Vander BM, Wyns C. Fertility and infertility: definition and epidemiology. CLIN BIOCHEM. 2018;62:2–10.
Zhang S, Zhu D, Mei X, Li Z, Li J, Xie M, Xie H, Wang S, Cheng K. Advances in biomaterials and regenerative medicine for primary ovarian insufficiency therapy. BIOACT MATER. 2021;6(7):1957–72.
Webber L, Davies M, Anderson R, Bartlett J, Braat D, Cartwright B, Cifkova R, de Muinck KS, Hogervorst E, Janse F, et al. ESHRE guideline: management of women with premature ovarian insufficiency. HUM REPROD. 2016;31(5):926–37.
Article CAS PubMed Google Scholar
Dang Y, Wang X, Hao Y, Zhang X, Zhao S, Ma J, Qin Y, Chen ZJ. MicroRNA-379-5p is associate with biochemical premature ovarian insufficiency through PARP1 and XRCC6. CELL DEATH DIS. 2018;9(2):106.
Article PubMed PubMed Central Google Scholar
Ebrahimi M, Akbari AF. Pathogenesis and causes of premature ovarian failure: an update. INT J FERTIL STERIL. 2011;5(2):54–65.
PubMed PubMed Central Google Scholar
Iorio R, Castellucci A, Ventriglia G, Teoli F, Cellini V, Macchiarelli G, Cecconi S. Ovarian toxicity: from environmental exposure to chemotherapy. CURR PHARM Des. 2014;20(34):5388–97.
Article CAS PubMed Google Scholar
Zhou F, Shi LB, Zhang SY. Ovarian fibrosis: A phenomenon of concern. Chin MED J-PEKING. 2017;130(3):365–71.
Wynn TA. Cellular and molecular mechanisms of fibrosis. J PATHOL. 2008;214(2):199–210.
Article CAS PubMed PubMed Central Google Scholar
Boots CE, Jungheim ES. Inflammation and human ovarian follicular dynamics. SEMIN REPROD MED. 2015;33(4):270–5.
Article CAS PubMed PubMed Central Google Scholar
Cui L, Bao H, Liu Z, Man X, Liu H, Hou Y, Luo Q, Wang S, Fu Q, Zhang H. hUMSCs regulate the differentiation of ovarian stromal cells via TGF-beta(1)/Smad3 signaling pathway to inhibit ovarian fibrosis to repair ovarian function in POI rats. STEM CELL RES THER. 2020;11(1):386.
Article CAS PubMed PubMed Central Google Scholar
Wang C, Sun Y. Induction of collagen I by CXCL10 in ovarian Theca-Stroma cells via the JNK pathway. FRONT ENDOCRINOL. 2022;13:823740.
Beghdadi W, Madjene LC, Benhamou M, Charles N, Gautier G, Launay P, Blank U. Mast cells as cellular sensors in inflammation and immunity. FRONT IMMUNOL. 2011;2:37.
Article PubMed PubMed Central Google Scholar
Krystel-Whittemore M, Dileepan KN, Wood JG. Mast cell: A Multi-Functional master cell. FRONT IMMUNOL. 2015;6:620.
Overed-Sayer C, Rapley L, Mustelin T, Clarke DL. Are mast cells instrumental for fibrotic diseases? FRONT PHARMACOL. 2013;4:174.
Ikarashi Y, Yuzurihara M. Experimental anxiety induced by histaminergics in mast cell-deficient and congenitally normal mice. PHARMACOL BIOCHEM BE. 2002;72(1–2):437–41.
Mukai K, Tsai M, Saito H, Galli SJ. Mast cells as sources of cytokines, chemokines, and growth factors. IMMUNOL REV. 2018;282(1):121–50.
Article CAS PubMed PubMed Central Google Scholar
Veerappan A, O’Connor NJ, Brazin J, Reid AC, Jung A, McGee D, Summers B, Branch-Elliman D, Stiles B, Worgall S, et al. Mast cells: a pivotal role in pulmonary fibrosis. DNA CELL BIOL. 2013;32(4):206–18.
Article CAS PubMed PubMed Central Google Scholar
Zimmermann C, Troeltzsch D, Gimenez-Rivera VA, Galli SJ, Metz M, Maurer M, Siebenhaar F. Mast cells are critical for controlling the bacterial burden and the healing of infected wounds. P NATL ACAD SCI USA. 2019;116(41):20500–4.
Yan L, Wang L, Wu J, Wu Y, Zhu X, Mei Q, Song Y, Liu Y, Zhang L, Ai J, et al. Multi-biofunctional graphene oxide-enhanced poly-L-lactic acid composite nanofiber scaffolds for ovarian function recovery of transplanted-tissue. NPJ REGEN MED. 2022;7(1):52.
Article CAS PubMed PubMed Central Google Scholar
Brower GL, Chancey AL, Thanigaraj S, Matsubara BB, Janicki JS. Cause and effect relationship between myocardial mast cell number and matrix metalloproteinase activity. AM J PHYSIOL-HEART C. 2002;283(2):H518–25.
Mina Y, Rinkevich-Shop S, Konen E, Goitein O, Kushnir T, Epstein FH, Feinberg MS, Leor J, Landa-Rouben N. Mast cell Inhibition attenuates myocardial damage, adverse remodeling, and dysfunction during fulminant myocarditis in the rat. J CARDIOVASC PHARM T. 2013;18(2):152–61.
Palaniyandi SS, Watanabe K, Ma M, Tachikawa H, Kodama M, Aizawa Y. Involvement of mast cells in the development of fibrosis in rats with postmyocarditis dilated cardiomyopathy. BIOL PHARM BULL. 2005;28(11):2128–32.
Zhang X, Dong H, Li N, Zhang S, Sun J, Zhang S, Qian Y. Activated brain mast cells contribute to postoperative cognitive dysfunction by evoking microglia activation and neuronal apoptosis. J NEUROINFLAMM. 2016;13(1):127.
Dong H, Wang Y, Zhang X, Zhang X, Qian Y, Ding H, Zhang S. Stabilization of brain mast cells alleviates LPS-Induced neuroinflammation by inhibiting microglia activation. FRONT CELL NEUROSCI. 2019;13:191.
Article CAS PubMed PubMed Central Google Scholar
Adams MN, Ramachandran R, Yau MK, Suen JY, Fairlie DP, Hollenberg MD, Hooper JD. Structure, function and pathophysiology of protease activated receptors. PHARMACOL THERAPEUT. 2011;130(3):248–82.
Shi J, Xiao H, Li J, Zhang J, Li Y, Zhang J, Wang X, Bai X, Tao K, Hu D, et al. Wild-type p53-modulated autophagy and autophagic fibroblast apoptosis inhibit hypertrophic Scar formation. LAB INVEST. 2018;98(11):1423–37.
Article CAS PubMed Google Scholar
Li W, Ma Y, He L, Li H, Chu Y, Jiang Z, Zhao X, Nie Y, Wang X, Wang H. Protease-activated receptor 2 stabilizes Bcl-xL and regulates EGFR-targeted therapy response in colorectal cancer. CANCER LETT. 2021;517:14–23.
Article CAS PubMed Google Scholar
Kirshenbaum M, Orvieto R. Premature ovarian insufficiency (POI) and autoimmunity-an update appraisal. J ASSIST REPROD GEN. 2019;36(11):2207–15.
Zhou XY, Zhang J, Li Y, Chen YX, Wu XM, Li X, Zhang XF, Ma LZ, Yang YZ, Zheng KM et al. Advanced Oxidation Protein Products Induce G1/G0-Phase Arrest in Ovarian Granulosa Cells via the ROS-JNK/p38 MAPK-p21 Pathway in Premature Ovarian Insufficiency. OXID MED CELL LONGEV 2021, 2021:6634718.
Gao H, Gao L, Wang W. Advances in the cellular immunological pathogenesis and related treatment of primary ovarian insufficiency. AM J REPROD IMMUNOL. 2022;88(5):e13622.
Article CAS PubMed Google Scholar
Briley SM, Jasti S, McCracken JM, Hornick JE, Fegley B, Pritchard MT, Duncan FE. Reproductive age-associated fibrosis in the stroma of the mammalian ovary. Reproduction. 2016;152(3):245–60.
Article CAS PubMed PubMed Central Google Scholar
Umehara T, Winstanley YE, Andreas E, Morimoto A, Williams EJ, Smith KM, Carroll J, Febbraio MA, Shimada M, Russell DL, et al. Female reproductive life span is extended by targeted removal of fibrotic collagen from the mouse ovary. SCI ADV. 2022;8(24):eabn4564.
Article CAS PubMed PubMed Central Google Scholar
Isola J, Ocanas SR, Hubbart CR, Ko S, Mondal SA, Hense JD, Carter H, Schneider A, Kovats S, Alberola-Ila J, et al. A single-cell atlas of the aging mouse ovary. Nat Aging. 2024;4(1):145–62.
Comments (0)