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Human umbilical cord mesenchymal stem cell‑derived exosomes improve ovarian function in natural aging by inhibiting apoptosis. | LitMetric

AI Article Synopsis

  • Prolonging reproductive lifespan is crucial for women's health, and mesenchymal stem cell (MSC)-derived exosomes show promise in rejuvenating aging ovaries.
  • A study on mice with natural ovarian aging revealed that administering human umbilical cord MSC-derived exosomes improved ovarian function by increasing follicle numbers and hormone levels.
  • The exosomes were found to inhibit the expression of PTEN and reduce cell death through their microRNA content, particularly miR-21-5p, indicating the potential of exosome therapy for combating ovarian aging.

Article Abstract

Prolonging the reproductive lifespan is beneficial for preserving the physical and psychological health of women. The transplantation of mesenchymal stem cell (MSC)‑derived exosomes (MSC‑Exos) has been reported to be a promising regenerative therapeutic strategy for restoring the function of aging ovaries. The present study thus evaluated the therapeutic efficacy of exosomes derived from human umbilical cord‑MSCs (hUCMSC‑Exos) in a mouse model of natural ovarian aging (NOA), and further investigated the role of exosomal microRNAs (miRNAs/miRs) in the mechanisms of this creative therapy. Specifically, following the administration of hUCMSC‑Exos in mice with NOA, ovarian function was found to improve, as indicated by the restoration of follicle numbers and hormone levels. These exosomes were found to exhibit the ability to inhibit PTEN expression and suppress apoptosis both and . Subsequently, miRNA sequencing of the exosomes was performed, following which bioinformatics analysis was used to identify the highly expressed miRNAs that are capable of targeting PTEN expression. Through high‑throughput sequencing and molecular analyses, miR‑21‑5p was found to be the highest in ranking in terms of expression, suggesting that hUCMSC‑Exos can preserve ovarian function by suppressing PTEN expression to inhibit apoptosis by delivering miR‑21‑5p. On the whole, the results of the present study suggest that the application of exosomes can be used to restore ovarian function in mice with NOA. These positive findings also suggest that the transplantation of exosomes derived from MSCs holds promise as an agent against ovarian aging.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10483927PMC
http://dx.doi.org/10.3892/ijmm.2023.5297DOI Listing

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