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Updated: Nov 22, 2025

Germ Cell Transplantation and Testis Tissue Xenografting in Mice
Published on: February 6, 2012
Timing of spermatogonial stem cell transplantation affects the spermatogenic recovery outcome in mice
J V Medrano1, I Acimovic2, A Navarro-Gomezlechon3
1Unidad de Medicina Reproductiva, Instituto de Investigación Sanitaria La Fe (IIS La Fe), Av. Fernando Abril Martorell, 106. Torre A, Lab. 6.22, 46026, Valencia, Spain. jomepla@gmail.com.
Abstract:
Spermatogonial stem cell transplantation (SSCT) is a strategy that has demonstrated to be feasible to restore spermatogenesis in animal models when it is performed shortly after the gonadotoxic onset to destroy their endogenous germ cells. However, in the case of boys subjected to fertility preservation, future transplantations will be performed with a delay of many years. In order to study how timing of SSCT affects donor-derived spermatogenic recovery in mice, we compared the percentage of spermatogenic tubule cross-sections within testes of 59 C57BL/6NCrl mice distributed in 6 groups: group 1, untreated mice controls (n = 9); group 2, mice that received a single dose of busulfan 40 mg/kg (n = 10); group 3, mice that received two additional doses of busulfan 10 mg/kg every 5 weeks (n = 10); group 4 (SSCT-A), mice subjected to a standard SSCT performed 5 weeks after a single injection of busulfan 40 mg/kg (n = 10); group 5 (SSCT-B), mice subjected to a delayed SSCT performed 15 weeks after a single injection of busulfan 40 mg/kg (n = 10); and group 6 (SSCT-C), mice subjected to a delayed SSCT with two additional doses of busulfan 10 mg/kg every 5 weeks (n = 10). Spermatogenic recovery in standard SSCT-A and SSCT-C groups ranged between 22.29 and 22.65%, compared with a lower recovery rate of 11.54% showed in the SSCT-B group. However, donor contribution resulted higher in standard SSCT-A, representing a 69.71% of cross-sections, compared with the rest of conditions ranging from 34.69 to 35.42%. Overall, we concluded that a delay in the SSCT from the gonadotoxic onset decreases the efficiency of donor-derived spermatogenic recovery in mice.
Insights
Delayed spermatogonial stem cell transplantation (SSCT) significantly reduces the efficiency of donor-derived sperm recovery in mice. Performing SSCT sooner after gonadotoxic treatment is crucial for successful spermatogenesis restoration.
Area of Science:
- Reproductive Biology
- Stem Cell Science
- Andrology
Background:
- Spermatogonial stem cell transplantation (SSCT) can restore spermatogenesis after gonadotoxic damage.
- Fertility preservation in boys often involves long delays before potential transplantation.
- The impact of transplantation timing on SSCT efficacy remains unclear.
Purpose of the Study:
- To investigate how the timing of SSCT affects donor-derived spermatogenic recovery in a mouse model.
- To compare the efficiency of immediate versus delayed SSCT following gonadotoxic insult.
Main Methods:
- Studied 59 mice divided into control, busulfan-treated, and SSCT groups.
- Administered busulfan at varying doses and timings to induce germ cell depletion.
- Performed SSCT at different time points (5 weeks vs. 15 weeks post-busulfan).
- Quantified spermatogenic recovery by assessing tubule cross-sections and donor contribution.
Main Results:
- Spermatogenic recovery ranged from 11.54% to 22.65% across SSCT groups.
- Immediate SSCT (SSCT-A) showed higher donor contribution (69.71%) compared to delayed SSCT (34.69%–35.42%).
- Delayed SSCT (SSCT-B) resulted in the lowest recovery rate (11.54%).
Conclusions:
- A delay between gonadotoxic treatment and SSCT significantly decreases the efficiency of donor-derived spermatogenic recovery.
- Optimal timing for SSCT is critical for maximizing spermatogenesis restoration in mice.
- Findings highlight the importance of timely intervention for successful fertility restoration using SSCT.

