GDF5+ chondroprogenitors derived from human pluripotent stem cells preferentially form permanent chondrocytes

Author:

Pothiawala Azim1,Sahbazoglu Berke E.1,Ang Bryan K.1,Matthias Nadine1,Pei Guangsheng2,Yan Qing1,Davis Brian R.1,Huard Johnny34,Zhao Zhongming2ORCID,Nakayama Naoki13ORCID

Affiliation:

1. Institute of Molecular Medicine, McGovern Medical School, The University of Texas Health Science Center at Houston 1 , Houston, TX 77030 , USA

2. Center for Precision Health, School of Biomedical Informatics, The University of Texas Health Science Center at Houston 2 , Houston, TX 77030 , USA

3. McGovern Medical School, The University of Texas Health Science Center at Houston 3 Department of Orthopedic Surgery , , Houston, TX 77030 , USA

4. Center for Regenerative and Personalized Medicine, Steadman Philippon Research Institute 4 , Vail, CO 81657 , USA

Abstract

ABSTRACT It has been established in the mouse model that during embryogenesis joint cartilage is generated from a specialized progenitor cell type, distinct from that responsible for the formation of growth plate cartilage. We recently found that mesodermal progeny of human pluripotent stem cells gave rise to two types of chondrogenic mesenchymal cells in culture: SOX9+ and GDF5+ cells. The fast-growing SOX9+ cells formed in vitro cartilage that expressed chondrocyte hypertrophy markers and readily underwent mineralization after ectopic transplantation. In contrast, the slowly growing GDF5+ cells derived from SOX9+ cells formed cartilage that tended to express low to undetectable levels of chondrocyte hypertrophy markers, but expressed PRG4, a marker of embryonic articular chondrocytes. The GDF5+-derived cartilage remained largely unmineralized in vivo. Interestingly, chondrocytes derived from the GDF5+ cells seemed to elicit these activities via non-cell-autonomous mechanisms. Genome-wide transcriptomic analyses suggested that GDF5+ cells might contain a teno/ligamento-genic potential, whereas SOX9+ cells resembled neural crest-like progeny-derived chondroprogenitors. Thus, human pluripotent stem cell-derived GDF5+ cells specified to generate permanent-like cartilage seem to emerge coincidentally with the commitment of the SOX9+ progeny to the tendon/ligament lineage.

Funder

Cancer Prevention and Research Institute of Texas

National Institutes of Health

U.S. Department of Defense

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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