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软骨细胞衰老:分子决定因素与治疗机遇

Chondrocyte Aging: The Molecular Determinants and Therapeutic Opportunities.

作者信息

Ramasamy Thamil Selvee, Yee Yong Mei, Khan Ilyas M

机构信息

Stem Cell Biology Laboratory, Department of Molecular Medicine, Faculty of Medicine, Universiti Malaya, Kuala Lumpur, Malaysia.

Cell and Molecular Biology Laboratory, The Dean's Office, Faculty of Medicine, Universiti Malaya, Kuala Lumpur, Malaysia.

出版信息

Front Cell Dev Biol. 2021 Jul 14;9:625497. doi: 10.3389/fcell.2021.625497. eCollection 2021.


DOI:10.3389/fcell.2021.625497
PMID:34336816
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8318388/
Abstract

Osteoarthritis (OA) is a joint degenerative disease that is an exceedingly common problem associated with aging. Aging is the principal risk factor for OA, but damage-related physiopathology of articular chondrocytes probably drives the mechanisms of joint degeneration by a progressive decline in the homeostatic and regenerative capacity of cells. Cellular aging is the manifestation of a complex interplay of cellular and molecular pathways underpinned by transcriptional, translational, and epigenetic mechanisms and niche factors, and unraveling this complexity will improve our understanding of underlying molecular changes that affect the ability of the articular cartilage to maintain or regenerate itself. This insight is imperative for developing new cell and drug therapies for OA disease that will target the specific causes of age-related functional decline. This review explores the key age-related changes within articular chondrocytes and discusses the molecular mechanisms that are commonly perturbed as cartilage ages and degenerates. Current efforts and emerging potential therapies in treating OA that are being employed to halt or decelerate the aging processes are also discussed.

摘要

骨关节炎(OA)是一种关节退行性疾病,是与衰老相关的极为常见的问题。衰老是OA的主要危险因素,但关节软骨细胞的损伤相关病理生理学可能通过细胞稳态和再生能力的逐渐下降来驱动关节退变机制。细胞衰老表现为细胞和分子途径复杂相互作用的结果,这些途径由转录、翻译和表观遗传机制以及微环境因素所支撑,揭示这种复杂性将增进我们对影响关节软骨维持或自我再生能力的潜在分子变化的理解。这种见解对于开发针对与年龄相关功能衰退特定原因的OA疾病新细胞和药物疗法至关重要。本综述探讨了关节软骨细胞内与年龄相关的关键变化,并讨论了随着软骨老化和退变而通常受到干扰的分子机制。还讨论了目前在治疗OA方面为阻止或减缓衰老过程所做的努力和新兴的潜在疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cc2/8318388/11052ce937e1/fcell-09-625497-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cc2/8318388/11052ce937e1/fcell-09-625497-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cc2/8318388/11052ce937e1/fcell-09-625497-g001.jpg

相似文献

[1]
Chondrocyte Aging: The Molecular Determinants and Therapeutic Opportunities.

Front Cell Dev Biol. 2021-7-14

[2]
Aging, articular cartilage chondrocyte senescence and osteoarthritis.

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[3]
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[4]
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Biorheology. 2002

[5]
Age-related degeneration of articular cartilage in the pathogenesis of osteoarthritis: molecular markers of senescent chondrocytes.

Histol Histopathol. 2015-1

[6]
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Ageing Res Rev. 2017-12-16

[7]
The Role of Chondrocyte Hypertrophy and Senescence in Osteoarthritis Initiation and Progression.

Int J Mol Sci. 2020-3-29

[8]
Molecular regulation of articular chondrocyte function and its significance in osteoarthritis.

Histol Histopathol. 2011-3

[9]
Catabolic stress induces features of chondrocyte senescence through overexpression of caveolin 1: possible involvement of caveolin 1-induced down-regulation of articular chondrocytes in the pathogenesis of osteoarthritis.

Arthritis Rheum. 2006-3

[10]
Chondrocyte Apoptosis in the Pathogenesis of Osteoarthritis.

Int J Mol Sci. 2015-10-30

引用本文的文献

[1]
Generation of an In Vitro Cartilage Aging Model Using Human Sera from Old Donors.

Bioengineering (Basel). 2025-7-30

[2]
Amniotic fluid MSCs for scaffold-free cartilage repair: spheroid fusion and chondrogenic microtissue development.

Future Sci OA. 2025-12

[3]
The intersection of aging and estrogen in osteoarthritis.

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[4]
Senile Osteoarthritis Regulated by the Gut Microbiota: From Mechanisms to Treatments.

Int J Mol Sci. 2025-2-11

[5]
The Interplay of Aging and PANoptosis in Osteoarthritis Pathogenesis: Implications for Novel Therapeutic Strategies.

J Inflamm Res. 2025-2-10

[6]
No influence of patient age on operative treatment outcome of osteochondral lesions of the talus: data from the German Cartilage Registry (GCR, KnorpelRegister DGOU).

Arch Orthop Trauma Surg. 2025-2-1

[7]
CN7:1h Alleviates Inflammation, Apoptosis and Extracellular Matrix Degradation in Osteoarthritis by Modulating the NF-κB and mTOR Pathways.

J Cell Mol Med. 2025-2

[8]
Comparative Analysis of the Therapeutic Potential of Extracellular Vesicles Secreted by Aged and Young Bone Marrow-Derived Mesenchymal Stem Cells in Osteoarthritis Pathogenesis.

Cell Prolif. 2025-4

[9]
Cartilage Destruction by Hemophilic Arthropathy Can Be Prevented by Inhibition of the Ferroptosis Pathway in Human Chondrocytes.

J Clin Med. 2024-1-18

[10]
Role of microRNAs deregulation in initiation of rheumatoid arthritis: A retrospective observational study.

Medicine (Baltimore). 2024-1-19

本文引用的文献

[1]
Five-Year Outcome of 1-Stage Cell-Based Cartilage Repair Using Recycled Autologous Chondrons and Allogenic Mesenchymal Stromal Cells: A First-in-Human Clinical Trial.

Am J Sports Med. 2021-3

[2]
Induced Pluripotent Stem Cell-Differentiated Chondrocytes Repair Cartilage Defect in a Rabbit Osteoarthritis Model.

Stem Cells Int. 2020-11-9

[3]
On the evolution of cellular senescence.

Aging Cell. 2020-12

[4]
Age-Related Decline in Expression of Molecular Chaperones Induces Endoplasmic Reticulum Stress and Chondrocyte Apoptosis in Articular Cartilage.

Aging Dis. 2020-10-1

[5]
Irisin Mitigates Oxidative Stress, Chondrocyte Dysfunction and Osteoarthritis Development through Regulating Mitochondrial Integrity and Autophagy.

Antioxidants (Basel). 2020-9-1

[6]
Baicalin Protects Human OA Chondrocytes Against IL-1β-Induced Apoptosis and ECM Degradation by Activating Autophagy via MiR-766-3p/AIFM1 Axis.

Drug Des Devel Ther. 2020

[7]
Senolytic activity of small molecular polyphenols from olive restores chondrocyte redifferentiation and promotes a pro-regenerative environment in osteoarthritis.

Aging (Albany NY). 2020-8-3

[8]
Navitoclax (ABT263) reduces inflammation and promotes chondrogenic phenotype by clearing senescent osteoarthritic chondrocytes in osteoarthritis.

Aging (Albany NY). 2020-7-1

[9]
The role of SIRT3-mediated mitochondrial homeostasis in osteoarthritis.

Cell Mol Life Sci. 2020-5-28

[10]
Prx II reduces oxidative stress and cell senescence in chondrocytes by activating the p16-CDK4/6-pRb-E2F signaling pathway.

Eur Rev Med Pharmacol Sci. 2020-4

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