Diverse and multifunctional roles for perlecan (HSPG2) in repair of the intervertebral disc

Author:

Melrose James1234ORCID,Guilak Farshid56ORCID

Affiliation:

1. Raymond Purves Bone and Joint Research Laboratory, Kolling Institute Northern Sydney Local Health District St. Leonards New South Wales Australia

2. Graduate School of Biomedical Engineering University of New South Wales Sydney New South Wales Australia

3. Sydney Medical School, Northern The University of Sydney St. Leonards New South Wales Australia

4. Faculty of Medicine and Health The University of Sydney, Royal North Shore Hospital St. Leonards New South Wales Australia

5. Department of Orthopaedic Surgery Washington University St. Louis Missouri USA

6. Department of Orthopaedics Shriners Hospitals for Children St. Louis Missouri USA

Abstract

AbstractPerlecan is a widely distributed, modular, and multifunctional heparan sulfate proteoglycan, which facilitates cellular communication with the extracellular environment to promote tissue development, tissue homeostasis, and optimization of biomechanical tissue functions. Perlecan‐mediated osmotic mechanotransduction serves to regulate the metabolic activity of cells in tissues subjected to tension, compression, or shear. Perlecan interacts with a vast array of extracellular matrix (ECM) proteins through which it stabilizes tissues and regulates the proliferation or differentiation of resident cell populations. Here we examine the roles of the HS‐proteoglycan perlecan in the normal and destabilized intervertebral disc. The intervertebral disc cell has evolved to survive in a hostile weight bearing, acidic, low oxygen tension, and low nutrition environment, and perlecan provides cytoprotection, shields disc cells from excessive compressive forces, and sequesters a range of growth factors in the disc cell environment where they aid in cellular survival, proliferation, and differentiation. The cells in mechanically destabilized connective tissues attempt to re‐establish optimal tissue composition and tissue functional properties by changing the properties of their ECM, in the process of chondroid metaplasia. We explore the possibility that perlecan assists in these cell‐mediated tissue remodeling responses by regulating disc cell anabolism. Perlecan's mechano‐osmotic transductive property may be of potential therapeutic application.

Funder

National Institutes of Health

Shriners Hospitals for Children

Publisher

Wiley

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