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Arthritis Research & Therapy|July 24, 2012
Indian hedgehog gene transfer is a chondrogenic inducer of human mesenchymal stem cellsAndre F Steinert, Manuel Weissenberger, Manuela Kunz, et al.Tissue Engineering|June 15, 2007
Genetically enhanced engineering of meniscus tissue using ex vivo delivery of transforming growth factor-beta 1 complementary deoxyribonucleic acidAndre F Steinert, Glyn D Palmer, Ramille Capito, et al.Arthritis Research & Therapy|October 6, 2009
Hypertrophy is induced during the in vitro chondrogenic differentiation of human mesenchymal stem cells by bone morphogenetic protein-2 and bone morphogenetic protein-4 gene transferAndre F Steinert, Benedikt Proffen, Manuela Kunz, et al.BMC Musculoskeletal Disorders|May 15, 2020
The human arthritic hip joint is a source of mesenchymal stromal cells (MSCs) with extensive multipotent differentiation potentialMike Wagenbrenner, Tizian Heinz, Konstantin Horas, et al.Tissue Engineering. Part A|January 21, 2011
Mesenchymal stem cell characteristics of human anterior cruciate ligament outgrowth cellsAndre F Steinert, Manuela Kunz, Patrick Prager, et al.Cytotherapy|March 26, 2010
BMP12 and BMP13 gene transfer induce ligamentogenic differentiation in mesenchymal progenitor and anterior cruciate ligament cellsMeike Haddad-Weber, Patrick Prager, Manuela Kunz, et al.Plos One|August 14, 2020
Different types of cartilage neotissue fabricated from collagen hydrogels and mesenchymal stromal cells via SOX9, TGFB1 or BMP2 gene transferManuel Weißenberger, Manuela H Weißenberger, Mike Wagenbrenner, et al.Molecular Therapy : the Journal of the American Society of Gene Therapy|August 6, 2004
Enhanced repair of the anterior cruciate ligament by in situ gene transfer: evaluation in an in vitro modelArnulf Pascher, Andre F Steinert, Glyn D Palmer, et al.Pageof 4