<\/a>\u00a0<em>Adv. Mater. Interfaces<\/em> 2023: 2300568. DOI: 0.1002\/admi.202300568.<\/li>\n<li>Badder, L.M., Davies, J.A., Meniel, V.S., Maru\u0161kov\u00e1, M., Salvador-Barbera, B.,\u00a0 Bayliss, R.J., Phesse, T.J., Hogan, C., Parker, A.L. (2024) <a href=\"https:\/\/www.nature.com\/articles\/s41416-024-02869-3\">The \u03b1v\u03b2 integrin specific virotherapy, Ad5NULL-A20.FCU1, selectively delivers potent \u201cin-tumour\u201d chemotherapy to pancreatic ductal adenocarcinoma.<\/a> <em>British Journal of Cancer<\/em> <strong>131<\/strong>, p 1694-1706. DOI: 10.3390\/ijms24032095.<\/li>\n<li>Webberley, T.S., Bevan, R.J., Kerry-Smith, J., Dally, J., Michael, D.R., Thomas, S., Rees, M., Morgan, J.E., Marchesi, J.R., Good, M.A., Plummer, S. F., Wang, D., Hughes, T.R. (2023)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.ncbi.nlm.nih.gov\/pmc\/articles\/PMC10003662\/#:~:text=In%20summary%2C%20this%20study%20identified,observed%20in%20human%20SH%2DSY5Y\" href=\"https:\/\/www.ncbi.nlm.nih.gov\/pmc\/articles\/PMC10003662\/#:~:text=In%20summary%2C%20this%20study%20identified,observed%20in%20human%20SH%2DSY5Y\" rel=\"nofollow\">Assessment of Lab4P probiotic effects on cognition in 3xTg-AD Alzheimer&#8217;s disease model mice and the SH-SY5Y neuronal cell line.<\/a>\u00a0<em>Int. J. Mol. Sci.<\/em>\u00a0<strong>24<\/strong>, 4683. DOI: 10.3390\/ijms24054683.<\/li>\n<li>Shorning, S., Trent, N., Griffiths, D.F., Worzfeld, T., Offermanns, S., Smalley, M.J., Williamson, M. (2023) <a href=\"https:\/\/aacrjournals.org\/cancerrescommun\/article\/3\/3\/444\/718779\/Plexin-B1-Mutation-Drives-Metastasis-in-Prostate\">Plexin-B1 Mutation Drives Metastasis in Prostate Cancer Mouse Models.<\/a> <em>Cancer Research Communications<\/em> (2023) <strong>3<\/strong> (3): 444\u2013458. DOI: 10.1158\/2767-9764.CRC-22-0480.<\/li>\n<li>Moukachar, A., Harvey, K., Roke, E., Sloan, K., Pool, C., Moola, S., Alshukri, A., Jarvis, D., Crews-Rees, P., McDermott, G., Evans, L., Li, J., Thomas, C., Coulman, S., and Castel, O. (2023) <a href=\"https:\/\/advanced.onlinelibrary.wiley.com\/doi\/10.1002\/admt.202100868\">Development and Evaluation of a Low-Cost LEGO 3D Bioprinter: From Building-Blocks to Building Blocks of Life.<\/a> <em>Advanced Materials Technologies.<\/em> DOI: 10.1002\/admt.202100868.<\/li>\n<li>Matthew J. Higgs, Anna E. Webberley, Alasdair J. Allan, Moaz Talat, Rosalind M. John, Anthony R. Isles (2023) <a href=\"https:\/\/journals.plos.org\/plosgenetics\/article?id=10.1371\/journal.pgen.1010961\">The parenting hub of the hypothalamus is a focus of imprinted gene action. <\/a><em>PLoS Genet<\/em> <strong>19<\/strong>(10): e101096. DOI: 10.1371\/journal.pgen.1010961.<\/li>\n<li>M. J. Higgs, A. E. Webberley, R. M. John, A. R. Isles (2023) <a href=\"https:\/\/www.biorxiv.org\/content\/10.1101\/2023.03.27.534088v1\">Parenting deficits in Magel2-null mice predicted from systematic investigation of imprinted gene expression in galanin neurons of the hypothalamus.<\/a> <em>biorxziv<\/em> (preprint). DOI: 10.1101\/2023.03.27.534088 .<\/li>\n<li>Mazzarino, M., Cetin, E., Marinovic, M.B., Ipseiz, N., Hughes, T.R., Schmitt, C.P., Ramji, D.P., Labeta, M.O., Raby, A-.C. (2023) <a href=\"https:\/\/www.frontiersin.org\/journals\/immunology\/articles\/10.3389\/fimmu.2023.1240679\/full\">Therapeutic targeting of chronic kidney disease-associated DAMPs differentially contributing to vascular pathology.<\/a> <em>Front. Immunol<\/em>. <strong>14<\/strong>:1240679. DOI: 10.3389\/fimmu.2023.1240679.<\/li>\n<li>Cetin, E., Mazzarino, M., Gonz\u00e1lez-Mateo, G.T., Kopytina, V., Meran, S., Fraser, D., L\u00f3pez-Cabrera, M., Mario O. Lab\u00e9ta, M.O., Raby, A.-C. (2023) <a href=\"https:\/\/www.frontiersin.org\/journals\/cellular-and-infection-microbiology\/articles\/10.3389\/fcimb.2023.1285193\/full\">Calprotectin blockade inhibits long-term vascular pathology following peritoneal dialysis-associated bacterial infection.<\/a> <em>Front Cell Infect Microbiol<\/em>. 2023; <strong>13<\/strong>: 1285193. DOI: 10.3389%2Ffcimb.2023.1285193.<\/li>\n<li>Ordonez, L., Tornillo, G., Kendrick, H., Hay, T., Smalley, M.J. (2023) <a href=\"https:\/\/www.mdpi.com\/2072-6694\/15\/17\/4324\">NOTCH and KT Signalling Interact to Drive Mammary Tumour Heterogeneity.<\/a> <em>Cancers<\/em> 2023, <strong>15<\/strong>, 4324. DOI: 10.3390\/cancers15174324.<\/li>\n<\/ul>\n<p><strong>2022<\/strong><\/p>\n<ul>\n<li>Hayes, A.J., Farrugia, B.L., Biose, I.J., Bix, G.J., Melrose, J. (2022)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.ncbi.nlm.nih.gov\/pmc\/articles\/PMC9010944\/\" href=\"https:\/\/www.ncbi.nlm.nih.gov\/pmc\/articles\/PMC9010944\/\" rel=\"nofollow\">Perlecan, a multi-functional, cell-instructive, matrix-stabilizing proteoglycan with roles in tissue development has relevance to connective tissue repair and regeneration.<\/a>\u00a0<em>Front Cell Dev Biol<\/em>. 2022,\u00a0<strong>10<\/strong>: 856261. DOI: 10.3389\/fcell.2022.856261.<\/li>\n<li>Hayes, A.J., Whitelock, J., Melrose, J. (2022)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.mdpi.com\/1422-0067\/23\/4\/1934\" href=\"https:\/\/www.mdpi.com\/1422-0067\/23\/4\/1934\" rel=\"nofollow\">Regulation of FGF-2, FGF-18, and transcription factor activity by perlecan in the maturational development of transitional rudiment and growth plate cartilages and in the maintenance of permanent cartilage homeostasis.<\/a>\u00a0<em>J. Mol. Sci.<\/em>\u00a02022,\u00a0<strong>23<\/strong>(4): 1934. DOI: 10.3390\/ijms23041934.<\/li>\n<li>Smith, M.M., Hayes, A.J., Melrose, J. (2022)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.liebertpub.com\/doi\/epub\/10.1089\/scd.2022.0007\" href=\"https:\/\/www.liebertpub.com\/doi\/epub\/10.1089\/scd.2022.0007\" rel=\"nofollow\">Pentosan polysulphate, a semisynthetic heparinoid disease-modifying osteoarthritic drug with roles in intervertebral disc repair biology emulating the stem cell instructive and tissue reparative properties of heparan sulfate.<\/a>\u00a0<em>Stem Cells and Development<\/em>.\u00a0<strong>31<\/strong>: 15-16. DOI: 10.3390\/ijms23041934.<\/li>\n<li>Bricking, A., Hayes, A., Madgwick, R. (2022) An interim report on histological analysis of human bones from Fishmonger&#8217;s Swallet, Gloucestershire. <em>Proceedings of the University of Bristol Speleological Society<\/em> <strong>29<\/strong> (1) , pp. 67-86.<\/li>\n<li>Best, H.L., Williamson, L.J., Lipka-Lloyd, M., Waller-Evans, H., Lloyd-Evans, E., Rizkallah, P.J., Berry, C. (2022)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.mdpi.com\/2072-6651\/14\/12\/863\" href=\"https:\/\/www.mdpi.com\/2072-6651\/14\/12\/863\" rel=\"nofollow\">The crystal structure of <em>Bacillus thuringiensis<\/em> Tpp80Aa1 and its interaction with galactose-containing glycolipids.<\/a>\u00a0<em>Toxins<\/em>\u00a0<strong>14<\/strong>: 863. DOI: 10.3390\/toxins14120863.<\/li>\n<li>Markov, P., Zhu, H., Boote, C., Blain, E.J. (2022) <a href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S2405580822001388?via%3Dihub\">Delayed reorganisation of F-actin cytoskeleton and reversible chromatin condensation in scleral ibroblasts under simulated pathological strain.<\/a> DOI: 10.1016\/j.bbrep.2022.101338.<\/li>\n<li>Gilbert, S.J., Blain, E.J., Mason, D.J. (2022) <a href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S2405580822001236?via%3Dihub#ack0010\">Interferon-gamma modulates articular chondrocyte and osteoblast metabolism through protein kinase R-independent and dependent mechanisms.<\/a> <em>Biochem Biophys Reports<\/em> <strong>32<\/strong>, 101323. DOI: <span class=\"anchor-text-container\"><span class=\"anchor-text\">10.1016\/<\/span><\/span><span class=\"anchor-text-container\"><span class=\"anchor-text\">j.bbrep.2022.101323.<\/span><\/span><\/li>\n<\/ul>\n<p><strong>2021<\/strong><\/p>\n<ul>\n<li>Hayes, A.J., Melrose, J. (2021) <a class=\"urlextern\" title=\"https:\/\/www.frontiersin.org\/articles\/10.3389\/fcell.2021.696640\/full\" href=\"https:\/\/www.frontiersin.org\/articles\/10.3389\/fcell.2021.696640\/full\" rel=\"nofollow\">Neural tissue homeostasis and repair is regulated via CS and DS proteoglycan motifs.<\/a>\u00a0<em>Frontiers Cell Dev Biol<\/em>\u00a0<strong>9<\/strong>: 696640. DOI: 10.3389\/fcell.2021.696640<\/li>\n<li>Melrose, J., Hayes, A.J., Bix, G. (2021)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.mdpi.com\/1422-0067\/22\/11\/5583\" href=\"https:\/\/www.mdpi.com\/1422-0067\/22\/11\/5583\" rel=\"nofollow\">The CNS\/PNS extracellular matrix provides instructive guidance cues to neural cells and neuroregulatory proteins in neural development and repair.<\/a>\u00a0<em>Internat J Mol Sci<\/em>. 2021,\u00a0<strong>22<\/strong>: 5583. DOI: 10.3390\/ijms22115583.<\/li>\n<li>Farrugia, B., Hayes, A.J., Melrose, J. (2021) Chapter 4: Use of chondroitin sulphate to aid stem cell differentiation. In:\u00a0<a class=\"urlextern\" title=\"https:\/\/link.springer.com\/book\/10.1007\/978-3-030-73453-4\" href=\"https:\/\/link.springer.com\/book\/10.1007\/978-3-030-73453-4\" rel=\"nofollow\">\u201cProteoglycans in Stem Cells: From Development to Cancer\u201d<\/a>\u00a0<em>Biology of the Extracellular Matrix<\/em>, volume\u00a0<strong>9<\/strong>. Eds: G\u00f6tte, M. &amp; Forsberg-Nilsson, K. Springer International Publishing. ISBN 978-3-030-73452-7.<\/li>\n<li>Guilak, F., Hayes, A.J., Melrose, J. (2021)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.ncbi.nlm.nih.gov\/pmc\/articles\/PMC7962540\/\" href=\"https:\/\/www.ncbi.nlm.nih.gov\/pmc\/articles\/PMC7962540\/\" rel=\"nofollow\">Perlecan in pericellular mechanosensory cell-matrix communication, extracellular matrix stabilisation and mechanoregulation of load-bearing connective tissues.<\/a>\u00a0<em>Internat J Mol Sci<\/em>.\u00a0<strong>22<\/strong>\u00a0(5): 2716. DOI: 10.3390\/ijms22052716.<\/li>\n<li>Hayes, A.J., Melrose, J. (2021)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.mdpi.com\/1422-0067\/22\/9\/4415\" href=\"https:\/\/www.mdpi.com\/1422-0067\/22\/9\/4415\" rel=\"nofollow\">What are the potential roles of nuclear perlecan and other heparan sulphate proteoglycans in the normal and malignant phenotype.<\/a>\u00a0<em>Internat J Mol Sci.<\/em>\u00a02021,\u00a0<strong>22<\/strong>(9): 4415. DOI: 10.3390\/ijms22094415.<\/li>\n<li style=\"margin-left: 1.71429rem\">Ashworth, S., Harrington, J., Hammond, G.M., Bains, K.K., Koudouna, E. Hayes, A.J., Ralphs, J.R., Regini, J.W., Young, R.D., Hayashi, R., Nishida, K., Hughes, C.E., Quantock, A.J. 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(2021)\u00a0<a class=\"urlextern\" title=\"https:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/jbio.202000202\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/jbio.202000202\" rel=\"nofollow\">3D immuno-confocal image reconstruction of fibroblast cytoskleleton and nucleus architecture.<\/a>\u00a0<em>J. Biophotonics.<\/em>\u00a02021;14:e202000202. DOI: 10.1002\/jbio.202000202.<\/li>\n<li>O&#8217;Morain, V.L., Chan, Y.-H., Williams, J.O., Alotibi, R., Alahmadi, A., Rodrigues, N.P., Plummer, S.F., Hughes, T.R., Michael, D.R., Ramji, D.P. (2021)\u00a0<a class=\"urlextern\" title=\"https:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/mnfr.202100214\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/mnfr.202100214\" rel=\"nofollow\">The Lab4P Consortium of Probiotics Attenuates Atherosclerosis in LDL Receptor Deficient Mice Fed a High Fat Diet and Causes Plaque Stabilization by Inhibiting Inflammation and Several Pro-Atherogenic Processes.<\/a>\u00a0<em>Molecular Nutrition &amp; Food Research<\/em>\u00a0<strong>65<\/strong>(17): 2100214. DOI: 10.1002\/mnfr.202100214.<\/li>\n<\/ul>\n<p><strong>2020<\/strong><\/p>\n<ul>\n<li>Hayes, A.J., Melrose, J. 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DOI: 10.1002\/dvdy.23970.<\/li>\n<li>Williams, C., Millet, C.O.M., Hayes, A.J., Cable, J., Lloyd, D. (2013)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.cell.com\/trends\/parasitology\/fulltext\/S1471-4922(13)00070-6\" href=\"https:\/\/www.cell.com\/trends\/parasitology\/fulltext\/S1471-4922(13)00070-6\" rel=\"nofollow\">Diversity in mitochondrion-derived organelles of the parasitic diplomonads Spironucleus and Giardia.<\/a>\u00a0<em>Trends in Parasitology<\/em>\u00a0<strong>29<\/strong>\u00a0: 311-312. DOI: 10.1016\/j.pt.2013.04.004.<\/li>\n<li>Li, S., Hayes, A.J., Caterson, B., Hughes, C.E. (2013)\u00a0<a class=\"urlextern\" title=\"https:\/\/link.springer.com\/content\/pdf\/10.1007\/s00418-012-1017-1.pdf\" href=\"https:\/\/link.springer.com\/content\/pdf\/10.1007\/s00418-012-1017-1.pdf\" rel=\"nofollow\">The effect of beta-xylosides on the chondrogenic differentiation of mesenchymal stem cells.<\/a>\u00a0<em>Histochemistry and Cell Biology<\/em>\u00a0<strong>139<\/strong>: 59-74. DOI 10.1007\/s00418-012-1017-1.<\/li>\n<li>Hayes AJ, Smith SM, Melrose J (2013)\u00a0<a class=\"urlextern\" title=\"https:\/\/link.springer.com\/content\/pdf\/10.1007\/s00418-012-1041-1.pdf\" href=\"https:\/\/link.springer.com\/content\/pdf\/10.1007\/s00418-012-1041-1.pdf\" rel=\"nofollow\">Comparative immunolocalisation of fibrillin-1 and perlecan in the human foetal, and HS-deficient hspg2 exon 3 null mutant mouse intervertebral disc.<\/a>\u00a0<em>Histochemistry &amp; Cell Biology<\/em>\u00a0<strong>139<\/strong>: 1-11. DOI 10.1007\/s00418-012-1041-1.<\/li>\n<li>Lloyd, D., Williams, C.F., Vijayalakshmi, K., Kombrabail, White, N., Hayes, A.J., Aon, M.A., Krishnamoorthy, G. (2013)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.worldscientific.com\/doi\/pdf\/10.1142\/S1793545813500417\" href=\"https:\/\/www.worldscientific.com\/doi\/pdf\/10.1142\/S1793545813500417\" rel=\"nofollow\">Intracellular oxygen: similar results from two methods of measurement using phosphorescent nanoparticles.<\/a>\u00a0<em>Journal of Innovative Optical Health Sciences<\/em>\u00a0<strong>7<\/strong>: 1350041 (14 pages). DOI: 10.1142\/S1793545813500417.<\/li>\n<li>Melrose, J., Isaacs, M.D., Smith, S.M., Hughes, C.E., Little, C.B., Caterson, B., Hayes, A.J. (2012)\u00a0<a class=\"urlextern\" title=\"https:\/\/link.springer.com\/content\/pdf\/10.1007\/s00418-012-0968-6.pdf\" href=\"https:\/\/link.springer.com\/content\/pdf\/10.1007\/s00418-012-0968-6.pdf\" rel=\"nofollow\">Chondroitin sulphate and heparan sulphate sulphation motifs and their proteoglycans are involved in articular cartilage formation during human foetal knee joint development.<\/a>\u00a0<em>Histochem Cell Biol<\/em>\u00a0<strong>138<\/strong>: 461-475. DOI 10.1007\/s00418-012-0968-6.<\/li>\n<li>Taylor, D.W., Ahmed, N., Hayes, A.J., Ferguson, P., Gross, A.E., Caterson, B., Kandel, R.A. (2012)\u00a0<a class=\"urlextern\" title=\"https:\/\/journals.sagepub.com\/doi\/pdf\/10.1369\/0022155412449018\" href=\"https:\/\/journals.sagepub.com\/doi\/pdf\/10.1369\/0022155412449018\" rel=\"nofollow\">Hyaline Cartilage tissue is formed through the co-culture of passaged human chondrocytes and primary bovine chondrocytes.<\/a>\u00a0<em>J Histochem Cytochem<\/em>\u00a0<strong>60<\/strong>: 576-597. DOI: 10.1369\/0022155412449018.<\/li>\n<li>Hooper, S., Percival, S., Hill, K., Thomas, D., Hayes, A.J., Williams, D. (2012)\u00a0<a class=\"urlextern\" title=\"https:\/\/onlinelibrary.wiley.com\/doi\/pdf\/10.1111\/j.1742-481X.2012.00927.x\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/pdf\/10.1111\/j.1742-481X.2012.00927.x\" rel=\"nofollow\">The visualisation and speed of kill of wound isolates on a silver alginate dressing.<\/a>\u00a0<em>International Wound Journal<\/em>\u00a0<strong>9<\/strong>: 633-642. DOI: 10.1111\/j.1742-481X.2012.00927.x.<\/li>\n<li>Lloyd, D., Coogan, M. P. and Pope, S. J. 2012.\u00a0<a class=\"urlextern\" title=\"https:\/\/link.springer.com\/chapter\/10.1007\/978-1-4419-9828-6_2\" href=\"https:\/\/link.springer.com\/chapter\/10.1007\/978-1-4419-9828-6_2\" rel=\"nofollow\">Novel metal-based luminophores for biological imaging.<\/a>\u00a0In: Geddes, C. D. ed.\u00a0<em>Reviews in Fluorescence 2010<\/em>, Vol.\u00a0<strong>7<\/strong>. New York: Springer, pp. 15-44.<\/li>\n<li>Hayes, A.J., Isaacs, M.D., Hughes, C., Caterson, B., Ralphs, J.R. (2011)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.ecmjournal.org\/papers\/vol022\/pdf\/v022a18.pdf\" href=\"https:\/\/www.ecmjournal.org\/papers\/vol022\/pdf\/v022a18.pdf\" rel=\"nofollow\">Collagen fibrillogenesis in the development of the annulus fibrosus of the intervertebral disc.<\/a>\u00a0<em>Eur Cell Mater<\/em>\u00a0<strong>22<\/strong>: 226-241. DOI: 10.22203\/eCM.v022a18.<\/li>\n<li>Hayes, A.J., Lord, M.S., Smith, M.M., Whitelock, J.M., Weiss, A.S., Melrose, J. (2011)\u00a0<a class=\"urlextern\" title=\"https:\/\/link.springer.com\/content\/pdf\/10.1007\/s00418-011-0854-7.pdf\" href=\"https:\/\/link.springer.com\/content\/pdf\/10.1007\/s00418-011-0854-7.pdf\" rel=\"nofollow\">Colocalization in vivo and association in vitro of perlecan and elastin.<\/a>\u00a0<em>Histochem Cell Biol<\/em>\u00a0<strong>136<\/strong>: 537-454. DOI10.1007\/s00418-011-0854-7.<\/li>\n<li>Hayes, A.J., Ralphs, J.R. (2011)\u00a0<a class=\"urlextern\" title=\"https:\/\/link.springer.com\/content\/pdf\/10.1007\/s00418-011-0835-x.pdf\" href=\"https:\/\/link.springer.com\/content\/pdf\/10.1007\/s00418-011-0835-x.pdf\" rel=\"nofollow\">The response of foetal annulus fibrosus cells to growth factors: modulation of matrix synthesis by TGF-b1 and IGF-1.<\/a>\u00a0<em>Histochem Cell Biol<\/em>\u00a0<strong>136<\/strong>: 163-175. DOI 10.1007\/s00418-011-0835-x.<\/li>\n<li>Hayes A.J., Smith, S.M., Gibson, M.A., Melrose, J. (2011)\u00a0<a class=\"urlextern\" title=\"https:\/\/journals.lww.com\/spinejournal\/fulltext\/2011\/10010\/comparative_immunolocalization_of_the_elastin.19.aspx\" href=\"https:\/\/journals.lww.com\/spinejournal\/fulltext\/2011\/10010\/comparative_immunolocalization_of_the_elastin.19.aspx\" rel=\"nofollow\">Comparative immunolocalisation of the elastin fibre associated proteins fibrillin-1, LTBP2 and MAGP-1 with components of the collagenous and proteoglycan matrix of the foetal human intervertebral disc.<\/a>\u00a0<em>Spine<\/em>\u00a0<strong>36<\/strong>: E1365-1372. DOI: 10.1097\/BRS.0b013e31821fd23e.<\/li>\n<li>Parsons, P., Gilbert, S.J., Vaughan-Thomas, A., Sorrel, D.A., Notman, R., Bishop, M., Hayes, A.J., Mason, D.J., Duance, V.C. (2011)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.jbc.org\/article\/S0021-9258(20)73880-9\/fulltext\" href=\"https:\/\/www.jbc.org\/article\/S0021-9258(20)73880-9\/fulltext\" rel=\"nofollow\">Type IX collagen interacts with fibronectin providing an important molecular bridge in articular cartilage.<\/a>\u00a0<em>J Biol Chem<\/em>\u00a0<strong>286<\/strong>: 34986-34997. DOI: 10.1074\/jbc.M111.238188.<\/li>\n<li>Shorning, B.Y., Grifffiths, D., Clarke, A.R. (2011)\u00a0<a class=\"urlextern\" title=\"https:\/\/journals.plos.org\/plosone\/article\/file?id=10.1371\/journal.pone.0016209&amp;type=printable\" href=\"https:\/\/journals.plos.org\/plosone\/article\/file?id=10.1371\/journal.pone.0016209&amp;type=printable\" rel=\"nofollow\">Lkb1 and Pten synergise to suppress mTOR-mediated tumorigenesis and epithelial-mesenchymal transition in the mouse bladder.<\/a>\u00a0<em>PLoS One<\/em>\u00a0<strong>6<\/strong>(1): e16209. DOI:10.1371\/journal.pone.0016209.<\/li>\n<li>Thorp-Greenwood, F.L., Fernandez-Moreira, V., Millet, C.O., Williams, C.F., Cable, J., Court, J.B., Hayes, A.J., Lloyd, D., Coogan, M.P. (2011)\u00a0<a class=\"urlextern\" title=\"https:\/\/pubs.rsc.org\/en\/content\/articlepdf\/2011\/cc\/c1cc10141b\" href=\"https:\/\/pubs.rsc.org\/en\/content\/articlepdf\/2011\/cc\/c1cc10141b\" rel=\"nofollow\">A \u2018Sleeping Trojan Horse\u2019 which transports metal ions into cells, localises in nucleoli, and has potential for bimodal fluorescence\/PET imaging.<\/a>\u00a0<em>Chem Commun<\/em>\u00a0<strong>47<\/strong>: 3096-3098. DOI:10.1039\/c1cc10141b.<\/li>\n<li>Evans, L., Williams, A.S., Hayes, A.J., Jones, S.A., Nowell, M. (2011)\u00a0<a class=\"urlextern\" title=\"https:\/\/onlinelibrary.wiley.com\/doi\/epdf\/10.1002\/art.30338\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/epdf\/10.1002\/art.30338\" rel=\"nofollow\">Suppression of leukocyte infiltration and cartilage degradation by selective inhibition of pre\u2013B cell colony-enhancing factor\/visfatin\/nicotinamide phosphoribosyltransferase: Apo866-mediated therapy in human fibroblasts and murine collagen-induced arthritis.<\/a>\u00a0<em>Arthritis &amp; Rheumatology<\/em>\u00a0<strong>63<\/strong>: 1866-1877. DOI 10.1002\/art.30338.<\/li>\n<li>Hayes, A.J., Hughes, C., Ralphs, J., Caterson, B. (2011)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.ecmjournal.org\/papers\/vol021\/vol021a01.php\" href=\"https:\/\/www.ecmjournal.org\/papers\/vol021\/vol021a01.php\" rel=\"nofollow\">Chondroitin sulphate sulphation motif expression in the ontogeny of the intervertebral disc.<\/a>\u00a0<em>Eur Cell Mater<\/em>\u00a0<strong>21<\/strong>: 1-14. DOI:10.22203\/eCM.<\/li>\n<li>Khan, I.M., Evans, S.L., Young, R.D., Blain , E.J., Quantock, A.J., Avery, A., Archer, C.W. (2011)\u00a0<a class=\"urlextern\" title=\"https:\/\/onlinelibrary.wiley.com\/doi\/epdf\/10.1002\/art.30543\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/epdf\/10.1002\/art.30543\" rel=\"nofollow\">Fibroblast growth factor 2 and transforming growth factor \u03b21 induce precocious maturation of articular cartilage.<\/a>\u00a0<em>Arthritis &amp; Rheumatology<\/em>.\u00a0<strong>63<\/strong>: 3417-3427. DOI 10.1002\/art.30543.<\/li>\n<li>Silva, S., Henriques, M., Hayes, A.J., Oliveira, R., Azeredo, J., Williams, D.W. (2010)\u00a0<a class=\"urlextern\" title=\"https:\/\/onlinelibrary.wiley.com\/doi\/10.1111\/j.1600-0714.2010.00981.x\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/10.1111\/j.1600-0714.2010.00981.x\" rel=\"nofollow\">Candida glabrata and Candida albicans co-infection of an in vitro oral epithelium.<\/a>\u00a0<em>J Oral Pathol Med<\/em>\u00a0<strong>50<\/strong>: 421-427.<\/li>\n<li>Akhtar, S., Bron, A.J., Hayes, A.J., Meek, K.M., Caterson (2010)\u00a0<a class=\"urlextern\" title=\"https:\/\/link.springer.com\/content\/pdf\/10.1007\/s00417-010-1512-9.pdf\" href=\"https:\/\/link.springer.com\/content\/pdf\/10.1007\/s00417-010-1512-9.pdf\" rel=\"nofollow\">Role of keratan sulphate (sulphated poly-N-acetyllactosamine repeats) in keratoconic cornea, histochemical, and ultrastructural analysis.<\/a>\u00a0<em>Graefes Arch Clin Exp Ophthalmol<\/em>\u00a0<strong>249<\/strong>: 413-420. 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(2010)\u00a0<a class=\"urlextern\" title=\"https:\/\/pubs.rsc.org\/en\/content\/articlepdf\/2010\/pp\/b9pp00071b\" href=\"https:\/\/pubs.rsc.org\/en\/content\/articlepdf\/2010\/pp\/b9pp00071b\" rel=\"nofollow\">Probing intracellular oxygen by quenched phosphorescence lifetimes of nanoparticles containing polyacrylamide-embedded [Ru(dpp(SO3Na)2)3]Cl2.<\/a>\u00a0<em>Photochem Photobiol Sci<\/em>\u00a0<strong>9<\/strong>: 103-109. DOI:10.1039\/b9pp00071b.<\/li>\n<li>Malic S.M., Hill, K.E., Hayes, A.J., Percival S.L., Thomas, D., Williams, D.W. 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(2008)\u00a0<a class=\"urlextern\" title=\"https:\/\/journals.sagepub.com\/doi\/full\/10.1369\/jhc.7A7320.2007\" href=\"https:\/\/journals.sagepub.com\/doi\/full\/10.1369\/jhc.7A7320.2007\" rel=\"nofollow\">Chondroitin sulfate sulfation motifs as putative biomarkers for isolation of articular cartilage progenitor cells.<\/a>\u00a0<em>J Histochem Cytochem<\/em>\u00a0<strong>56<\/strong>: 125-138. DOI: 10.1369\/jhc.7A7320.2007.<\/li>\n<li>Hayes, A.J., Hall, A., Brown, L., Tubo, R, Caterson, B. (2007)\u00a0<a class=\"urlextern\" title=\"https:\/\/journals.sagepub.com\/doi\/10.1369\/jhc.7A7210.2007\" href=\"https:\/\/journals.sagepub.com\/doi\/10.1369\/jhc.7A7210.2007\" rel=\"nofollow\">Macromolecular organization and in vitro growth characteristics of scaffold-free neocartilage grafts.<\/a>\u00a0<em>J Histochem Cytochem<\/em>\u00a0<strong>55<\/strong>: 853-866. DOI: 10.1369\/jhc.7A7210.20.<\/li>\n<li>Gealy, E.C., Kerr, B.C., Young, R.D., Tudor, D., Hayes, A.J., Hughes, C.E., Caterson, B., Quantock, A.J., Ralphs, J.R. (2007)\u00a0<a class=\"urlextern\" title=\"https:\/\/link.springer.com\/article\/10.1007\/s00418-007-0332-4\" href=\"https:\/\/link.springer.com\/article\/10.1007\/s00418-007-0332-4\" rel=\"nofollow\">Differential expression of the keratan sulphate proteoglycan, keratocan, during chick corneal embryogenesis.<\/a>\u00a0<em>Histochem Cell Biol<\/em>\u00a0<strong>128<\/strong>: 551-555. DOI 10.1007\/s00418-007-0332-4.<\/li>\n<li>Amoroso, A.J., Coogan, M.P., Dunne, J.E., Fernandez-Moreira, V., Hess, J.B., Hayes, A.J., Lloyd, D., Millet, C., Pope, S.J., Williams, C. (2007)\u00a0<a class=\"urlextern\" title=\"https:\/\/pubs.rsc.org\/en\/content\/articlelanding\/2007\/cc\/b706657k\" href=\"https:\/\/pubs.rsc.org\/en\/content\/articlelanding\/2007\/cc\/b706657k\" rel=\"nofollow\">Rhenium fac tricarbonyl bisimine complexes: biologically useful fluorochromes for cell imaging applications.\u00a0<\/a><em>Chem Commun (Camb)<\/em>\u00a0<strong>2007<\/strong>: 3066-3068. DOI: 10.1039\/B706657K.<\/li>\n<li>Workman, V.L., Dunnett, S.B., Kille, P., Palmer, D.D. (2007)\u00a0<a class=\"urlextern\" title=\"https:\/\/onlinelibrary.wiley.com\/doi\/full\/10.1002\/marc.200700641\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/full\/10.1002\/marc.200700641\" rel=\"nofollow\">On-chip alginate microencapsulation of functional cells.<\/a>\u00a0<em>Macromolecular Rapid Communications<\/em>\u00a0<strong>28<\/strong>: 165-170. DOI: 10.1002\/marc.200700641.<\/li>\n<li>Workman, V. L., Dunnett, S. B., Kille, P, Palmer, D. D. (2007)\u00a0<a class=\"urlextern\" title=\"https:\/\/pubs.aip.org\/aip\/bmf\/article\/1\/1\/014105\/133803\/Microfluidic-chip-based-synthesis-of-alginate\" href=\"https:\/\/pubs.aip.org\/aip\/bmf\/article\/1\/1\/014105\/133803\/Microfluidic-chip-based-synthesis-of-alginate\" rel=\"nofollow\">Microfluidic chip-based synthesis of alginate microspheres for encapsulation of immortalized human cells.<\/a>\u00a0<em>Biomicrofluidics<\/em>\u00a0<strong>1<\/strong>: 014105. DOI: 10.1063\/1.2431860.<\/li>\n<li>Blain, E.J., Gilbert, S.J., Hayes, A.J., Duance, V.C. (2006)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0945053X06000722\" href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0945053X06000722\" rel=\"nofollow\">Disassembly of the vimentin cytoskeleton disrupts articular cartilage chondrocyte homeostasis.<\/a>\u00a0<em>Matrix Biol<\/em>\u00a0<strong>25<\/strong>: 398-408. DOI: 10.1016\/j.matbio.2006.06.002.<\/li>\n<li>Aon, M.A., Cortassa S., Lemar K.M., Hayes, A.J., Lloyd D. (2006)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0014579306014098\" href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0014579306014098\" rel=\"nofollow\">Single and cell population respiratory oscillations in yeast: a 2 photon scanning laser microscopy study.<\/a>\u00a0<em>FEBS Lett<\/em>\u00a0<strong>581<\/strong>: 8-14. DOI: 10.1016\/j.febslet.2006.11.068.<\/li>\n<li>Malic, S., Hill, H.E., Ralphs, J.R., Hayes, A.J., Thomas D.W., Potts A.J., Williams D.W. (2006)\u00a0<a class=\"urlextern\" title=\"https:\/\/onlinelibrary.wiley.com\/doi\/10.1111\/j.1399-302X.2007.00344.x\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/10.1111\/j.1399-302X.2007.00344.x\" rel=\"nofollow\">Characterisation of Candida albicans infection of an in vitro oral epithelial model using confocal laser scanning microscopy.<\/a>\u00a0<em>Oral Microbiol Immunol<\/em>\u00a0<strong>22<\/strong>: 188-194. DOI: 10.1111\/j.1399-302X.2007.00344.x.<\/li>\n<li>Reed, K.R., Sansom, O.J., Hayes, A.J., Gescher, A.J., Peters, J.M., Clarke, A.R. (2006)\u00a0<a class=\"urlextern\" title=\"https:\/\/bmccancer.biomedcentral.com\/articles\/10.1186\/1471-2407-6-113\" href=\"https:\/\/bmccancer.biomedcentral.com\/articles\/10.1186\/1471-2407-6-113\" rel=\"nofollow\">PPAR Delta Status and mismatch repair mediated neoplasia in the mouse intestine.<\/a>\u00a0<em>BMC cancer<\/em>\u00a0<strong>6<\/strong>: 113. DOI: 10.1186\/1471-2407-6-113.<\/li>\n<li>Thomas, R.S., Liddell, J.E., Murphy, L.S., Pache, D.M., Kidd, E.J. (2006)\u00a0<a class=\"urlextern\" title=\"https:\/\/content.iospress.com\/articles\/journal-of-alzheimers-disease\/jad00637\" href=\"https:\/\/content.iospress.com\/articles\/journal-of-alzheimers-disease\/jad00637\" rel=\"nofollow\">An antibody to the beta-secretase cleavage site on amyloid-beta-protein precursor inhibits amyloid-beta production.<\/a>\u00a0<em>J Alzheimers Dis<\/em>\u00a0<strong>10<\/strong>: 379-390. DOI: 10.3233\/JAD-2006-10406.<\/li>\n<li>Young, R.D., Tudor, D., Hayes, A.J., Kerr, B., Hayashida, Y., Nishida, K., Meek, K.M., Caterson, B., Quantock, A.J. (2005)\u00a0<a class=\"urlextern\" title=\"https:\/\/iovs.arvojournals.org\/article.aspx?articleid=2163752\" href=\"https:\/\/iovs.arvojournals.org\/article.aspx?articleid=2163752\" rel=\"nofollow\">Atypical composition and ultrastructure of proteoglycans in the mouse corneal stroma.<\/a>\u00a0<em>Invest Opthalmol Vis Sci<\/em>\u00a0<strong>46<\/strong>: 1973-1978. DOI: 10.1167\/iovs.04-1309.<\/li>\n<li>Reed, K.R., Sansom, O.J, Hayes, A.J., Gescher, A.J., Winton, D.J., Peters, J.M., Clarke, A.R. (2004)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.nature.com\/articles\/1208143\" href=\"https:\/\/www.nature.com\/articles\/1208143\" rel=\"nofollow\">PPAR delta status and Apc-mediated tumourigenesis in the mouse intestine.<\/a>\u00a0<em>Oncogene<\/em>\u00a0<strong>23<\/strong>: 8992-8996. DOI: 10.1038\/sj.onc.1208143.<\/li>\n<li>Sansom, O.J., Reed, K.R., Hayes, A.J., Ireland, H., Brinkmann, H., Newton, I.P., Batlle, E., Simon-Assmann, P., Clevers, H., Nathke, I.S., Clarke, A.R., Winton, D.J. (2004)\u00a0<a class=\"urlextern\" title=\"https:\/\/genesdev.cshlp.org\/content\/18\/12\/1385.short\" href=\"https:\/\/genesdev.cshlp.org\/content\/18\/12\/1385.short\" rel=\"nofollow\">Loss of Apc in vivo immediately perturbs Wnt signalling, differentiation, and migration.<\/a>\u00a0<em>Genes &amp; Development<\/em>\u00a0<strong>18<\/strong>: 1385-1390. DOI: 10.1101\/gad.287404.<\/li>\n<li>Hayes, A.J., Dowthwaite, G.P., Webster, S.V., Archer, C.W. (2003)\u00a0<a class=\"urlextern\" title=\"https:\/\/onlinelibrary.wiley.com\/doi\/full\/10.1046\/j.1469-7580.2003.00185.x\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/full\/10.1046\/j.1469-7580.2003.00185.x\" rel=\"nofollow\">The distribution of Notch receptors and their ligands during articular cartilage development.<\/a>\u00a0<em>J Anat<\/em>\u00a0<strong>202<\/strong>: 495-502. DOI: 10.1046\/j.1469-7580.2003.00185.x.<\/li>\n<li>Hayes, A.J., MacPherson, S., Morrison, H., Dowthwaite, G., Ferguson, M.W.J., Archer, C.W. (2001)<a class=\"urlextern\" title=\"https:\/\/link.springer.com\/article\/10.1007\/s004290100178\" href=\"https:\/\/link.springer.com\/article\/10.1007\/s004290100178\" rel=\"nofollow\">The development of articular cartilage: Evidence for an appositional growth mechanism.<\/a>\u00a0<em>Anat Embryol<\/em>\u00a0<strong>203<\/strong>: 469-479. DOI: 10.1007\/s004290100178.<\/li>\n<li>Hayes, A.J., Benjamin, M., Ralphs, J.R. (2001)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0945053X01001251?via%3Dihub\" href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0945053X01001251?via%3Dihub\" rel=\"nofollow\">Extracellular matrix in development of the intervertebral disc.<\/a>\u00a0<em>Matrix Biol<\/em>\u00a0<strong>20<\/strong>: 107-121. DOI: 10.1016\/s0945-053x(01)00125-1.<\/li>\n<li>Hayes, A.J., Benjamin, M., Ralphs, J.R. (1999)\u00a0<a class=\"urlextern\" title=\"https:\/\/anatomypubs.onlinelibrary.wiley.com\/doi\/10.1002\/(SICI)1097-0177(199907)215:3%3C179::AID-AJA1%3E3.0.CO;2-Q\" href=\"https:\/\/anatomypubs.onlinelibrary.wiley.com\/doi\/10.1002\/(SICI)1097-0177(199907)215:3%3C179::AID-AJA1%3E3.0.CO;2-Q\" rel=\"nofollow\">Role of actin stress fibres in the development of the intervertebral disc: Cytoskeletal control of extracellular matrix assembly.<\/a>\u00a0<em>Dev Dyn<\/em>\u00a0<strong>215<\/strong>: 179-189. DOI: 10.1002\/(SICI)1097-0177(199907)215:3&lt;179::AID-AJA1&gt;3.0.CO;2-Q.<\/li>\n<li>Lloyd D., Hayes A.J., Ralphs, J.R. (1999)\u00a0<a class=\"urlextern\" title=\"https:\/\/link.springer.com\/content\/pdf\/10.1385\/0896035662.pdf\" href=\"https:\/\/link.springer.com\/content\/pdf\/10.1385\/0896035662.pdf\" rel=\"nofollow\">Confocal laser scanning of environmental samples.<\/a>\u00a0In:\u00a0<em>Methods in Biotechnology<\/em>. Volume\u00a0<strong>12<\/strong>: Environmental Monitoring of Bacteria (ed. Clive Edwards). Human Press Inc., Totowa, NJ.<\/li>\n<li>Williams I., Paul F., Lloyd D., Jepras R., Critchley I., Newman M., Warrack J., Giokarini T., Hayes A.J., Randerson P.F., Venables W.A. (1999)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.microbiologyresearch.org\/content\/journal\/micro\/10.1099\/13500872-145-6-1325#tab2\" href=\"https:\/\/www.microbiologyresearch.org\/content\/journal\/micro\/10.1099\/13500872-145-6-1325#tab2\" rel=\"nofollow\">Flow cytometry and other techniques show that Staphylococcus aureus undergoes significant physiological changes in the early stages of surface attached culture.<\/a>\u00a0<em>Microbiol U.K.<\/em>\u00a0<strong>145<\/strong>: 1325-1333. DOI: 10.1099\/13500872-145-6-1325.<\/li>\n<li>Shnyder S.D., Hayes A.J., Pringle J., Archer C.W. (1998)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.ncbi.nlm.nih.gov\/pmc\/articles\/PMC2062957\/\" href=\"https:\/\/www.ncbi.nlm.nih.gov\/pmc\/articles\/PMC2062957\/\" rel=\"nofollow\">P-glycoprotein and metallothionein expression and resistance to chemotherapy in osteosarcoma.<\/a>\u00a0<em>British Journal of Cancer<\/em>\u00a0<strong>78<\/strong>: 757-759. DOI: 10.1038\/bjc.1998.573.<\/li>\n<li>Lloyd D., Thomas K.L., Hayes A.J., Hill B., Hales B.A., Edwards C., Saunders J.R., Ritchie D.A., Upton M. (1998)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0168649697000949\" href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0168649697000949\" rel=\"nofollow\">Micro-ecology of peat: Minimally invasive analysis using confocal laser scanning microscopy, membrane inlet mass spectrometry and PCR amplification of methanogen-specific gene sequences.<\/a>\u00a0<em>FEMS Microbiol Ecol<\/em>\u00a0<strong>25<\/strong>: 179-188. DOI: 10.1016\/S0168-6496(97)00094-9.<\/li>\n<li>Hayes A.J., Benjamin M., Ralphs, J.R. (1997)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.scopus.com\/record\/display.uri?view=basic&amp;eid=2-s2.0-0030979707&amp;origin=resultslist&amp;sort=plf-f&amp;src=s&amp;sid=D0ni9jmAa7wCwz_01kD_E9J%3a230&amp;sot=q&amp;sdt=b&amp;sl=104&amp;s=TITLE-ABS-KEY-AUTH%28The+involvement+of+actin+in+annulus+formation+in+the+rat+lumbar+intervertebral+disc.%29&amp;relpos=0\" href=\"https:\/\/www.scopus.com\/record\/display.uri?view=basic&amp;eid=2-s2.0-0030979707&amp;origin=resultslist&amp;sort=plf-f&amp;src=s&amp;sid=D0ni9jmAa7wCwz_01kD_E9J%3a230&amp;sot=q&amp;sdt=b&amp;sl=104&amp;s=TITLE-ABS-KEY-AUTH%28The+involvement+of+actin+in+annulus+formation+in+the+rat+lumbar+intervertebral+disc.%29&amp;relpos=0\" rel=\"nofollow\">The involvement of actin in annulus formation in the rat lumbar intervertebral disc.<\/a>\u00a0<em>J Anat<\/em>\u00a0<strong>191<\/strong>:125.<\/li>\n<li>Biagini, G.A., Hayes, A.J., Suller, M.T., Winters, C.W., Finlay, B.J., Lloyd, D. (1997)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.microbiologyresearch.org\/content\/journal\/micro\/10.1099\/00221287-143-5-1623#tab2\" href=\"https:\/\/www.microbiologyresearch.org\/content\/journal\/micro\/10.1099\/00221287-143-5-1623#tab2\" rel=\"nofollow\">Hydrogenosomes of Metopus contortus physiologically resemble mitochondria.<\/a>\u00a0<em>Microbiology<\/em>\u00a0<strong>143<\/strong>: 1623-1629. DOI: 10.1099\/00221287-143-5-1623.<\/li>\n<li>Lloyd, D., Moran, A., Suller, M.T.E., Dinsdale, M.G., Hayes, A.J. (1996)\u00a0<a class=\"urlextern\" title=\"https:\/\/onlinelibrary.wiley.com\/doi\/abs\/10.1002\/j.2050-0416.1996.tb00910.x\" href=\"https:\/\/onlinelibrary.wiley.com\/doi\/abs\/10.1002\/j.2050-0416.1996.tb00910.x\" rel=\"nofollow\">Flow cytometric monitoring of rhodamine 123 and a cyanine dye uptake by yeast during cider fermentation.<\/a>\u00a0<em>J Inst Brew<\/em>\u00a0<strong>102<\/strong>: 251-259. DOI: 10.1002\/j.2050-0416.1996.tb00910.x.<\/li>\n<li>Lloyd D., Williams A.G., Amann R., Hayes, A.J., Durrant L., Ralphs J.R. (1996)\u00a0<a class=\"urlextern\" title=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0932473996800113\" href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0932473996800113\" rel=\"nofollow\">Intracellular prokaryotes in rumen ciliate protozoa: Detection by confocal laser scanning microscopy after in situ hybridisation with fluorescent 16s rRNA probes.\u00a0<\/a><em>Europ J Protistol<\/em>\u00a0<strong>32<\/strong>: 523-531. DOI: 10.1016\/S0932-4739(96)80011-3.<\/li>\n<li>Lloyd, D., Hayes, A.J. (1995)\u00a0<a class=\"urlextern\" title=\"https:\/\/academic.oup.com\/femsle\/article\/133\/1-2\/1\/496878\" href=\"https:\/\/academic.oup.com\/femsle\/article\/133\/1-2\/1\/496878\" rel=\"nofollow\">Vigour, vitality and viability of micro-organisms.<\/a>\u00a0<em>FEMS Microbiol Lett<\/em>\u00a0<strong>133<\/strong>: 1-7. DOI: 10.1111\/j.1574-6968.1995.tb07852.x.<\/li>\n<\/ul>\n<ul>\n<li style=\"list-style-type: none\"><\/li>\n<\/ul>\n","protected":false},"excerpt":{"rendered":"<p>The following list comprises known publications that have utilized the services and\/or facilities provided by the Bioimaging Research Hub. If you use our imaging or histology services and\/or facilities then (i) please properly credit the support you have received, and (ii) make us aware of any publications that arise through your work so that we [&hellip;]<\/p>\n","protected":false},"author":908,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-30","page","type-page","status-publish","hentry"],"meta_box":[],"_links":{"self":[{"href":"https:\/\/blogs.cardiff.ac.uk\/bioimaging\/wp-json\/wp\/v2\/pages\/30","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/blogs.cardiff.ac.uk\/bioimaging\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/blogs.cardiff.ac.uk\/bioimaging\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/blogs.cardiff.ac.uk\/bioimaging\/wp-json\/wp\/v2\/users\/908"}],"replies":[{"embeddable":true,"href":"https:\/\/blogs.cardiff.ac.uk\/bioimaging\/wp-json\/wp\/v2\/comments?post=30"}],"version-history":[{"count":182,"href":"https:\/\/blogs.cardiff.ac.uk\/bioimaging\/wp-json\/wp\/v2\/pages\/30\/revisions"}],"predecessor-version":[{"id":2517,"href":"https:\/\/blogs.cardiff.ac.uk\/bioimaging\/wp-json\/wp\/v2\/pages\/30\/revisions\/2517"}],"wp:attachment":[{"href":"https:\/\/blogs.cardiff.ac.uk\/bioimaging\/wp-json\/wp\/v2\/media?parent=30"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}