Isoquercitrin ameliorates chondrocyte dysfunction in osteoarthritis by targeting AKT1-mediated mitochondrial dynamics regulation

Osteoarthritis (OA), a prevalent degenerative joint disorder, is driven by chondrocyte anabolic-catabolic imbalance, aberrant inflammation, and mitochondrial dysfunction. Disease-modifying therapies targeting these pathological processes remain scarce, limiting effective clinical intervention. Herein, we demonstrate an isoquercitrin (IQ)-based chondroprotective strategy that rectifies osteoarthritis-related chondrocyte impairment by targeting AKT1. IQ first reverses IL-1β-induced chondrocyte proliferation arrest, shifts metabolic homeostasis toward anabolism, and mitigates pro-inflammatory responses. It simultaneously restores mitochondrial homeostasis by normalizing dynamic balance. Mechanistically, IQ binds to AKT1 with high affinity, and AKT1 overexpression abolishes its protective effects-confirming AKT1 as a key mediator. This approach re-establishes chondrocyte functional homeostasis by coupling anti-inflammatory, metabolic-regulatory, and mitochondrial-stabilizing activities. This work highlights IQ as a promising candidate for osteoarthritis intervention and provides a mechanistic framework linking AKT1 targeting to chondroprotection.

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Journal
PLoS ONE
Published
2026-09-17
DOI
https://doi.org/10.1371/journal.pone.0357989
Primary Topic
Osteoarthritis Treatment and Mechanisms
Type
article
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0.00
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article

Isoquercitrin ameliorates chondrocyte dysfunction in osteoarthritis by targeting AKT1-mediated mitochondrial dynamics regulation

Luyang Zhang, Shihua Zong, Qiong Wen, Yuan Ding et al.
PLoS ONE
Osteoarthritis Treatment and Mechanisms
article

Isoquercitrin ameliorates chondrocyte dysfunction in osteoarthritis by targeting AKT1-mediated mitochondrial dynamics regulation

Luyang Zhang, Shihua Zong, Qiong Wen, Yuan Ding, Xiang Wang
article en

Abstract

Osteoarthritis (OA), a prevalent degenerative joint disorder, is driven by chondrocyte anabolic-catabolic imbalance, aberrant inflammation, and mitochondrial dysfunction. Disease-modifying therapies targeting these pathological processes remain scarce, limiting effective clinical intervention. Herein, we demonstrate an isoquercitrin (IQ)-based chondroprotective strategy that rectifies osteoarthritis-related chondrocyte impairment by targeting AKT1. IQ first reverses IL-1β-induced chondrocyte proliferation arrest, shifts metabolic homeostasis toward anabolism, and mitigates pro-inflammatory responses. It simultaneously restores mitochondrial homeostasis by normalizing dynamic balance. Mechanistically, IQ binds to AKT1 with high affinity, and AKT1 overexpression abolishes its protective effects-confirming AKT1 as a key mediator. This approach re-establishes chondrocyte functional homeostasis by coupling anti-inflammatory, metabolic-regulatory, and mitochondrial-stabilizing activities. This work highlights IQ as a promising candidate for osteoarthritis intervention and provides a mechanistic framework linking AKT1 targeting to chondroprotection.

PLoS ONEVol. 21(9)
Yantaishan Hospital (CN)
Good health and well-being
Openalex Percentile: Top 10%
Osteoarthritis Treatment and Mechanisms
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Isoquercitrin ameliorates chondrocyte dysfunction in osteoarthritis by targeting AKT1-mediated mitochondrial dynamics regulation — Luyang Zhang, Shihua Zong, et al. · PLoS ONE (2026) | TGRS Research Map | TGRS