ArticleJournal of orthopaedic surgery and research2023
Metformin regulates chondrocyte senescence and proliferation through microRNA-34a/SIRT1 pathway in osteoarthritis.
Article in Journal of orthopaedic surgery and research, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 18 papers.
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Who cites it
18 citing papers in PubMed, 29 citations in OpenAlex.
- Endocrine‑metabolic imbalance drives osteoarthritis: From whole‑joint pathobiology to precision therapy (Review).International journal of molecular medicine · 2026Review
- Chondrocyte Senescence in Osteoarthritis: Potential Targets and Pharmacological Interventions.Cartilage · 2026Article
- Repurposing metformin for treating osteoarthritis via leveraging Nrf2 signaling.Scientific reports · 2026Article
- Cellular senescence in musculoskeletal diseases: biological mechanisms and clinical implications.Theranostics · 2026Review
- Intertwined roles of microRNA-155 and metformin in osteoarthritis: Novel potential diagnostic, prognostic, and therapeutic modulators.World journal of orthopedics · 2025Review
- Evodiamine alleviates IL-1β-induced chondrocyte damage by regulating mitochondrial dysfunction via the SIRT1/PGC-1α pathway.Journal of molecular histology · 2025Article
- Update on metformin for osteoarthritis treatment.Inflammopharmacology · 2025Review
- MRI detection of senescent cells in porcine knee joints with a β-galactosidase responsive Gd-chelate.Npj imaging · 2025Article
- Identification and validation of aging related genes in osteoarthritis.Frontiers in genetics · 2025Article
- Therapeutic role of aripiprazole in cartilage defects explored through a drug repurposing approach.Scientific reports · 2024Article
- Metformin Protects Against Acute Kidney Injury Induced by Lipopolysaccharide via Up-Regulating the MCPIP1/SIRT1 Pathway.Biochemical genetics · 2024Article
- miR-96-5p expression is sufficient to induce and maintain the senescent cell fate in the absence of stress.Proceedings of the National Academy of Sciences of the United States of America · 2024Article
- Musculoskeletal imaging of senescence.Skeletal radiology · 2024Review
- Ageing-related bone and immunity changes: insights into the complex interplay between the skeleton and the immune system.Bone research · 2024Review
- Metformin: pioneering a path forward in knee osteoarthritis care?Annals of medicine and surgery (2012) · 2024Article
- Metformin mitigates osteoarthritis progression by modulating the PI3K/AKT/mTOR signaling pathway and enhancing chondrocyte autophagy.Open life sciences · 2024Article
- Inflammatory and Metabolic Signaling Interfaces of the Hypertrophic and Senescent Chondrocyte Phenotypes Associated with Osteoarthritis.International journal of molecular sciences · 2023Review
- Clinical characteristics of patients with early-onset diabetes mellitus: a single-center retrospective study.BMC endocrine disorders · 2023Article
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Authors and funding
7 authors at 3 institutions in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
backgroundOsteoarthritis (OA) is the most common degenerative disease in joints among elderly patients. Senescence is deeply involved in the pathogenesis of osteoarthritis. Metformin is widely used as the first-line drug for Type 2 diabetes mellitus (T2DM), and has great potential for the treatment of other aging-related disorders, including OA. However, the role of metformin in OA is not fully elucidated. Therefore, our aim here was to investigate the effects of metformin on human chondrocytes.
methodsAfter metformin treatment, expression level of microRNA-34a and SIRT1 in chondrocyte were detected with quantitative real-time PCR and immunofluorescence staining. Then, microRNA-34a mimic and small interfering RNA (siRNA) against SIRT1 (siRNA-SIRT1) were transfected into chondrocyte. Senescence-associated β-galactosidase (SA-β-gal) staining was performed to assess chondrocyte senescence. Chondrocyte viability was illustrated with MTT and colony formation assays. Western blot was conducted to detect the expression of P16, IL-6, matrix metalloproteinase-13 (MMP-13), Collagen type II (COL2A1) and Aggrecan (ACAN).
resultsWe found that metformin treatment (1 mM) inhibited microRNA-34a while promoted SIRT1 expression in OA chondrocytes. Both miR-34a mimics and siRNA against SIRT1 inhibited SIRT1 expression in chondrocytes. SA-β-gal staining assay confirmed that metformin reduced SA-β-gal-positive rate of chondrocytes, while transfection with miR-34a mimics or siRNA-SIRT1 reversed it. MTT assay and colony formation assay showed that metformin accelerated chondrocyte proliferation, while miR-34a mimics or siRNA-SIRT1 weakened this effect. Furthermore, results from western blot demonstrated that metformin suppressed expression of senescence-associated protein P16, proinflammatory cytokine IL-6 and catabolic gene MMP-13 while elevated expression of anabolic proteins such as Collagen type II and Aggrecan, which could be attenuated by transfection with miR-34a mimics.
conclusionOverall, our data suggest that metformin regulates chondrocyte senescence and proliferation through microRNA-34a/SIRT1 pathway, indicating it could be a novel strategy for OA treatment.
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