Human spermatogonial stem cells display limited proliferation in vitro under mouse spermatogonial stem cell culture conditions

被引:52
|
作者
Medrano, Jose V. [1 ,2 ]
Rombaut, Charlotte [3 ]
Simon, Carlos [2 ]
Pellicer, Antonio [1 ]
Goossens, Ellen [3 ]
机构
[1] Inst Invest Sanitaria La Fe, Reprod Med Unit, Valencia, Spain
[2] Univ Valencia, Dept Pediat Obstet & Gynecol, INCLIVA, Fdn Inst Valenciano Infertilidad, Valencia, Spain
[3] Vrije Univ Brussel, Res Lab Reprod Genet & Regenerat Med, Biol Testis, Brussels, Belgium
关键词
Human spermatogonial stem cells; in vitro propagation; male fertility preservation; TESTICULAR TISSUE CRYOPRESERVATION; HUMAN TESTIS; GERM-CELLS; FUNCTIONAL SPERM; A SPERMATOGONIA; NUCLEAR ANTIGEN; SOMATIC-CELLS; LEYDIG-CELLS; RAT TESTIS; TRANSPLANTATION;
D O I
10.1016/j.fertnstert.2016.07.1065
中图分类号
R71 [妇产科学];
学科分类号
100211 ;
摘要
Objective: To study the ability of human spermatogonial stem cells (hSSCs) to proliferate in vitro under mouse spermatogonial stem cell (mSSC) culture conditions. Design: Experimental basic science study. Setting: Reproductive biology laboratory. Patient(s): Cryopreserved testicular tissue with normal spermatogenesis obtained from three donors subjected to orchiectomy due to a prostate cancer treatment. Intervention(s): Testicular cells used to create in vitro cell cultures corresponding to the following groups: [1] unsorted human testicular cells, [2] differentially plated human testicular cells, and [3] cells enriched with major histocompatibility complex class 1 (HLA(-))/epithelial cell surface antigen (EPCAM(+)) in coculture with inactivated testicular feeders from the same patient. Main Outcome Measure(s): Analyses and characterization including immunocytochemistry and quantitative reverse-transcription polymerase chain reaction for somatic and germ cell markers, testosterone and inhibin B quantification, and TUNEL assay. Result(s): Putative hSSCs appeared in singlets, doublets, or small groups of up to four cells in vitro only when testicular cells were cultured in StemPro-34 medium supplemented with glial cell line-derived neurotrophic factor (GDNF), leukemia inhibitory factor (LIF), basic fibroblast growth factor (bFGF), and epidermal growth factor (EGF). Fluorescence-activated cell sorting with HLA(-)/EPCAM(+) resulted in an enrichment of 27% VASA(+)/UTF1(+) hSSCs, compared to 13% in unsorted controls. Coculture of sorted cells with inactivated testicular feeders gave rise to an average density of 112 hSSCs/cm(2) after 2 weeks in vitro compared with unsorted cells (61 hSSCs/cm2) and differentially plated cells (49 hSSCS/cm(2)). However, putative hSSCs rarely stained positive for the proliferation marker Ki67, and their presence was reduced to the point of almost disappearing after 4 weeks in vitro. Conclusion(s): We found that hSSCs show limited proliferation in vitro under mSSC culture conditions. Coculture of HLA(-)/EPCAM(+) sorted cells with testicular feeders improved the germ cell/somatic cell ratio. (C) 2016 American Society for Reproductive Medicine, Published by Elsevier Inc.
引用
收藏
页码:1539 / +
页数:19
相关论文
共 50 条
  • [41] New advances on the expansion and storage of human spermatogonial stem cells
    Hwang, Kathleen
    Lamb, Dolores J.
    CURRENT OPINION IN UROLOGY, 2010, 20 (06) : 510 - 514
  • [42] Generation of functional hepatocytes from human spermatogonial stem cells
    Chen, Zheng
    Sun, Min
    Yuan, Qingqing
    Niu, Minghui
    Yao, Chencheng
    Hou, Jingmei
    Wang, Hong
    Wen, Liping
    Liu, Yun
    Li, Zheng
    He, Zuping
    ONCOTARGET, 2016, 7 (08) : 8879 - 8895
  • [43] Testicular Niche Required for Human Spermatogonial Stem Cell Expansion
    Smith, James F.
    Yango, Pamela
    Altman, Eran
    Choudhry, Shweta
    Poelzl, Andrea
    Zamah, Alberuni M.
    Rosen, Mitchell
    Klatsky, Peter C.
    Tran, Nam D.
    STEM CELLS TRANSLATIONAL MEDICINE, 2014, 3 (09) : 1043 - 1054
  • [44] Effective Preparation of Mouse Recipients for Xenogeneic Transplantation of Spermatogonial Stem Cells
    Kim, Ki-Jung
    Lim, Han
    Wang, Jong-Hyun
    Kim, Byung-Gak
    Lee, Yong-An
    Kim, Bang-Jin
    Kim, Yong-Hee
    Hong, Yeong Ho
    Kim, Geun-Bae
    Ryu, Buom-Yong
    TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 2013, 10 : 28 - 34
  • [45] Identification and Manipulation of Spermatogonial Stem Cells with the Aim of Inducing Spermatogenesis in Vitro
    Heidari, Banafsheh
    Shirazi, Abolfazl
    Akbari, Nazanin
    Barzegar-Amini, Maral
    REPRODUCTIVE SCIENCES, 2025, 32 (02) : 278 - 288
  • [46] Enrichment of Mouse Spermatogonial Stem Cells by Melanoma Cell Adhesion Molecule Expression
    Kanatsu-Shinohara, Mito
    Morimoto, Hiroko
    Shinohara, Takashi
    BIOLOGY OF REPRODUCTION, 2012, 87 (06)
  • [47] A Novel Feeder-Free Culture System for Expansion of Mouse Spermatogonial Stem Cells
    Choi, Na Young
    Park, Yo Seph
    Ryu, Jae-Sung
    Lee, Hye Jeong
    Arauzo-Bravo, Marcos J.
    Ko, Kisung
    Han, Dong Wook
    Schoeler, Hans R.
    Ko, Kinarm
    MOLECULES AND CELLS, 2014, 37 (06) : 473 - 479
  • [48] A Fundamental Research in In Vitro Spermatogonial Stem Cell Culturing: What Are Clump Cells?
    Sojoudi, Kiana
    Azizi, Hossein
    Skutella, Thomas
    CELLULAR REPROGRAMMING, 2023, 25 (02) : 65 - 72
  • [49] Effects of Vitamin A on In Vitro Maturation of Pre-Pubertal Mouse Spermatogonial Stem Cells
    Travers, Albanne
    Arkoun, Brahim
    Safsaf, Athmane
    Milazzo, Jean-Pierre
    Absyte, Anne
    Bironneau, Amandine
    Perdrix, Anne
    Sibert, Louis
    Mace, Bertrand
    Cauliez, Bruno
    Rives, Nathalie
    PLOS ONE, 2013, 8 (12):
  • [50] Differentiation of zebrafish spermatogonial stem cells to functional sperm in culture
    Kawasaki, Toshihiro
    Siegfried, Kellee R.
    Sakai, Noriyoshi
    DEVELOPMENT, 2016, 143 (04): : 566 - 574