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Updated: May 28, 2026

Application of a Novel Hyaluronan Hydrogel for Three-Dimensional Follicle Culture and Methodology for Mouse Ovarian Follicle Cryopreservation
Published on: May 9, 2025
Recombinant humanized type III collagen improves ovarian function via ITGA2-mediated mitochondrial function
Quan Wei1, Shuaibin Liu1, Zhiyong Dong1
1Department of Obstetrics and Gynecology, The Second Affiliated Hospital of Chongqing Medical University, Chongqing 400010, China.
Abstract:
Ovarian aging is characterized by depletion of the follicular reserve. The extracellular matrix (ECM) provides the essential microenvironmental niche for follicles, and aged-related alterations in ECM composition may adversely affect follicular dynamics. However, the precise relationship between matrix components and ovarian aging remains unclear. In this study, we first observed a marked reduction in type III collagen (Col III) as a key alteration associated with ovarian aging. Furthermore, we discovered that as a biomaterial, recombinant humanized type III collagen (rhCol III) ameliorated ovarian function in 12-month-old natural aging rats, evidenced by restored estrous cycles, increased ovarian index, elevated levels of anti-Müllerian hormone (AMH) and estradiol (E2) and enhanced folliculogenesis. Notably, rhCol III promoted the reorganization of the disorganized ovarian ECM into a highly ordered and dense structure, providing a supportive biological scaffold for follicular development. Additionally, supplementation of rhCol III could mitigate oxidative stress and mitochondrial dysfunction in aged granulosa cells (GCs), thereby preventing apoptosis and cellular senescence. Mechanistically, rhCol III bound to the integrin α2 (ITGA2) receptor on GCs and activated the PI3K/Akt signaling pathway. Our findings highlight Col III deficiency as a critical factor in ovarian aging and demonstrate that rhCol III supplementation rejuvenates the ovarian microenvironment via the ITGA2-PI3K/Akt axis, presenting a novel therapeutic strategy. Thus ITGA2 may represent a promising target for mitigating ovarian aging.
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