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Cytotechnology|January 19, 2018
Wet milling of large quantities of human excision adipose tissue for the isolation of stromal vascular fraction cellsNadia Menzi, Rik Osinga, Atanas Todorov, et al.Stem Cell Research|February 25, 2014
Combination of immortalization and inducible death strategies to generate a human mesenchymal stromal cell line with controlled survivalPaul Bourgine, Clementine Le Magnen, Sebastien Pigeot, et al.Tissue Engineering. Part A|June 14, 2012
The survey on cellular and engineered tissue therapies in Europe in 2010Ivan Martin, Helen Baldomero, Chiara Bocelli-Tyndall, et al.Tissue Engineering. Part A|December 15, 2015
The Survey on Cellular and Engineered Tissue Therapies in Europe in 2013Ivan Martin, Hilary Ireland, Helen Baldomero, et al.Advanced Drug Delivery Reviews|January 23, 2018
Delivery of cellular factors to regulate bone healingAlexander Haumer, Paul Emile Bourgine, Paola Occhetta, et al.Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|August 12, 2004
FGF-2 enhances TGF-beta1-induced periosteal chondrogenesisMolly M Stevens, Robert P Marini, Ivan Martin, et al.Advanced Drug Delivery Reviews|April 1, 2006
Cartilage tissue engineering for degenerative joint diseaseDobrila Nesic, Robert Whiteside, Mats Brittberg, et al.Advanced Healthcare Materials|December 24, 2015
Dual Role of Mesenchymal Stem Cells Allows for Microvascularized Bone Tissue-Like Environments in PEG HydrogelsUlrich Blache, Stéphanie Metzger, Queralt Vallmajo-Martin, et al.Acta Biomaterialia|August 22, 2018
Fractionated human adipose tissue as a native biomaterial for the generation of a bone organ by endochondral ossificationJulien Guerrero, Sebastien Pigeot, Judith Müller, et al.Tissue Engineering|July 22, 2004
Cell yield, proliferation, and postexpansion differentiation capacity of human ear, nasal, and rib chondrocytesAndrew G Tay, Jian Farhadi, Rosemarie Suetterlin, et al.Pageof 30