topicCollagen Osteoarthritis Meta-Analysis
claimMenopause-associated estrogen deficiency has been implicated in cartilage degeneration and osteoarthritis (OA) progression.
evidence level1
citationTehalia MK (2026)
sourceEstrogen Deficiency in Menopause: A Major Contributor to Cartilage Degeneration and Osteoarthritis: A Systematic Review and Meta-Analysis.
topicCollagen Osteoarthritis Meta-Analysis
claimThis systematic review and meta-analysis evaluates evidence from human and animal studies.
evidence level1
citationTehalia MK (2026)
sourceEstrogen Deficiency in Menopause: A Major Contributor to Cartilage Degeneration and Osteoarthritis: A Systematic Review and Meta-Analysis.
topicCollagen Osteoarthritis Meta-Analysis
claimEstrogen deficiency is associated with cartilage degeneration, with strong supportive evidence from OVX models.
evidence level1
citationTehalia MK (2026)
sourceEstrogen Deficiency in Menopause: A Major Contributor to Cartilage Degeneration and Osteoarthritis: A Systematic Review and Meta-Analysis.
topicCollagen Osteoarthritis Meta-Analysis
claimDiabetes mellitus, particularly type 2 diabetes, has been associated in some studies with increased osteoarthritis (OA) risk, greater symptom burden, and structural progression; however, epidemiological evidence remains heterogeneous, and the extent to which diabetes independently contributes to OA after accounting for obesity, adiposity, physical inactivity, and other metabolic confounders remains debated.
evidence level4
citationLi J (2026)
sourceDiabetes-Related Metabolic Osteoarthritis: Advanced Glycation-Collagen Axis, Cartilage Stiffening, and Biomaterials-Based Therapeutic Strategies.
topicCollagen Osteoarthritis Meta-Analysis
claimIn metabolically susceptible patients, chronic hyperglycemia, insulin resistance, carbonyl stress, and low-grade inflammation may contribute to disruption of the joint microenvironment.
evidence level4
citationLi J (2026)
sourceDiabetes-Related Metabolic Osteoarthritis: Advanced Glycation-Collagen Axis, Cartilage Stiffening, and Biomaterials-Based Therapeutic Strategies.