Literature DB >> 18174281

Complete spermatogenesis in orthotopic but not in ectopic transplants of autologously grafted marmoset testicular tissue.

C Marc Luetjens1, Jan-Bernd Stukenborg, Eberhard Nieschlag, Manuela Simoni, Joachim Wistuba.   

Abstract

Testicular grafting has the potential to become a method to preserve fertility in prepubertal boys undergoing cancer treatment. The possibility of successful germ cell maturation after autologous grafting should be proven preclinically in a nonhuman primate model. Therefore, in two experiments, we analyzed the potential of autologous testicular grafting in the marmoset model. A first experiment in immature and adult hemi-castrated monkeys addressed the question of whether full spermatogenesis in an ectopic graft could be achieved under a relatively normal endocrine milieu and whether the donor's age is of influence. A second experiment in castrated immature animals examined whether the transplantation site [ectopic (back skin) or orthotopic (scrotum)] influences spermatogenic progress and whether cryopreserved tissue can be successfully transplanted. Grafts were analyzed by histology, immunohistochemistry, and morphometry. Bioactive chorionic gonadotropin and serum testosterone were measured. In the adults, ectopic grafts degenerated, whereas in the immature animals, grafts survived at the spermatogonial level. In the castrates, none of the cryopreserved grafts survived, ectopic grafts were meiotically arrested, but orthotopic transplants completed spermatogenesis. Androgen and bioactive chorionic gonadotropin levels were not decisive for graft development. When ectopic and orthotopic transplantation sites were compared, the scrotum has a substantially lower temperature. Thus, the higher temperature at the ectopic transplantation site may contribute to spermatogenic arrest. Autologous grafting of nonhuman primate testicular tissues can result in complete spermatogenesis. Our findings indicate that transplantation site and developmental age of the tissue play a role more important than the endocrine milieu.

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Year:  2008        PMID: 18174281     DOI: 10.1210/en.2007-1325

Source DB:  PubMed          Journal:  Endocrinology        ISSN: 0013-7227            Impact factor:   4.736


  26 in total

Review 1.  Xenografting of testicular tissue pieces: 12 years of an in vivo spermatogenesis system.

Authors:  Lucía Arregui; Ina Dobrinski
Journal:  Reproduction       Date:  2014-08-22       Impact factor: 3.906

2.  Subcutaneous autologous testicle transplantation in Wistar rats.

Authors:  Antônio Miragem; Brasil Silva Neto; Mateus Reche; Lúcia M Kliemann; Edison Capp; Helena von Eye Corleta
Journal:  Int Urol Nephrol       Date:  2008-09-18       Impact factor: 2.370

Review 3.  Fertility preservation through gonadal cryopreservation.

Authors:  Lalitha Devi; Sandeep Goel
Journal:  Reprod Med Biol       Date:  2016-03-11

Review 4.  Germline stem cells: toward the regeneration of spermatogenesis.

Authors:  Hanna Valli; Bart T Phillips; Gunapala Shetty; James A Byrne; Amander T Clark; Marvin L Meistrich; Kyle E Orwig
Journal:  Fertil Steril       Date:  2013-12-05       Impact factor: 7.329

Review 5.  Fertility preservation in boys facing gonadotoxic cancer therapy.

Authors:  Christian F S Jensen; Lihua Dong; Murat Gul; Mikkel Fode; Simone Hildorf; Jorgen Thorup; Eva Hoffmann; Dina Cortes; Jens Fedder; Claus Y Andersen; Jens Sønksen
Journal:  Nat Rev Urol       Date:  2021-10-19       Impact factor: 14.432

6.  Autologous ectopic grafting of cryopreserved testicular tissue preserves the fertility of prepubescent monkeys that receive sterilizing cytotoxic therapy.

Authors:  Kirsi Jahnukainen; Jens Ehmcke; Mirja Nurmio; Stefan Schlatt
Journal:  Cancer Res       Date:  2012-08-17       Impact factor: 12.701

7.  Xenografting as a tool to preserve endangered species: outcomes and challenges in model systems.

Authors:  Paula C Mota; João Ramalho-Santos; Stefan Schlatt
Journal:  Vet Med Int       Date:  2010-09-02

Review 8.  Experimental methods to preserve male fertility and treat male factor infertility.

Authors:  Kathrin Gassei; Kyle E Orwig
Journal:  Fertil Steril       Date:  2015-12-30       Impact factor: 7.329

9.  Optimizing cryopreservation of human spermatogonial stem cells: comparing the effectiveness of testicular tissue and single cell suspension cryopreservation.

Authors:  Pamela Yango; Eran Altman; James F Smith; Peter C Klatsky; Nam D Tran
Journal:  Fertil Steril       Date:  2014-09-18       Impact factor: 7.329

Review 10.  Strategies for cryopreservation of testicular cells and tissues in cancer and genetic diseases.

Authors:  Tanushree Patra; Devendra Pathak; Mukesh Kumar Gupta
Journal:  Cell Tissue Res       Date:  2021-04-01       Impact factor: 5.249

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