Female Fertility Preservation through Stem Cell-based Ovarian Tissue Reconstitution In Vitro and Ovarian Regeneration In Vivo

被引:32
作者
Akahori, Taichi [1 ]
Woods, Dori C. [1 ]
Tilly, Jonathan L. [1 ]
机构
[1] Northeastern Univ, Dept Biol, Lab Aging & Infertil Res, Boston, MA 02115 USA
基金
美国国家卫生研究院;
关键词
ovary; oocyte; stem cell; oogenesis; folliculogenesis; fertility; chemotherapy; ACTIVE GERM-CELLS; BREAST-CANCER PATIENTS; ADULT-MOUSE OVARY; PREMENOPAUSAL WOMEN; HUMAN OOCYTES; YOUNG-WOMEN; BONE-MARROW; ADJUVANT CHEMOTHERAPY; PRIMORDIAL FOLLICLES; CHILDHOOD-CANCER;
D O I
10.1177/1179558119848007
中图分类号
R71 [妇产科学];
学科分类号
100211 ;
摘要
Historically, approaches designed to offer women diagnosed with cancer the prospects of having a genetically matched child after completion of their cytotoxic treatments focused on the existing oocyte population as the sole resource available for clinical management of infertility. In this regard, elective oocyte and embryo cryopreservation, as well as autologous ovarian cortical tissue grafting posttreatment, have gained widespread support as options for young girls and reproductive-age women who are faced with cancer to consider. In addition, the use of ovarian protective therapies, including gonadotropin-releasing hormone agonists and sphingosine-1-phosphate analogs, has been put forth as an alternative way to preserve fertility by shielding existing oocytes in the ovaries in vivo from the side-effect damage caused by radiotherapy and many chemotherapeutic regimens. This viewpoint changed with the publication of now numerous reports that adult ovaries of many mammalian species, including humans, contain a rare population of oocyte-producing germ cells-referred to as female germline or oogonial stem cells (OSCs). This new line of study has fueled research into the prospects of generating new oocytes, rather than working with existing oocytes, as a novel approach to sustain or restore fertility in female cancer survivors. Here, we overview the history of work from laboratories around the world focused on improving our understanding of the biology of OSCs and how these cells may be used to reconstitute "artificial" ovarian tissue in vitro or to regenerate damaged ovarian tissue in vivo as future fertility-preservation options.
引用
收藏
页数:10
相关论文
共 157 条
[91]   Bone morphogenetic protein 4 promotes mammalian oogonial stem cell differentiation via Smad1/5/8 signaling [J].
Park, Eun-Sil ;
Woods, Dori C. ;
Tilly, Jonathan L. .
FERTILITY AND STERILITY, 2013, 100 (05) :1468-+
[92]   Apoptosis-associated signaling pathways are required for chemotherapy-mediated female germ cell destruction [J].
Perez, GI ;
Knudson, CM ;
Leykin, L ;
Korsmeyer, SJ ;
Tilly, JL .
NATURE MEDICINE, 1997, 3 (11) :1228-1232
[93]   First pregnancy and live birth resulting from cryopreserved embryos obtained from in vitro matured oocytes after oophorectomy in an ovarian cancer patient [J].
Prasath, E. B. ;
Chan, M. L. H. ;
Wong, W. H. W. ;
Lim, C. J. W. ;
Tharmalingam, M. D. ;
Hendricks, M. ;
Loh, S. F. ;
Chia, Y. N. .
HUMAN REPRODUCTION, 2014, 29 (02) :276-278
[94]   Ultrastructural Characterization of Mouse Embryonic Stem Cell-Derived Oocytes and Granulosa Cells [J].
Psathaki, Olympia E. ;
Huebner, Karin ;
Sabour, Davood ;
Sebastiano, Vittorio ;
Wu, Guangming ;
Sugawa, Fumihiro ;
Wieacker, Peter ;
Pennekamp, Petra ;
Schoeler, Hans R. .
STEM CELLS AND DEVELOPMENT, 2011, 20 (12) :2205-2215
[95]   Gonadotropin-releasing hormone analogues added to adjuvant chemotherapy protect ovarian function and improve clinical outcomes in young women with early breast carcinoma [J].
Recchia, F ;
Saggio, G ;
Amiconi, G ;
Di Blasio, A ;
Cesta, A ;
Candeloro, G ;
Rea, S .
CANCER, 2006, 106 (03) :514-523
[96]  
Reichman B S, 1994, J Natl Cancer Inst Monogr, P125
[97]   Prevention of chemotherapy-induced ovarian damage [J].
Roness, Hadassa ;
Kashi, Oren ;
Meirow, Dror .
FERTILITY AND STERILITY, 2016, 105 (01) :20-29
[98]   The promoter of the oocyte-specific gene, Gdf9, is active in population of cultured mouse embryonic stem cells with an oocyte-like phenotype [J].
Salvador, Lisa M. ;
Silva, Celso P. ;
Kostetskii, Igor ;
Radice, Glenn L. ;
Strauss, Jerome F., III .
METHODS, 2008, 45 (02) :172-181
[99]  
Selesniemi K, 2009, AGING-US, V1, P49
[100]  
Selesniemi KL, 2011, APOPTOSIS PHYSL PATH, P273