Related Experiment Video
Updated: Aug 20, 2025

Fertility Preservation Through Oocyte Vitrification: Clinical and Laboratory Perspectives
Published on: September 16, 2021
Testicular Tissue Vitrification: a Promising Strategy for Male Fertility Preservation
Aghbibi Nikmahzar1, Farnaz Khadivi2, Mehdi Abbasi1
1Department of Anatomy, School of Medicine, Tehran University of Medical Sciences, Tehran, Iran.
Abstract:
Destruction of spermatogonial stem cells in juvenile men survivors of pediatric cancers leads to infertility as a side effect of gonadotoxic therapies. Sperm freezing before cancer treatment is commonly used in the clinic for fertility preservation, but this method is not applicable for prepubertal boys due to the lack of mature sperm. In these cases, cryopreservation of testicular tissues is the only option for fertility preservation. Although controlled slow freezing (CSF) is the most common procedure for testicular tissue cryopreservation, vitrification can be used as an alternative method. Controlled vitrification has prevented cell damage and formation of ice crystals. Procedures were done easily and quickly with a brief exposure time to high concentration of cryoprotectants without expensive equipment. Different studies used vitrification of testicular tissues and they assessed the morphology of seminiferous tubules, apoptosis, and viability of spermatogonial cells. Transplantation of vitrified testicular tissue into infertile recipient mice as well as in vitro culture of vitrified tissues was done in previous studies and their findings showed complete spermatogenesis and production of mature sperm. Review articles usually have compared controlled slow freezing with vitrification. In this review, we focused only on the vitrification method and its results. Despite promising results, many studies have been done for finding an optimal cryopreservation protocol in order to successfully preserve fertility in prepubertal boys.
Insights
Vitrification offers a promising method for preserving fertility in prepubertal boys undergoing cancer treatment. This technique successfully cryopreserved testicular tissues, enabling future sperm production and restoring fertility.
Area of Science:
- Reproductive Biology
- Oncology
- Cryobiology
Background:
- Gonadotoxic cancer therapies can destroy spermatogonial stem cells, leading to infertility in juvenile males.
- Fertility preservation via sperm banking is not an option for prepubertal boys lacking mature sperm.
- Testicular tissue cryopreservation is the sole fertility preservation method for prepubertal boys.
Purpose of the Study:
- This review focuses exclusively on the vitrification method for testicular tissue cryopreservation.
- To evaluate the efficacy and outcomes of vitrification in preserving fertility for prepubertal boys.
Main Methods:
- Controlled vitrification of testicular tissues was explored as an alternative to controlled slow freezing.
- Assessment of seminiferous tubule morphology, apoptosis, and spermatogonial cell viability post-vitrification.
- In vivo transplantation of vitrified testicular tissue and in vitro culture were performed.
Main Results:
- Vitrification prevented ice crystal formation and cell damage, with brief cryoprotectant exposure.
- Studies demonstrated successful spermatogenesis and mature sperm production after transplantation and culture.
- Vitrification procedures were efficient, quick, and did not require expensive equipment.
Conclusions:
- Vitrification shows significant potential for successful fertility preservation in prepubertal boys.
- Further research is ongoing to optimize vitrification protocols for maximum efficacy.
- This method offers a viable alternative for fertility preservation in pediatric cancer survivors.
More Related Videos
05:53Author Spotlight: Advancing Fertility Preservation in Young Female Cancer Patients Through Ovarian Tissue Vitrification and In Vitro Follicular Growth
Published on: August 9, 2024
13:32Cryopreservation of Zebrafish Spermatogonia by Whole Testes Needle Immersed Ultra-Rapid Cooling
Published on: March 4, 2018
Related Concept Videos
Infertility in Males
Spermatogenesis