Cite

Lai D, Xu M, Zhang Q, Chen Y, Li T, Wang Q, Gao Y, Wei C. Identification and characterization of epithelial cells derived from human ovarian follicular fluid. Stem Cell Res Ther. 2015;6; DOI:10.1186/s13287-015-0004-6.LaiDXuMZhangQChenYLiTWangQGaoYWeiCIdentification and characterization of epithelial cells derived from human ovarian follicular fluidStem Cell Res Ther2015610.1186/s13287-015-0004-6Open DOISearch in Google Scholar

Kranc W, Chachuła A, Bryja A, Ciesiółka S, Budna J, Wojtanowicz-Markiewicz K, Sumelka E, Borys S, Antosik P, Bukowska D, Bruska M, Nowicki M, Kempisty B. Selected molecular and physiological aspects of mammalian ovarian granulosa cells in primary culture. Med Weter. 2016;72:723–7; DOI:10.21521/mw.5606.KrancWChachułaABryjaACiesiółkaSBudnaJWojtanowicz-MarkiewiczKSumelkaEBorysSAntosikPBukowskaDBruskaMNowickiMKempistyBSelected molecular and physiological aspects of mammalian ovarian granulosa cells in primary cultureMed Weter201672723710.21521/mw.5606Open DOISearch in Google Scholar

Kottarathil VD, Antony MA, Nair IR, Pavithran K. Recent Advances in Granulosa Cell Tumor Ovary: A Review. Indian J Surg Oncol. 2013;4:37–47; DOI:10.1007/s13193-012-0201-z.KottarathilVDAntonyMANairIRPavithranKRecent Advances in Granulosa Cell Tumor Ovary: A ReviewIndian J Surg Oncol20134374710.1007/s13193-012-0201-zOpen DOISearch in Google Scholar

Saeed-Zidane M, Linden L, Salilew-Wondim D, Held E, Neuhoff C, Tholen E, Hoelker M, Schellander K, Tesfaye D. Cellular and exosome mediated molecular defense mechanism in bovine granulosa cells exposed to oxidative stress. PLoS One. 2017;12; DOI:10.1371/journal.pone.0187569.Saeed-ZidaneMLindenLSalilew-WondimDHeldENeuhoffCTholenEHoelkerMSchellanderKTesfayeDCellular and exosome mediated molecular defense mechanism in bovine granulosa cells exposed to oxidative stressPLoS One20171210.1371/journal.pone.0187569Open DOISearch in Google Scholar

Da Silveira JC, Winger QA, Bouma GJ, Carnevale EM. Effects of age on follicular fluid exosomal microRNAs and granulosa cell transforming growth factor-β signalling during follicle development in the mare. Reprod Fertil Dev. 2015;27:897–905; DOI:10.1071/RD14452.Da SilveiraJCWingerQABoumaGJCarnevaleEMEffects of age on follicular fluid exosomal microRNAs and granulosa cell transforming growth factor-β signalling during follicle development in the mareReprod Fertil Dev20152789790510.1071/RD14452Open DOISearch in Google Scholar

Kossowska-Tomaszczuk K, De Geyter C, De Geyter M, Martin I, Holzgreve W, Scherberich A, Zhang H. The Multipotency of Luteinizing Granulosa Cells Collected from Mature Ovarian Follicles. Stem Cells. 2009;27:210– 9; DOI:10.1634/stemcells.2008-0233.Kossowska-TomaszczukKDe GeyterCDe GeyterMMartinIHolzgreveWScherberichAZhangHThe Multipotency of Luteinizing Granulosa Cells Collected from Mature Ovarian FolliclesStem Cells200927210910.1634/stemcells.2008-0233Open DOISearch in Google Scholar

Bhartiya D, Patel H, Sharma D. Heterogeneity of Stem Cells in the Ovary. Adv Exp Med Biol. 2019;1169:213–23; DOI:10.1007/978-3-030-24108-7_11.BhartiyaDPatelHSharmaDHeterogeneity of Stem Cells in the OvaryAdv Exp Med Biol201911692132310.1007/978-3-030-24108-7_11Open DOISearch in Google Scholar

Tang DG. Understanding cancer stem cell heterogeneity and plasticity. Cell Res. 2012;22:457–72; DOI:10.1038/cr.2012.13.TangDGUnderstanding cancer stem cell heterogeneity and plasticityCell Res2012224577210.1038/cr.2012.13Open DOISearch in Google Scholar

Li N, Clevers H. Coexistence of quiescent and active adult stem cells in mammals. Science (80- ). 2010;327:542–5; DOI:10.1126/science.1180794.LiNCleversHCoexistence of quiescent and active adult stem cells in mammalsScience (80- )2010327542510.1126/science.1180794Open DOISearch in Google Scholar

Bhartiya D, Patel H. Ovarian stem cells-resolving controversies. J Assist Reprod Genet. 2018;35:393–8; DOI:10.1007/s10815-017-1080-6.BhartiyaDPatelHOvarian stem cells-resolving controversiesJ Assist Reprod Genet201835393810.1007/s10815-017-1080-6Open DOISearch in Google Scholar

Lahlil R, Scrofani M, Barbet R, Tancredi C, Aries A, Hénon P. VSELs Maintain their Pluripotency and Competence to Differentiate after Enhanced Ex Vivo Expansion. Stem Cell Rev Reports. 2018;14:510–24; DOI:10.1007/s12015-018-9821-1.LahlilRScrofaniMBarbetRTancrediCAriesAHénonPVSELs Maintain their Pluripotency and Competence to Differentiate after Enhanced Ex Vivo ExpansionStem Cell Rev Reports2018145102410.1007/s12015-018-9821-1Open DOISearch in Google Scholar

Sittadjody S, Enck KM, Wells A, Yoo JJ, Atala A, Saul JM, Opara EC. Encapsulation of Mesenchymal Stem Cells in 3D Ovarian Cell Constructs Promotes Stable and Long-Term Hormone Secretion with Improved Physiological Outcomes in a Syngeneic Rat Model. Ann Biomed Eng. 2019; DOI:10.1007/s10439-019-02334-w.SittadjodySEnckKMWellsAYooJJAtalaASaulJMOparaECEncapsulation of Mesenchymal Stem Cells in 3D Ovarian Cell Constructs Promotes Stable and Long-Term Hormone Secretion with Improved Physiological Outcomes in a Syngeneic Rat ModelAnn Biomed Eng201910.1007/s10439-019-02334-wOpen DOISearch in Google Scholar

Bhartiya D, Shaikh A, Anand S, Patel H, Kapoor S, Sriraman K, Parte S, Unni S. Endogenous, very small embryonic-like stem cells: critical review, therapeutic potential and a look ahead. Hum Reprod Update. 2016;23:41–76; DOI:10.1093/humupd/dmw030.BhartiyaDShaikhAAnandSPatelHKapoorSSriramanKParteSUnniSEndogenous, very small embryonic-like stem cells: critical review, therapeutic potential and a look aheadHum Reprod Update201623417610.1093/humupd/dmw030Open DOISearch in Google Scholar

Parte S, Patel H, Sriraman K, Bhartiya D. Isolation and characterization of stem cells in the adult mammalian ovary. Methods Mol Biol. 2015;1235:203–29; DOI:10.1007/978-1-4939-1785-3_16.ParteSPatelHSriramanKBhartiyaDIsolation and characterization of stem cells in the adult mammalian ovaryMethods Mol Biol201512352032910.1007/978-1-4939-1785-3_16Open DOISearch in Google Scholar

Brevini TAL, Pennarossa G, Rahman MM, Paffoni A, Antonini S, Ragni G, deEguileor M, Tettamanti G, Gandolfi F. Morphological and Molecular Changes of Human Granulosa Cells Exposed to 5-Azacytidine and Addressed Toward Muscular Differentiation. Stem Cell Rev Reports. 2014;10:633–42; DOI:10.1007/s12015-014-9521-4.BreviniTALPennarossaGRahmanMMPaffoniAAntoniniSRagniGdeEguileorMTettamantiGGandolfiFMorphological and Molecular Changes of Human Granulosa Cells Exposed to 5-Azacytidine and Addressed Toward Muscular DifferentiationStem Cell Rev Reports2014106334210.1007/s12015-014-9521-4Open DOISearch in Google Scholar

Kranc W, Brązert M, Celichowski P, Bryja A, Nawrocki MJ, Ożegowska K, Jankowski M, Jeseta M, Pawelczyk L, Bręborowicz A, Rachoń D, Skowroński MT, Bruska M, Zabel M, Nowicki M, Kempisty B. “Heart development and morphogenesis” is a novel pathway for human ovarian granulosa cell differentiation during long‑term in vitro cultivation‑a microarray approach. Mol Med Rep. 2019;19:1705–15; DOI:10.3892/mmr.2019.9837.KrancWBrązertMCelichowskiPBryjaANawrockiMJOżegowskaKJankowskiMJesetaMPawelczykLBręborowiczARachońDSkowrońskiMTBruskaMZabelMNowickiMKempistyB.“Heart development and morphogenesis” is a novel pathway for human ovarian granulosa cell differentiation during long‑term in vitro cultivation‑a microarray approachMol Med Rep20191917051510.3892/mmr.2019.9837Open DOISearch in Google Scholar

Vermeulen M, Giudice M-G, Del Vento F, Wyns C. Role of stem cells in fertility preservation: current insights. Stem Cells Cloning. 2019;12:27–48; DOI:10.2147/SCCAA.S178490.VermeulenMGiudiceM-GDel VentoFWynsCRole of stem cells in fertility preservation: current insightsStem Cells Cloning201912274810.2147/SCCAA.S178490Open DOISearch in Google Scholar

Dzafic E, Stimpfel M, Virant-Klun I. Plasticity of granulosa cells: on the crossroad of stemness and transdifferentiation potential. J Assist Reprod Genet. 2013;30:1255–61; DOI:10.1007/s10815-013-0068-0.DzaficEStimpfelMVirant-KlunIPlasticity of granulosa cells: on the crossroad of stemness and transdifferentiation potentialJ Assist Reprod Genet20133012556110.1007/s10815-013-0068-0Open DOISearch in Google Scholar

Kranc W, Brązert M, Budna J, Celichowski P, Bryja A, Nawrocki MJ, Ożegowska K, Jankowski M, Chermuła B, Dyszkiewicz-Konwińska M, Jeseta M, Pawelczyk L, Bręborowicz A, Rachoń D, Bruska M, Nowicki M, Zabel M, Kempisty B. Genes responsible for proliferation, differentiation, and junction adhesion are significantly up-regulated in human ovarian granulosa cells during a long-term primary in vitro culture. Histochem Cell Biol. 2019;151:125–43; DOI:10.1007/s00418-018-1750-1.KrancWBrązertMBudnaJCelichowskiPBryjaANawrockiMJOżegowskaKJankowskiMChermułaBDyszkiewicz-KonwińskaMJesetaMPawelczykLBręborowiczARachońDBruskaMNowickiMZabelMKempistyBGenes responsible for proliferation, differentiation, and junction adhesion are significantly up-regulated in human ovarian granulosa cells during a long-term primary in vitro cultureHistochem Cell Biol20191511254310.1007/s00418-018-1750-1Open DOISearch in Google Scholar

Myers M, van den Driesche S, McNeilly AS, Duncan WC. Activin A reduces luteinisation of human luteinised granulosa cells and has opposing effects to human chorionic gonadotropin in vitro. J Endocrinol. 2008;199:201–12; DOI:10.1677/JOE-08-0302.MyersMvan den DriescheSMcNeillyASDuncanWCActivin A reduces luteinisation of human luteinised granulosa cells and has opposing effects to human chorionic gonadotropin in vitroJ Endocrinol20081992011210.1677/JOE-08-0302Open DOISearch in Google Scholar

Kossowska-Tomaszczuk K, De Geyter C. Cells with stem cell characteristics in somatic compartments of the ovary. Biomed Res Int. 2013;2013:310859; DOI:10.1155/2013/310859.Kossowska-TomaszczukKDe GeyterCCells with stem cell characteristics in somatic compartments of the ovaryBiomed Res Int2013201331085910.1155/2013/310859Open DOISearch in Google Scholar

Nakayama M, Manabe N, Nishihara S, Miyamoto H. Species-specific Differences in Apoptotic Cell Localization in Granulosa and Theca Interna Cells during Follicular Atresia in Porcine and Bovine Ovaries. J Reprod Dev. 2000;46:147–56; DOI:10.1262/jrd.46.147.NakayamaMManabeNNishiharaSMiyamotoHSpecies-specific Differences in Apoptotic Cell Localization in Granulosa and Theca Interna Cells during Follicular Atresia in Porcine and Bovine OvariesJ Reprod Dev2000461475610.1262/jrd.46.147Open DOISearch in Google Scholar

Bukovsky A, Svetlikova M, Caudle MR. Oogenesis in cultures derived from adult human ovaries. Reprod Biol Endocrinol. 2005;3; DOI:10.1186/1477-7827-3-17.BukovskyASvetlikovaMCaudleMROogenesis in cultures derived from adult human ovariesReprod Biol Endocrinol2005310.1186/1477-7827-3-17Open DOISearch in Google Scholar

Varras M, Griva T, Kalles V, Akrivis C, Paparisteidis N. Markers of stem cells in human ovarian granulosa cells: Is there a clinical significance in ART? J Ovarian Res. 2012;5; DOI:10.1186/1757-2215-5-36.VarrasMGrivaTKallesVAkrivisCPaparisteidisNMarkers of stem cells in human ovarian granulosa cells: Is there a clinical significance in ART?J Ovarian Res2012510.1186/1757-2215-5-36Open DOISearch in Google Scholar

Andrei D, Nagy RA, van Montfoort A, Tietge U, Terpstra M, Kok K, van den Berg A, Hoek A, Kluiver J, Donker R. Differential miRNA Expression Profiles in Cumulus and Mural Granulosa Cells from Human Pre-ovulatory Follicles. MicroRNA. 2018;8:61–7; DOI:10.2174/22115366076661 80912152618.AndreiDNagyRAvan MontfoortATietgeUTerpstraMKokKvan den BergAHoekAKluiverJDonkerRDifferential miRNA Expression Profiles in Cumulus and Mural Granulosa Cells from Human Pre-ovulatory FolliclesMicroRNA2018861710.2174/2211536607666180912152618Open DOISearch in Google Scholar

Kranc W, Brązert M, Budna J, Celichowski P, Bryja A, Nawrocki MJ, Ożegowska K, Jankowski M, Chermuła B, Dyszkiewicz-Konwińska M, Jeseta M, Pawelczyk L, Bręborowicz A, Rachoń D, Bruska M, Nowicki M, Zabel M, Kempisty B. Genes responsible for proliferation, differentiation, and junction adhesion are significantly up-regulated in human ovarian granulosa cells during a long-term primary in vitro culture. Histochem Cell Biol. 2018; DOI:10.1007/s00418-018-1750-1.KrancWBrązertMBudnaJCelichowskiPBryjaANawrockiMJOżegowskaKJankowskiMChermułaBDyszkiewicz-KonwińskaMJesetaMPawelczykLBręborowiczARachońDBruskaMNowickiMZabelMKempistyBGenes responsible for proliferation, differentiation, and junction adhesion are significantly up-regulated in human ovarian granulosa cells during a long-term primary in vitro cultureHistochem Cell Biol201810.1007/s00418-018-1750-1Open DOISearch in Google Scholar

Virant-Klun I, Omejec S, Stimpfel M, Skerl P, Novakovic S, Jancar N, Vrtacnik-Bokal E. Female Age Affects the Mesenchymal Stem Cell Characteristics of Aspirated Follicular Cells in the In Vitro Fertilization Programme. Stem Cell Rev Reports. 2019;15:543–57; DOI:10.1007/s12015-019-09889-0.Virant-KlunIOmejecSStimpfelMSkerlPNovakovicSJancarNVrtacnik-BokalEFemale Age Affects the Mesenchymal Stem Cell Characteristics of Aspirated Follicular Cells in the In Vitro Fertilization ProgrammeStem Cell Rev Reports2019155435710.1007/s12015-019-09889-0Open DOISearch in Google Scholar

Bruckova L, Soukup T, Visek B, Moos J, Moosova M, Pavelkova J, Rezabek K, Kucerova L, Micuda S, Brcakova E, Mokry J. Proliferative potential and phenotypic analysis of long-term cultivated human granulosa cells initiated by addition of follicular fluid. J Assist Reprod Genet. 2011;28:939–50; DOI:10.1007/s10815-011-9617-6.BruckovaLSoukupTVisekBMoosJMoosovaMPavelkovaJRezabekKKucerovaLMicudaSBrcakovaEMokryJProliferative potential and phenotypic analysis of long-term cultivated human granulosa cells initiated by addition of follicular fluidJ Assist Reprod Genet2011289395010.1007/s10815-011-9617-6Open DOISearch in Google Scholar

Schertl P, Volk J, Perduns R, Adam K, Leyhausen G, Bakopoulou A, Geurtsen W. Impaired angiogenic differentiation of dental pulp stem cells during exposure to the resinous monomer triethylene glycol dimethacrylate. Dent Mater. 2019;35:144–55; DOI:10.1016/j.dental.2018.11.006.SchertlPVolkJPerdunsRAdamKLeyhausenGBakopoulouAGeurtsenWImpaired angiogenic differentiation of dental pulp stem cells during exposure to the resinous monomer triethylene glycol dimethacrylateDent Mater2019351445510.1016/j.dental.2018.11.006Open DOISearch in Google Scholar

Ai A, Tang Z, Liu Y, Yu S, Li B, Huang H, Wang X, Cao Y, Zhang W. Characterization and identification of human immortalized granulosa cells derived from ovarian follicular fluid. Exp Ther Med. 2019;18:2167–77; DOI:10.3892/etm.2019.7802.AiATangZLiuYYuSLiBHuangHWangXCaoYZhangWCharacterization and identification of human immortalized granulosa cells derived from ovarian follicular fluidExp Ther Med20191821677710.3892/etm.2019.7802Open DOISearch in Google Scholar

Liu YW, Chen B, Yang X, Fugate JA, Kalucki FA, Futakuchi-Tsuchida A, Couture L, Vogel KW, Astley CA, Baldessari A, Ogle J, Don CW, Steinberg ZL, Seslar SP, Tuck SA, Tsuchida H, Naumova A V., Dupras SK, Lyu MS, Lee J, Hailey DW, Reinecke H, Pabon L, Fryer BH, MacLellan WR, Thies RS, Murry CE. Human embryonic stem cell-derived cardiomyocytes restore function in infarcted hearts of non-human primates. Nat Biotechnol. 2018;36:597–605; DOI:10.1038/nbt.4162.LiuYWChenBYangXFugateJAKaluckiFAFutakuchi-TsuchidaACoutureLVogelKWAstleyCABaldessariAOgleJDonCWSteinbergZLSeslarSPTuckSATsuchidaHNaumovaA V.DuprasSKLyuMSLeeJHaileyDWReineckeHPabonLFryerBHMacLellanWRThiesRSMurryCEHuman embryonic stem cell-derived cardiomyocytes restore function in infarcted hearts of non-human primatesNat Biotechnol20183659760510.1038/nbt.4162Open DOISearch in Google Scholar

Huang Z, Wells D. The human oocyte and cumulus cells relationship: new insights from the cumulus cell transcriptome. MHR Basic Sci Reprod Med. 2010;16:715–25; DOI:10.1093/molehr/gaq031.HuangZWellsDThe human oocyte and cumulus cells relationship: new insights from the cumulus cell transcriptomeMHR Basic Sci Reprod Med2010167152510.1093/molehr/gaq031Open DOISearch in Google Scholar

Sun L, Li D, Song K, Wei J, Yao S, Li Z, Su X, Ju X, Chao L, Deng X, Kong B, Li L. Exosomes derived from human umbilical cord mesenchymal stem cells protect against cisplatin-induced ovarian granulosa cell stress and apoptosis in vitro. Sci Rep. 2017;7; DOI:10.1038/s41598-017-02786-x.SunLLiDSongKWeiJYaoSLiZSuXJuXChaoLDengXKongBLiLExosomes derived from human umbilical cord mesenchymal stem cells protect against cisplatin-induced ovarian granulosa cell stress and apoptosis in vitroSci Rep2017710.1038/s41598-017-02786-xOpen DOISearch in Google Scholar

Matsuno Y, Kanke T, Maruyama N, Fujii W, Naito K, Sugiura K. Characterization of mRNA profiles of the exosome-like vesicles in porcine follicular fluid. PLoS One. 2019;14; DOI:10.1371/journal.pone.0217760.MatsunoYKankeTMaruyamaNFujiiWNaitoKSugiuraKCharacterization of mRNA profiles of the exosome-like vesicles in porcine follicular fluidPLoS One20191410.1371/journal.pone.0217760Open DOISearch in Google Scholar

Guo L, Zhang Y, Zhang L, Huang F, Li J, Wang S. MicroRNAs, TGF-β signaling, and the inflammatory microenvironment in cancer. Tumor Biol. 2016;37:115–25; DOI:10.1007/s13277-015-4374-2.GuoLZhangYZhangLHuangFLiJWangSMicroRNAs, TGF-β signaling, and the inflammatory microenvironment in cancerTumor Biol2016371152510.1007/s13277-015-4374-2Open DOISearch in Google Scholar

Xu B, Zhang YW, Tong XH, Liu YS. Characterization of microRNA profile in human cumulus granulosa cells: Identification of microRNAs that regulate Notch signaling and are associated with PCOS. Mol Cell Endocrinol. 2015;404:26–36; DOI:10.1016/j.mce.2015.01.030.XuBZhangYWTongXHLiuYSCharacterization of microRNA profile in human cumulus granulosa cells: Identification of microRNAs that regulate Notch signaling and are associated with PCOSMol Cell Endocrinol2015404263610.1016/j.mce.2015.01.030Open DOISearch in Google Scholar

Tu J, Cheung AHH, Chan CLK, Chan WY. The role of microRNAs in ovarian granulosa cells in health and disease. Front Endocrinol (Lausanne). 2019;10; DOI:10.3389/fendo.2019.00174.TuJCheungAHHChanCLKChanWYThe role of microRNAs in ovarian granulosa cells in health and diseaseFront Endocrinol (Lausanne)20191010.3389/fendo.2019.00174Open DOISearch in Google Scholar

Ban JJ, Lee M, Im W, Kim M. Low pH increases the yield of exosome isolation. Biochem Biophys Res Commun. 2015;461:76–9; DOI:10.1016/j. bbrc.2015.03.172.BanJJLeeMImWKimMLow pH increases the yield of exosome isolationBiochem Biophys Res Commun201546176910.1016/j.bbrc.2015.03.172Open DOISearch in Google Scholar

Vashisht M, Rani P, Sunita, Onteru SK, Singh D. Curcumin primed exosomes reverses LPS-induced pro-inflammatory gene expression in buffalo granulosa cells. J Cell Biochem. 2018;119:1488–500; DOI:10.1002/jcb.26309.VashishtMRaniPSunita, OnteruSKSinghDCurcumin primed exosomes reverses LPS-induced pro-inflammatory gene expression in buffalo granulosa cellsJ Cell Biochem2018119148850010.1002/jcb.26309Open DOISearch in Google Scholar

Vashisht M, Rani P, Onteru SK, Singh D. Curcumin Encapsulated in Milk Exosomes Resists Human Digestion and Possesses Enhanced Intestinal Permeability in Vitro. Appl Biochem Biotechnol. 2017;183:993–1007; DOI:10.1007/s12010-017-2478-4.VashishtMRaniPOnteruSKSinghDCurcumin Encapsulated in Milk Exosomes Resists Human Digestion and Possesses Enhanced Intestinal Permeability in VitroAppl Biochem Biotechnol2017183993100710.1007/s12010-017-2478-4Open DOISearch in Google Scholar

Horan CJ, Williams SA. Oocyte stem cells: fact or fantasy? Reproduction. 2017;154:R23–35; DOI:10.1530/REP-17-0008.HoranCJWilliamsSAOocyte stem cells: fact or fantasy?Reproduction2017154R233510.1530/REP-17-0008Open DOISearch in Google Scholar

Wang N, Satirapod C, Ohguchi Y, Park ES, Woods DC, Tilly JL. Genetic studies in mice directly link oocytes produced during adulthood to ovarian function and natural fertility. Sci Rep. 2017;7; DOI:10.1038/s41598-017-10033-6.WangNSatirapodCOhguchiYParkESWoodsDCTillyJLGenetic studies in mice directly link oocytes produced during adulthood to ovarian function and natural fertilitySci Rep2017710.1038/s41598-017-10033-6Open DOISearch in Google Scholar

White YAR, Woods DC, Takai Y, Ishihara O, Seki H, Tilly JL. Oocyte formation by mitotically active germ cells purified from ovaries of reproductive-age women. Nat Med. 2012;18:413–21; DOI:10.1038/nm.2669.WhiteYARWoodsDCTakaiYIshiharaOSekiHTillyJLOocyte formation by mitotically active germ cells purified from ovaries of reproductive-age womenNat Med2012184132110.1038/nm.2669Open DOISearch in Google Scholar

Lee Y-M, Kim T-H, Lee J-H, Lee W-J, Jeon R-H, Jang S-J, Ock S-A, Lee S-L, Park B-W, Rho G-J. Overexpression of Oct4 in porcine ovarian stem/stromal cells enhances differentiation of oocyte-like cells in vitro and ovarian follicular formation in vivo. J Ovarian Res. 2016;9:24; DOI:10.1186/s13048-016-0233-z.LeeY-MKimT-HLeeJ-HLeeW-JJeonR-HJangS-JOckS-ALeeS-LParkB-WRhoG-JOverexpression of Oct4 in porcine ovarian stem/stromal cells enhances differentiation of oocyte-like cells in vitro and ovarian follicular formation in vivoJ Ovarian Res201692410.1186/s13048-016-0233-zOpen DOISearch in Google Scholar

Bhartiya D. Pluripotent Stem Cells in Adult Tissues: Struggling To Be Acknowledged Over Two Decades. Stem Cell Rev Reports. 2017;13:713–24; DOI:10.1007/s12015-017-9756-y.BhartiyaDPluripotent Stem Cells in Adult Tissues: Struggling To Be Acknowledged Over Two DecadesStem Cell Rev Reports2017137132410.1007/s12015-017-9756-yOpen DOISearch in Google Scholar

Li H, Zhao W, Wang L, Luo Q, Yin N, Lu X, Hou Y, Cui J, Zhang H. Human placenta-derived mesenchymal stem cells inhibit apoptosis of granulosa cells induced by IRE1α pathway in autoimmune POF mice. Cell Biol Int. 2019;43:899–909; DOI:10.1002/cbin.11165.LiHZhaoWWangLLuoQYinNLuXHouYCuiJZhangHHuman placenta-derived mesenchymal stem cells inhibit apoptosis of granulosa cells induced by IRE1α pathway in autoimmune POF miceCell Biol Int20194389990910.1002/cbin.11165Open DOISearch in Google Scholar

Wang Z, Wang Y, Yang T, Li J, Yang X. Study of the reparative effects of menstrual-derived stem cells on premature ovarian failure in mice. Stem Cell Res Ther. 2017;8:11; DOI:10.1186/s13287-016-0458-1.WangZWangYYangTLiJYangXStudy of the reparative effects of menstrual-derived stem cells on premature ovarian failure in miceStem Cell Res Ther201781110.1186/s13287-016-0458-1Open DOISearch in Google Scholar

Woods DC, Tilly JL. Autologous Germline Mitochondrial Energy Transfer (AUGMENT) in Human Assisted Reproduction. Semin Reprod Med. 2015;33:410–21; DOI:10.1055/s-0035-1567826.WoodsDCTillyJLAutologous Germline Mitochondrial Energy Transfer (AUGMENT) in Human Assisted ReproductionSemin Reprod Med2015334102110.1055/s-0035-1567826Open DOISearch in Google Scholar

Sriraman K, Bhartiya D, Anand S, Bhutda S. Mouse Ovarian Very Small Embryonic-Like Stem Cells Resist Chemotherapy and Retain Ability to Initiate Oocyte-Specific Differentiation. Reprod Sci. 2015;22:884–903; DOI:10.1177/1933719115576727.SriramanKBhartiyaDAnandSBhutdaSMouse Ovarian Very Small Embryonic-Like Stem Cells Resist Chemotherapy and Retain Ability to Initiate Oocyte-Specific DifferentiationReprod Sci20152288490310.1177/1933719115576727Open DOISearch in Google Scholar

Zou K, Yuan Z, Yang Z, Luo H, Sun K, Zhou L, Xiang J, Shi L, Yu Q, Zhang Y, Hou R, Wu J. Production of offspring from a germline stem cell line derived from neonatal ovaries. Nat Cell Biol. 2009;11:631–6; DOI:10.1038/ncb1869.ZouKYuanZYangZLuoHSunKZhouLXiangJShiLYuQZhangYHouRWuJProduction of offspring from a germline stem cell line derived from neonatal ovariesNat Cell Biol200911631610.1038/ncb1869Open DOISearch in Google Scholar

Bhartiya D, Anand S, Parte S. VSELs may obviate cryobanking of gonadal tissue in cancer patients for fertility preservation. J Ovarian Res. 2015;8; DOI:10.1186/s13048-015-0199-2.BhartiyaDAnandSParteSVSELs may obviate cryobanking of gonadal tissue in cancer patients for fertility preservationJ Ovarian Res2015810.1186/s13048-015-0199-2Open DOISearch in Google Scholar

Joo BS, Jung IK, Park MJ, Joo JK, Kim KH, Lee KS. Differential expression of pluripotent and germ cell markers in ovarian surface epithelium according to age in female mice. Reprod Biol Endocrinol. 2014;12; DOI:10.1186/1477-7827-12-113.JooBSJungIKParkMJJooJKKimKHLeeKSDifferential expression of pluripotent and germ cell markers in ovarian surface epithelium according to age in female miceReprod Biol Endocrinol20141210.1186/1477-7827-12-113Open DOISearch in Google Scholar

Bukovsky A. Novel methods of treating ovarian infertility in older and POF women, testicular infertility, and other human functional diseases. Reprod Biol Endocrinol. 2015;13; DOI:10.1186/s12958-015-0001-8.BukovskyANovel methods of treating ovarian infertility in older and POF women, testicular infertility, and other human functional diseasesReprod Biol Endocrinol20151310.1186/s12958-015-0001-8Open DOISearch in Google Scholar

Shibahara H, Ishiguro A, Shirasuna K, Kuwayama T, Iwata H. Follicular factors determining the developmental competence of porcine oocyte. Reprod Med Biol. 2019;18:256–62; DOI:10.1002/rmb2.12269.ShibaharaHIshiguroAShirasunaKKuwayamaTIwataHFollicular factors determining the developmental competence of porcine oocyteReprod Med Biol2019182566210.1002/rmb2.12269Open DOISearch in Google Scholar

Abdollahifar MA, Azad N, Sajadi E, Mofarahe ZS, Zare F, Moradi A, Rezaee F, Gholamin M, Abdi S. Vitamin C restores ovarian follicular reservation in a mouse model of aging. Anat Cell Biol. 2019;52:196–203; DOI:10.5115/acb.2019.52.2.196.AbdollahifarMAAzadNSajadiEMofaraheZSZareFMoradiARezaeeFGholaminMAbdiSVitamin C restores ovarian follicular reservation in a mouse model of agingAnat Cell Biol20195219620310.5115/acb.2019.52.2.196Open DOISearch in Google Scholar

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Life Sciences, Molecular Biology, Biochemistry