Extracellular vesicles miRNA-21: a potential therapeutic tool in premature ovarian dysfunction.

premature ovarian dysfunction / amniotic fluid mesenchymal stem cells / extracellular vesicles / miRNA-21 / fertility

Journal

Molecular human reproduction
ISSN: 1460-2407
Titre abrégé: Mol Hum Reprod
Pays: England
ID NLM: 9513710

Informations de publication

Date de publication:
10 12 2020
Historique:
received: 22 03 2020
revised: 15 09 2020
pubmed: 14 10 2020
medline: 3 11 2021
entrez: 13 10 2020
Statut: ppublish

Résumé

Chemotherapy induces an irreversible premature ovarian dysfunction (POD). Amniotic fluid mesenchymal stem cells (AFMSCs) can rescue fertility; however, the notion that stem cells can rejuvenate follicles is highly controversial due to the predetermined ovarian reserve. This study aims to isolate AFMSC-derived extracellular vesicles (EVs) and investigate their abundancy for the anti-apoptotic miRNA-21 as a means of ovarian restoration. Female rats were divided into healthy controls and POD-induced groups. The POD induced groups were subdivided into three groups according to the therapies they received: placebo-treated POD, AFMSC and EVs groups. Rats were assessed for serum anti-Müllerian hormone (AMH) levels, ovarian caspase 3 and PTEN protein levels in the ovarian lysate. Total follicular counts (TFCs) were estimated from stained ovarian sections. Functional recovery was investigated through daily vaginal smears and mating trials. In vitro chemical transfection of the AFMSCs with selective miRNA-21 mimics/inhibitors followed by isolation of EVs for therapy was conducted in two additional groups. At the interval points studied, treatment with AFMSCs and EVs equally restored TFC, AMH levels, regular estrous cycles and fruitful conception, while it both diminished caspase 3 and PTEN levels. EVs carrying miRNA-21 mimics recapitulated the short-term effects. Placebo-treated POD or EVs carrying miRNA-21 inhibitors showed augmented ovarian follicular damage demonstrated the low AMH levels, TFC and high levels of PTEN and caspase 3. miRNA-21 allowed regeneration by modulating PTEN and caspase 3 apoptotic pathways. Our findings exemplify that EVs could serve as an innovative cell-free therapeutic tool functioning through their miRNA content and that miRNA-21 has a chief regenerative role through modulating PTEN and caspase 3 apoptotic pathways.

Identifiants

pubmed: 33049041
pii: 5922643
doi: 10.1093/molehr/gaaa068
doi:

Substances chimiques

MIRN21 microRNA, human 0
MicroRNAs 0
Anti-Mullerian Hormone 80497-65-0

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

906-919

Informations de copyright

© The Author(s) 2020. Published by Oxford University Press on behalf of European Society of Human Reproduction and Embryology. All rights reserved. For permissions, please email: journals.permissions@oup.com.

Auteurs

Eman Thabet (E)

Medical Physiology Department, Faculty of Medicine, Alexandria University, Alexandria, Egypt.

Alaaeldin Yusuf (A)

Medical Physiology Department, Faculty of Medicine, Alexandria University, Alexandria, Egypt.

Doaa A Abdelmonsif (DA)

Medical Biochemistry Department, Faculty of Medicine, Alexandria University, Alexandria, Egypt.
Center of Excellence for Research in Regenerative Medicine and Applications (CERRMA), Faculty of Medicine, Alexandria University, Alexandria, Egypt.

Iman Nabil (I)

Histology and Cell Biology, Faculty of Medicine, Alexandria University, Alexandria, Egypt.

Ghada Mourad (G)

Center of Excellence for Research in Regenerative Medicine and Applications (CERRMA), Faculty of Medicine, Alexandria University, Alexandria, Egypt.
Histology and Cell Biology, Faculty of Medicine, Alexandria University, Alexandria, Egypt.

Radwa A Mehanna (RA)

Medical Physiology Department, Faculty of Medicine, Alexandria University, Alexandria, Egypt.
Center of Excellence for Research in Regenerative Medicine and Applications (CERRMA), Faculty of Medicine, Alexandria University, Alexandria, Egypt.

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Classifications MeSH