The function of exosomes in ovarian granulosa cells.

Exosomes Extracellular vesicles Granulosa cells Polycystic ovarian syndrome Signaling pathway

Journal

Cell and tissue research
ISSN: 1432-0878
Titre abrégé: Cell Tissue Res
Pays: Germany
ID NLM: 0417625

Informations de publication

Date de publication:
Nov 2023
Historique:
received: 19 08 2022
accepted: 25 07 2023
medline: 13 11 2023
pubmed: 21 8 2023
entrez: 21 8 2023
Statut: ppublish

Résumé

Granulosa cells (GCs), as the basic components of ovarian tissue, play an indispensable role in maintaining normal ovarian functions such as hormone synthesis and ovulation. The abnormality of GCs often leads to ovarian endocrine disorders, which exert a negative effect on life quality and life expectancy. However, the pathogenesis and treatment of diseases are still poorly understood. Exosomes contain regulatory molecules and can transmit biological information in cell interaction. The role of exosomes in GCs has been studied extensively. This review summarizes the regulatory function of exosomes in GCs, as well as their participation in etiopathogenesis and their promising application in treatment when it comes to ovarian endocrine diseases, which can help us better understand ovarian diseases from the perspective of GCs.

Identifiants

pubmed: 37603064
doi: 10.1007/s00441-023-03820-3
pii: 10.1007/s00441-023-03820-3
doi:

Types de publication

Journal Article Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

257-267

Informations de copyright

© 2023. The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.

Références

Buccione R, Schroeder AC, Eppig JJ (1990) Interactions between somatic cells and germ cells throughout mammalian oogenesis. Biol Reprod 43(4):543–547
pubmed: 2289008 doi: 10.1095/biolreprod43.4.543
Cai JH, Sun YT, Bao S (2022) HucMSCs-exosomes containing miR-21 promoted estrogen production in ovarian granulosa cells via LATS1-mediated phosphorylation of LOXL2 and YAP. Gen Comp Endocrinol:114015
Cao J, Huo P, Cui K, Wei H, Cao J, Wang J, Liu Q, Lei X, Zhang S (2022) Follicular fluid-derived exosomal miR-143-3p/miR-155-5p regulate follicular dysplasia by modulating glycolysis in granulosa cells in polycystic ovary syndrome. Cell Commun Signal 20(1):61
pubmed: 35534864 pmcid: 9082924 doi: 10.1186/s12964-022-00876-6
Chen S, Wang Y, Liao L, Meng L, Li J, Shi C, Han H, Zheng X, Shen H (2020) Similar repair effects of human placenta, bone marrow mesenchymal stem cells, and their exosomes for damaged SVOG ovarian granulosa cells. Stem Cells Int 2020:8861557
pubmed: 33376492 pmcid: 7738794 doi: 10.1155/2020/8861557
Dehghan Z, Mohammadi-Yeganeh S, Rezaee D, Salehi M (2021) MicroRNA-21 is involved in oocyte maturation, blastocyst formation, and pre-implantation embryo development. Dev Biol 480:69–77
pubmed: 34411594 doi: 10.1016/j.ydbio.2021.08.008
Dewailly D, Robin G, Peigne M, Decanter C, Pigny P, Catteau-Jonard S (2016) Interactions between androgens, FSH, anti-Müllerian hormone and estradiol during folliculogenesis in the human normal and polycystic ovary. Hum Reprod Update 22(6):709–724
pubmed: 27566840 doi: 10.1093/humupd/dmw027
Di YQ, Han XL, Kang XL, Wang D, Chen CH, Wang JX, Zhao XF (2021) Autophagy triggers CTSD (cathepsin D) maturation and localization inside cells to promote apoptosis. Autophagy 17(5):1170–1192
pubmed: 32324083 doi: 10.1080/15548627.2020.1752497
Ding C, Qian C, Hou S, Lu J, Zou Q, Li H, Huang B (2020a) Exosomal miRNA-320a is released from hAMSCs and regulates SIRT4 to prevent reactive oxygen species generation in POI. Mol Ther Nucleic Acids 21:37–50
pubmed: 32506013 pmcid: 7272510 doi: 10.1016/j.omtn.2020.05.013
Ding C, Zhu L, Shen H, Lu J, Zou Q, Huang C, Li H, Huang B (2020b) Exosomal miRNA-17-5p derived from human umbilical cord mesenchymal stem cells improves ovarian function in premature ovarian insufficiency by regulating SIRT7. Stem Cells 38(9):1137–1148
pubmed: 32442343 doi: 10.1002/stem.3204
Ding L, Gao F, Zhang M, Yan W, Tang R, Zhang C, Chen ZJ (2016) Higher PDCD4 expression is associated with obesity, insulin resistance, lipid metabolism disorders, and granulosa cell apoptosis in polycystic ovary syndrome. Fertil Steril 105(5):1330-1337.e1333
pubmed: 26868993 doi: 10.1016/j.fertnstert.2016.01.020
Dompe C, Kulus M, Stefańska K, Kranc W, Chermuła B, Bryl R, Pieńkowski W, Nawrocki MJ, Petitte JN, Stelmach B et al (2021) Human granulosa cells-stemness properties, molecular cross-talk and follicular angiogenesis. Cells 10(6)
Escobar-Morreale HF (2018) Polycystic ovary syndrome: definition, aetiology, diagnosis and treatment. Nat Rev Endocrinol 14(5):270–284
pubmed: 29569621 doi: 10.1038/nrendo.2018.24
Escobar E, Peñafiel C, Gómez–Valenzuela F, Chimenos–Küstner E, Pérez–Tomás R (2021) Cyclooxygenase–2 protein expression modulates cell proliferation and apoptosis in solid ameloblastoma and odontogenic keratocyst. An immunohistochemical study. J Oral Pathol Med 50(9):937–945
Esfandyari S, Elkafas H, Chugh RM, Park HS, Navarro A, Al–Hendy A (2021) Exosomes as biomarkers for female reproductive diseases diagnosis and therapy. Int J Mol Sci 22(4)
Hu J, Tang T, Zeng Z, Wu J, Tan X, Yan J (2020) The expression of small RNAs in exosomes of follicular fluid altered in human polycystic ovarian syndrome. PeerJ 8:e8640
pubmed: 32117643 pmcid: 7035867 doi: 10.7717/peerj.8640
Huang B, Lu J, Ding C, Zou Q, Wang W, Li H (2018) Exosomes derived from human adipose mesenchymal stem cells improve ovary function of premature ovarian insufficiency by targeting SMAD. Stem Cell Res Ther 9(1):216
pubmed: 30092819 pmcid: 6085638 doi: 10.1186/s13287-018-0953-7
Huang X, Wu B, Chen MX, Hong L, Kong PC, Wei ZY, Teng XM (2020) Depletion of exosomal circLDLR in follicle fluid derepresses miR-1294 function and inhibits estradiol production via CYP19A1 in polycystic ovary syndrome. Aging-Us 12(15):15414–15435
doi: 10.18632/aging.103602
Hung WT, Hong X, Christenson LK, McGinnis LK (2015) Extracellular vesicles from bovine follicular fluid support cumulus expansion. Biol Reprod 93(5):117
pubmed: 26423123 pmcid: 4712005 doi: 10.1095/biolreprod.115.132977
Hung WT, Navakanitworakul R, Khan T, Zhang P, Davis JS, McGinnis LK, Christenson LK (2017) Stage-specific follicular extracellular vesicle uptake and regulation of bovine granulosa cell proliferation. Biol Reprod 97(4):644–655
pubmed: 29025042 pmcid: 6248580 doi: 10.1093/biolre/iox106
Jeelani R, Khan SN, Shaeib F, Kohan-Ghadr HR, Aldhaheri SR, Najafi T, Thakur M, Morris R, Abu-Soud HM (2017) Cyclophosphamide and acrolein induced oxidative stress leading to deterioration of metaphase II mouse oocyte quality. Free Radic Biol Med 110:11–18
pubmed: 28499912 pmcid: 6854673 doi: 10.1016/j.freeradbiomed.2017.05.006
Kowalczyk A, Wrzecińska M, Czerniawska-Piątkowska E, Kupczyński R (2022) Exosomes - spectacular role in reproduction. Biomed Pharmacother 148:112752
pubmed: 35220028 doi: 10.1016/j.biopha.2022.112752
Lee SH, Oh HJ, Kim MJ, Lee BC (2020a) Canine oviductal exosomes improve oocyte development via EGFR/MAPK signaling pathway. Reproduction 160(4):613–625
pubmed: 32698140 doi: 10.1530/REP-19-0600
Lee SH, Oh HJ, Kim MJ, Lee BC (2020b) Exosomes derived from oviduct cells mediate the EGFR/MAPK signaling pathway in cumulus cells. J Cell Physiol 235(2):1386–1404
pubmed: 31338842 doi: 10.1002/jcp.29058
Li H, Huang X, Chang XW, Yao JL, He QZ, Shen ZJ, Ji YZ, Wang K (2020) S100–A9 protein in exosomes derived from follicular fluid promotes inflammation via activation of NF-kappa B pathway in polycystic ovary syndrome. J Cell Mol Med 24(1):114–125
pubmed: 31568644 doi: 10.1111/jcmm.14642
Liao ZQ, Liu C, Wang L, Sui C, Zhang HW (2021) Therapeutic role of mesenchymal stem cell-derived extracellular vesicles in female reproductive diseases. Front Endocrinol 12
Liu K, Yang W, Hu M, Xie W, Huang J, Cui M, He X, Nie X (2021a) Exosomal miR-27 negatively regulates ROS production and promotes granulosa cells apoptosis by targeting SPRY2 in OHSS. J Cell Mol Med 25(8):3976–3990
pubmed: 33638619 pmcid: 8051746 doi: 10.1111/jcmm.16355
Liu T, Huang Y, Lin H (2021b) Estrogen disorders: interpreting the abnormal regulation of aromatase in granulosa cells (Review). Int J Mol Med 47(5)
Liu Y, Liu H, Li Z, Fan H, Yan X, Liu X, Xuan J, Feng D, Wei X (2021c) The release of peripheral immune inflammatory cytokines promote an inflammatory cascade in PCOS patients via altering the follicular microenvironment. Front Immunol 12:685724
pubmed: 34079559 pmcid: 8165443 doi: 10.3389/fimmu.2021.685724
Marchais M, Gilbert I, Bastien A, Macaulay A, Robert C (2022) Mammalian cumulus-oocyte complex communication: a dialog through long and short distance messaging. J Assist Reprod Genet
Matsuno Y, Onuma A, Fujioka YA, Yasuhara K, Fujii W, Naito K, Sugiura K (2017) Effects of exosome-like vesicles on cumulus expansion in pigs in vitro. J Reprod Dev 63(1):51–58
pubmed: 28163264 pmcid: 5320430 doi: 10.1262/jrd.2016-124
Nelson LR, Bulun SE (2001) Estrogen production and action. J Am Acad Dermatol 45(3 Suppl):S116-124
pubmed: 11511861 doi: 10.1067/mjd.2001.117432
Norman RJ, Dewailly D, Legro RS, Hickey TE (2007) Polycystic ovary syndrome. Lancet 370(9588):685–697
pubmed: 17720020 doi: 10.1016/S0140-6736(07)61345-2
Russell DL, Gilchrist RB, Brown HM, Thompson JG (2016) Bidirectional communication between cumulus cells and the oocyte: old hands and new players? Theriogenology 86(1):62–68
pubmed: 27160446 doi: 10.1016/j.theriogenology.2016.04.019
Rodrigues TA, Tuna KM, Alli AA, Tribulo P, Hansen PJ, Koh J, Paula-Lopes FF (2019) Follicular fluid exosomes act on the bovine oocyte to improve oocyte competence to support development and survival to heat shock. Reprod Fertil Dev 31(5):888–897
pubmed: 30760387 doi: 10.1071/RD18450
Saeed-Zidane M, Linden L, Salilew-Wondim D, Held E, Neuhoff C, Tholen E, Hoelker M, Schellander K, Tesfaye D (2017) Cellular and exosome mediated molecular defense mechanism in bovine granulosa cells exposed to oxidative stress. PLoS ONE 12(11):e0187569
pubmed: 29117219 pmcid: 5678720 doi: 10.1371/journal.pone.0187569
Salomon C, Das S, Erdbrügger U, Kalluri R, Kiang Lim S, Olefsky JM, Rice GE, Sahoo S, Andy Tao W, Vader P et al (2022) Extracellular vesicles and their emerging roles as cellular messengers in endocrinology: an endocrine society scientific statement. Endocr Rev 43(3):441–468
pubmed: 35552682 doi: 10.1210/endrev/bnac009
Sun B, Ma Y, Wang F, Hu L, Sun Y (2019) miR-644-5p carried by bone mesenchymal stem cell-derived exosomes targets regulation of p53 to inhibit ovarian granulosa cell apoptosis. Stem Cell Res Ther 10(1):360
pubmed: 31783913 pmcid: 6884862 doi: 10.1186/s13287-019-1442-3
Sun YT, Cai JH, Bao S (2022) Overexpression of lncRNA HCP5 in human umbilical cord mesenchymal stem cell-derived exosomes promoted the proliferation and inhibited the apoptosis of ovarian granulosa cells via the musashi RNA-binding protein 2/oestrogen receptor alpha 1 axis. Endocr J
Vashisht M, Rani P, Sunita OSK, Singh D (2018) Curcumin primed exosomes reverses LPS-induced pro-inflammatory gene expression in buffalo granulosa cells. J Cell Biochem 119(2):1488–1500
pubmed: 28771796 doi: 10.1002/jcb.26309
Wang L, Tang J, Wang L, Tan F, Song H, Zhou J, Li F (2021) Oxidative stress in oocyte aging and female reproduction. J Cell Physiol 236(12):7966–7983
pubmed: 34121193 doi: 10.1002/jcp.30468
Wei Y, Idrees M, Sidrat T, Joo M, Xu L, Ko J, Kong I (2022) BOEC-exo addition promotes in vitro maturation of bovine oocyte and enhances the developmental competence of early embryos. Animals (Basel) 12(4)
Winterhager E, Kidder GM (2015) Gap junction connexins in female reproductive organs: implications for women’s reproductive health. Hum Reprod Update 21(3):340–352
pubmed: 25667189 doi: 10.1093/humupd/dmv007
Xu R, Rai A, Chen M, Suwakulsiri W, Greening DW, Simpson RJ (2018) Extracellular vesicles in cancer - implications for future improvements in cancer care. Nat Rev Clin Oncol 15(10):617–638
pubmed: 29795272 doi: 10.1038/s41571-018-0036-9
Yang M, Lin L, Sha C, Li T, Zhao D, Wei H, Chen Q, Liu Y, Chen X, Xu W et al (2020) Bone marrow mesenchymal stem cell-derived exosomal miR-144-5p improves rat ovarian function after chemotherapy-induced ovarian failure by targeting PTEN. Lab Invest 100(3):342–352
pubmed: 31537899 doi: 10.1038/s41374-019-0321-y
Yang Z, Du X, Wang C, Zhang J, Liu C, Li Y, Jiang H (2019) Therapeutic effects of human umbilical cord mesenchymal stem cell-derived microvesicles on premature ovarian insufficiency in mice. Stem Cell Res Ther 10(1):250
pubmed: 31412919 pmcid: 6693188 doi: 10.1186/s13287-019-1327-5
Yuan C, Li Z, Zhao Y, Wang X, Chen L, Zhao Z, Cao M, Chen T, Iqbal T, Zhang B et al (2021b) Follicular fluid exosomes: important modulator in proliferation and steroid synthesis of porcine granulosa cells. Faseb j 35(5):e21610
pubmed: 33908671 doi: 10.1096/fj.202100030RR
Yuan D, Luo J, Sun Y, Hao L, Zheng J, Yang Z (2021a) PCOS follicular fluid derived exosomal miR-424-5p induces granulosa cells senescence by targeting CDCA4 expression. Cell Signal 85:110030
pubmed: 33930499 doi: 10.1016/j.cellsig.2021.110030
Zhang X, Zhang R, Hao J, Huang X, Liu M, Lv M, Su C, Mu YL (2022b) miRNA-122–5p in POI ovarian-derived exosomes promotes granulosa cell apoptosis by regulating BCL9. Cancer Med
Zhang X, Zhang W, Wang Z, Zheng N, Yuan F, Li B, Li X, Deng L, Lin M, Chen X et al (2022a) Enhanced glycolysis in granulosa cells promotes the activation of primordial follicles through mTOR signaling. Cell Death Dis 13(1):87
pubmed: 35087042 pmcid: 8795455 doi: 10.1038/s41419-022-04541-1
Zhao Y, Pan S, Li Y, Wu X (2022a) Exosomal miR-143-3p derived from follicular fluid promotes granulosa cell apoptosis by targeting BMPR1A in polycystic ovary syndrome. Sci Rep 12(1):4359
pubmed: 35288625 pmcid: 8921316 doi: 10.1038/s41598-022-08423-6
Zhao Y, Pan S, Wu X (2022b) Human umbilical cord mesenchymal stem cell-derived exosomes inhibit ovarian granulosa cells inflammatory response through inhibition of NF-κB signaling in polycystic ovary syndrome. J Reprod Immunol 152:103638
pubmed: 35588629 doi: 10.1016/j.jri.2022.103638
Zhao Y, Tao M, Wei M, Du S, Wang H, Wang X (2019) Mesenchymal stem cells derived exosomal miR-323-3p promotes proliferation and inhibits apoptosis of cumulus cells in polycystic ovary syndrome (PCOS). Artif Cells Nanomed Biotechnol 47(1):3804–3813
pubmed: 31549864 doi: 10.1080/21691401.2019.1669619
Zhang Q, Sun J, Huang Y, Bu S, Guo Y, Gu T, Li B, Wang C, Lai D (2019) Human amniotic epithelial cell-derived exosomes restore ovarian function by transferring microRNAs against apoptosis. Mol Ther Nucleic Acids 16:407–418
pubmed: 31022607 pmcid: 6479666 doi: 10.1016/j.omtn.2019.03.008
Zhang S, Huang B, Su P, Chang Q, Li P, Song A, Zhao X, Yuan Z, Tan J (2021) Concentrated exosomes from menstrual blood-derived stromal cells improves ovarian activity in a rat model of premature ovarian insufficiency. Stem Cell Res Ther 12(1):178
pubmed: 33712079 pmcid: 7953711 doi: 10.1186/s13287-021-02255-3
Zhou Z, Tu Z, Zhang J, Tan C, Shen X, Wan B, Li Y, Wang A, Zhao L, Hu J et al (2022) Follicular fluid-derived exosomal MicroRNA-18b-5p regulates PTEN-mediated PI3K/Akt/mTOR signaling pathway to inhibit polycystic ovary syndrome development. Mol Neurobiol

Auteurs

Ruotong Zhou (R)

Department of Endocrinology, First Affiliated Hospital of Dalian Medical University, Zhongshan Str.222, Dalian, 116011, Liaoning, China.

Dan Liu (D)

Department of Endocrinology, First Affiliated Hospital of Dalian Medical University, Zhongshan Str.222, Dalian, 116011, Liaoning, China. liudandan303114@163.com.

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