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Matrix Biology : Journal of the International Society for Matrix Biology|August 18, 2015
Skin tissue repair: Matrix microenvironmental influencesAlan Wells, Austin Nuschke, Cecelia C Yates
Tissue Engineering. Part A|April 2, 2013
The matrikine tenascin-C protects multipotential stromal cells/mesenchymal stem cells from death cytokines such as FasLMelanie Rodrigues, Cecelia C Yates, Austin Nuschke, et al.
Stem Cell Research & Therapy|September 7, 2017
Multipotent stromal cells/mesenchymal stem cells and fibroblasts combine to minimize skin hypertrophic scarringCecelia C Yates, Melanie Rodrigues, Austin Nuschke, et al.
Cell Transplantation|January 13, 2012
Transplanted fibroblasts prevents dysfunctional repair in a murine CXCR3-deficient scarring modelCecelia C Yates, Diana Whaley, Alan Wells
Cellular and Molecular Life Sciences : CMLS|March 11, 2011
Matrix control of scarringCecelia C Yates, Richard Bodnar, Alan Wells
Birth Defects Research. Part C, Embryo Today : Reviews|November 9, 2013
Skin wound healing and scarring: fetal wounds and regenerative restitutionCecelia C Yates, Patricia Hebda, Alan Wells
Wound Repair and Regeneration : Official Publication of the Wound Healing Society [And] the European Tissue Repair Society|March 13, 2016
Pericytes: A newly recognized player in wound healingRichard J Bodnar, Latha Satish, Cecelia C Yates, et al.
Stem Cell Research & Therapy|December 2, 2016
Mesenchymal stem cells/multipotent stromal cells (MSCs) are glycolytic and thus glucose is a limiting factor of in vitro models of MSC starvationAustin Nuschke, Melanie Rodrigues, Albin W Wells, et al.
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