Mechanical Unloading of Engineered Human Meniscus Models Under Simulated Microgravity: A Transcriptomic Study

Author:

Ma Zhiyao,Li David XinzheyangORCID,Chee Ryan K. W.,Kunze Melanie,Mulet-Sierra Aillette,Sommerfeldt Mark,Westover Lindsey,Graf DanielORCID,Adesida Adetola B.ORCID

Abstract

AbstractOsteoarthritis (OA) primarily affects mechanical load-bearing joints, with the knee being the most common. The prevalence, burden and severity of knee osteoarthritis (KOA) are disproportionately higher in females, but hormonal differences alone do not explain the disproportionate incidence of KOA in females. Mechanical unloading by spaceflight microgravity has been implicated in OA development in cartilaginous tissues. However, the mechanisms and sex-dependent differences in OA-like development are not well explored. In this study, engineered meniscus constructs were generated from healthy human meniscus fibrochondrocytes (MFC) seeded onto type I collagen scaffolds and cultured under normal gravity and simulated microgravity conditions. We report the whole-genome sequences of constructs from 4 female and 4 male donors, along with the evaluation of their phenotypic characteristics. The collected data could be used as valuable resources to further explore the mechanism of KOA development in response to mechanical unloading, and to investigate the molecular basis of the observed sex differences in KOA.

Funder

Gouvernement du Canada | Natural Sciences and Engineering Research Council of Canada

Alberta Innovates | Alberta Innovates - Health Solutions

Women and Children's Health Research Institute

Alberta Cancer Foundation

Gouvernement du Canada | Canadian Institutes of Health Research

Canada Foundation for Innovation

Publisher

Springer Science and Business Media LLC

Subject

Library and Information Sciences,Statistics, Probability and Uncertainty,Computer Science Applications,Education,Information Systems,Statistics and Probability

Reference41 articles.

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