Reassembly of adult human testicular cells: can testis cord-like structures be createdin vitro?

被引:28
作者
Mincheva, M. [1 ]
Sandhowe-Klaverkamp, R. [1 ]
Wistuba, J. [1 ]
Redmann, K. [1 ]
Stukenborg, J. -B. [2 ,3 ]
Kliesc, S. [1 ]
Schlatt, S. [1 ]
机构
[1] Univ Hosp Munster, Ctr Reprod Med & Androl, Albert Schweitzer Campus 1,Bldg D11, D-48149 Munster, Germany
[2] Karolinska Inst, NORDFERTIL Res Lab Stockholm, Dept Womens & Childrens Hlth, Pediat Endocrinol Unit, Q2 08, SE-17176 Stockholm, Sweden
[3] Univ Hosp, Q2 08, SE-17176 Stockholm, Sweden
基金
欧盟第七框架计划;
关键词
human testis; morphogenesis; tubulogenesis; seminiferous cords; organoid; Sertoli cell; peritubular cell; compaction; aggregation; in vitro spermatogenesis; SPERMATOGONIAL STEM-CELLS; IN-VITRO; SERTOLI-CELLS; SEMINIFEROUS TUBULES; GERM-CELLS; 3-DIMENSIONAL CULTURE; PERITUBULAR CELLS; MOUSE; SPERMATOGENESIS; DIFFERENTIATION;
D O I
10.1093/molehr/gax063
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Can enzymatically dispersed testicular cells from adult men reassemble into seminiferous cord-like structures in vitro? Adult human testicular somatic cells reassembled into testicular cord-like structures via dynamic interactions of Sertoli and peritubular cells. In vitro approaches using dispersed single cell suspensions of human testes to generate seminiferous tubule structures and to initiate their functionality have as yet shown only limited success. Testes from 15 adult gender dysphoria patients (mean +/- standard deviation age 35 +/- 9.3 years) showing spermatogonial arrest became available for this study after sex-reassignment surgery. In vitro primary testicular somatic cell cultures were generated to explore the self-organizing ability of testicular somatic cells to form testis cords over a 2-week period. Morphological phenotype, protein marker expression and temporal dynamics of cell reassembly were analyzed. Cell suspensions obtained by two-step enzymatic digestion were plated onto glass coverslips in 24-well plates. To obtain adherent somatic cells, the supernatant was discarded on Day 2. The culture of the attached cell population was continued. Reassembly into cord-like structures was analyzed daily by microscopic observations. Endpoints were qualitative changes in morphology. Cell types were characterized by phase-contrast microscopy and immunohistochemistry. Dynamics of cord formation were recorded by time-lapse microscopy. Primary adult human testicular cells underwent sequential morphological changes including compaction and reaggregation resulting in round or elongated cord-like structures. Time-lapse video recordings within the first 4 days of culture revealed highly dynamic processes of migration and coalescence of reaggregated cells. The cellular movements were mediated by peritubular cells. Immunohistochemical analysis showed that both SRY-related high mobility box 9-positive Sertoli and alpha-smooth muscle actin-positive peritubular myoid cells interacted and contributed to cord-like structure formation. Not applicable. Owing to scarcity of normal human testicular tissue, testes from gender dysphoria patients were used in the study. The regressed status might influence the experimental responses of primary cells. We observed basic morphological features resembling in vivo testicular cords, however, the proof of functionality (e.g. support of germ cells) will need further studies. The proposed in vitro culture system may open opportunities for examination of testicular cell interactions during testicular tubulogenesis. Further refinement of our approach may enable initiation of ex vivo spermatogenesis. The work was supported by EU-FP7-PEOPLE-2013-ITN 603568: 'Growsperm'. No conflict of interests is declared.
引用
收藏
页码:55 / 63
页数:9
相关论文
共 43 条
[1]   Testicular organoid generation by a novel in vitro three-layer gradient system [J].
Alves-Lopes, Joao Pedro ;
Soder, Olle ;
Stukenborg, Jan-Bernd .
BIOMATERIALS, 2017, 130 :76-89
[2]   Primary Human Testicular Cells Self-Organize into Organoids with Testicular Properties [J].
Baert, Yoni ;
De Kock, Joery ;
Alves-Lopes, Joao P. ;
Soder, Olle ;
Stukenborg, Jan-Bernd ;
Goossens, Ellen .
STEM CELL REPORTS, 2017, 8 (01) :30-38
[3]   Stem cell-derived organoids and their application for medical research and patient treatment [J].
Bartfeld, Sina ;
Clevers, Hans .
JOURNAL OF MOLECULAR MEDICINE-JMM, 2017, 95 (07) :729-738
[4]  
BRINKWORTH MH, 1995, J REPROD FERTIL, V105, P25, DOI 10.1530/jrf.0.1050025
[5]   Three-Dimensional Visualization of Testis Cord Morphogenesis, a Novel Tubulogenic Mechanism in Development [J].
Combes, Alexander N. ;
Lesieur, Emmanuelle ;
Harley, Vincent R. ;
Sinclair, Andrew H. ;
Little, Melissa H. ;
Wilhelm, Dagmar ;
Koopman, Peter .
DEVELOPMENTAL DYNAMICS, 2009, 238 (05) :1033-1041
[6]   Immature rat seminiferous tubules reconstructed in vitro express markers of Sertoli cell maturation after xenografting into nude mouse hosts [J].
Gassei, K. ;
Ehmcke, J. ;
Wood, M. A. ;
Walker, W. H. ;
Schlatt, S. .
MOLECULAR HUMAN REPRODUCTION, 2010, 16 (02) :97-110
[7]   De novo morphogenesis of seminiferous tubules from dissociated immature rat testicular cells in xenografts [J].
Gassei, Kathrin ;
Schlatt, Stefan ;
Ehmcke, Jens .
JOURNAL OF ANDROLOGY, 2006, 27 (04) :611-618
[8]   Experimental methods to preserve male fertility and treat male factor infertility [J].
Gassei, Kathrin ;
Orwig, Kyle E. .
FERTILITY AND STERILITY, 2016, 105 (02) :256-266
[9]   The central role of Sertoli cells in spermatogenesis [J].
Griswold, MD .
SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY, 1998, 9 (04) :411-416
[10]   The roles and regulation of Sertoli cells in fate determinations of spermatogonial stem cells and spermatogenesis [J].
Hai, Yanan ;
Hou, Jingmei ;
Liu, Yun ;
Liu, Yang ;
Yang, Hao ;
Li, Zheng ;
He, Zuping .
SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY, 2014, 29 :66-75