Human engineered meniscus transcriptome after short-term combined hypoxia and dynamic compression

Author:

Szojka Alexander RA1ORCID,Marqueti Rita de Cássia12,Li David Xinzheyang13ORCID,Molter Clayton W1,Liang Yan1,Kunze Melanie1,Mulet-Sierra Aillette1,Jomha Nadr M1,Adesida Adetola B1ORCID

Affiliation:

1. Department of Surgery, Divisions of Orthopaedic Surgery and Surgical Research, Faculty of Medicine & Dentistry, University of Alberta, Li Ka Shing Centre for Health Research Innovation, Edmonton, AB, Canada

2. Graduate Program of Rehabilitation Sciences, University of Brasília (UnB), Brasília, Distrito Federal, Brazil

3. Department of Civil and Environmental Engineering, Faculty of Engineering, University of Alberta, Edmonton, AB, Canada

Abstract

This study investigates the transcriptome response of meniscus fibrochondrocytes (MFCs) to the low oxygen and mechanical loading signals experienced in the knee joint using a model system. We hypothesized that short term exposure to the combined treatment would promote a matrix-forming phenotype supportive of inner meniscus tissue formation. Human MFCs on a collagen scaffold were stimulated to form fibrocartilage over 6 weeks under normoxic (NRX, 20% O2) conditions with supplemented TGF-β3. Tissues experienced a delayed 24h hypoxia treatment (HYP, 3% O2) and then 5 min of dynamic compression (DC) between 30 and 40% strain. Delayed HYP induced an anabolic and anti-catabolic expression profile for hyaline cartilage matrix markers, while DC induced an inflammatory matrix remodeling response along with upregulation of both SOX9 and COL1A1. There were 41 genes regulated by both HYP and DC. Overall, the combined treatment supported a unique gene expression profile favouring the hyaline cartilage aspect of inner meniscus matrix and matrix remodeling.

Funder

University Hospital of Alberta Foundation

Institute of Musculoskeletal Health and Arthritis

Natural Sciences and Engineering Research Council of Canada

Cliff Lede Family Charitable Foundation

Canada Foundation for Innovation

Alberta Cancer Foundation-Mickleborough Interfacial Biosciences Research Program

Edmonton Civic Employees Charitable Assistance Fund

Publisher

SAGE Publications

Subject

Biomedical Engineering,Biomaterials,Medicine (miscellaneous)

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