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Results 1-10 of 28 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2016CXCR5⁺ follicular cytotoxic T cells control viral infection in B cell folliclesLeong, Y.; Chen, Y.; Ong, H.; Wu, D.; Man, K.; Deleage, C.; Minnich, M.; Meckiff, B.; Wei, Y.; Hou, Z.; Zotos, D.; Fenix, K.; Atnerkar, A.; Preston, S.; Chipman, J.; Beilman, G.; Allison, C.; Sun, L.; Wang, P.; Xu, J.; et al.
2017Increased methylation and decreased expression of homeobox genes TLX1, HOXA10 and DLX5 in human placenta are associated with trophoblast differentiationNovakovic, B.; Fournier, T.; Harris, L.; James, J.; Roberts, C.; Yong, H.; Kalionis, B.; Evain-Brion, D.; Ebeling, P.; Wallace, E.; Saffery, R.; Murthi, P.
2017Nanotopography mediated osteogenic differentiation of human dental pulp derived stem cellsBachhuka, A.; Delalat, B.; Ghaemi, S.; Gronthos, S.; Voelcker, N.; Vasilev, K.
2020HOPX regulates bone marrow-derived mesenchymal stromal cell fate determination via suppression of adipogenic gene pathwaysHng, C.H.; Camp, E.; Anderson, P.; Breen, J.; Zannettino, A.; Gronthos, S.
2019Validation of monoclonal anti-PKC isozyme antibodies for flow cytometry analyses in human T cell subsets and expression in cord blood T cellsPerveen, K.; Quach, A.; McPhee, A.; Prescott, S.L.; Barry, S.C.; Hii, C.S.; Ferrante, A.
2015Ectopic bone formation by mesenchymal stem cells derived from human term placenta and the deciduaKusuma, G.; Menicanin, D.; Gronthos, S.; Manuelpillai, U.; Abumaree, M.; Pertile, M.; Brennecke, S.; Kalionis, B.; Matsusaki, M.
2011Bone matrix regulates osteoclast differentiation and annexin A8 gene expressionCrotti, T.; O'Sullivan, R.; Shen, Z.; Flannery, M.; Fajardo, R.; Ross, F.; Goldring, S.; McHugh, K.
2010Enrichment for STRO-1 expression enhances the cardiovascular paracrine activity of human bone marrow-derived mesenchymal cell populationsPsaltis, P.; Paton, S.; See, F.; Arthur, A.; Martin, S.; Itescu, S.; Worthley, S.; Gronthos, S.; Zannettino, A.
2015Ankrd11 is a chromatin regulator involved in autism that is essential for neural developmentGallagher, D.; Voronova, A.; Zander, M.; Cancino, G.; Bramall, A.; Krause, M.; Abad, C.; Tekin, M.; Neilsen, P.; Callen, D.; Scherer, S.; Keller, G.; Kaplan, D.; Walz, K.; Miller, F.
2015HCFC1 loss-of-function mutations disrupt neuronal and neural progenitor cells of the developing brain.Jolly, L.; Nguyen, L.; Domingo, D.; Sun, Y.; Barry, S.; Hancarova, M.; Plevova, P.; Vlckova, M.; Havlovicova, M.; Kalscheuer, V.; Graziano, C.; Pippucci, T.; Bonora, E.; Sedlacek, Z.; Gecz, J.