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Fertility Preservation in Childhood Cancer: Endocrine Activity in Prepubertal Human Testis Xenografts Exposed to a
Marsida Hutka1, Prashant Kadam2, Dorien Van Saen2
1Medical Research Council (MRC) Centre for Reproductive Health, The University of Edinburgh, The Queen's Medical Research Institute, 47 Little France Crescent, Edinburgh EH16 4TJ, UK.
Abstract:
Survivors of childhood cancer are at risk for long-term treatment-induced health sequelae, including gonadotoxicity and iatrogenic infertility. At present, for prepubertal boys there are no viable clinical options to preserve future reproductive potential. We investigated the effect of a pubertal induction regimen with gonadotrophins on prepubertal human testis xenograft development. Human testis tissue was obtained from patients with cancer and non-malignant haematological disorders (n = 6; aged 1-14 years) who underwent testis tissue cryopreservation for fertility preservation. Fresh and frozen-thawed testis fragments were transplanted subcutaneously or intratesticularly into immunocompromised mice. Graft-bearing mice received injections of vehicle or exogenous gonadotrophins, human chorionic gonadotrophin (hCG, 20 IU), and follicle-stimulating hormone (FSH, 12.5 IU) three times a week for 12 weeks. The gross morphology of vehicle and gonadotrophin-exposed grafts was similar for both transplantation sites. Exposure of prepubertal human testis tissue xenografts to exogenous gonadotrophins resulted in limited endocrine function of grafts, as demonstrated by the occasional expression of the steroidogenic cholesterol side-chain cleavage enzyme (CYP11A1). Plasma testosterone concentrations (0.13 vs. 0.25 ng/mL; p = 0.594) and seminal vesicle weights (10.02 vs. 13.93 mg; p = 0.431) in gonadotrophin-exposed recipient mice were comparable to vehicle-exposed controls. Regardless of the transplantation site and treatment, initiation and maintenance of androgen receptor (AR) expression were observed in Sertoli cells, indicating commitment towards a more differentiated status. However, neither exogenous gonadotrophins (in castrated host mice) nor endogenous testosterone (in intact host mice) were sufficient to repress the expression of markers associated with immature Sertoli cells, such as anti-Müllerian hormone (AMH) and Ki67, or to induce the redistribution of junctional proteins (connexin 43, CX43; claudin 11, CLDN11) to areas adjacent to the basement membrane. Spermatogonia did not progress developmentally but remained the most advanced germ cell type in testis xenografts. Overall, these findings demonstrate that exogenous gonadotrophins promote partial activation and maturation of the somatic environment in prepubertal testis xenografts. However, alternative hormone regimens or additional factors for pubertal induction are required to complete the functional maturation of the spermatogonial stem cell (SSC) niche.
Insights
This study explored using gonadotrophins to mature prepubertal human testis tissue in mice. Results showed partial somatic cell maturation but insufficient development for spermatogonial stem cell niche completion.
Area of Science:
- Reproductive Endocrinology
- Developmental Biology
- Oncology
- Fertility Preservation
Background:
- Childhood cancer survivors face long-term health risks, including infertility due to gonadotoxicity.
- Prepubertal boys lack viable options for preserving future reproductive potential.
- Testis tissue xenografts offer a model for studying human testicular development and potential fertility preservation strategies.
Purpose of the Study:
- To investigate the efficacy of a pubertal induction regimen using gonadotrophins (hCG and FSH) on prepubertal human testis xenograft development.
- To assess the impact of exogenous gonadotrophins on the endocrine function and cellular maturation of human testicular tissue in vivo.
- To determine if this regimen can support the development of the spermatogonial stem cell niche.
Main Methods:
- Human testis tissue from prepubertal boys (aged 1-14 years) was cryopreserved for fertility preservation.
- Fresh and frozen-thawed testis fragments were xenografted into immunocompromised mice.
- Grafts were treated with vehicle or exogenous gonadotrophins (hCG and FSH) for 12 weeks; graft development and recipient endocrine status were analyzed.
Main Results:
- Exogenous gonadotrophins induced limited endocrine function and partial maturation of somatic cells (Sertoli cells) in xenografts.
- Testosterone levels and seminal vesicle weights in recipient mice were comparable between gonadotrophin-treated and control groups.
- Immature Sertoli cell markers (AMH, Ki67) and immature junctional protein distribution persisted; spermatogonia did not advance developmentally.
Conclusions:
- Exogenous gonadotrophins partially activate and mature the somatic compartment of prepubertal human testis xenografts.
- The current hormone regimen is insufficient for the complete functional maturation of the spermatogonial stem cell niche.
- Alternative hormonal strategies or additional factors are necessary to achieve full pubertal induction and preserve reproductive potential in these grafts.
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