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Mouse Sperm Cryopreservation and Recovery using the I·Cryo Kit
Published on: December 12, 2011
Cryopreservation at -80 °C impacts sperm integrity and fertility in a mouse strain-dependent manner
Manon Peltier1, Marcello Raspa2, Sabrina Putti2
1Comparative Medicine, Center for Molecular Medicine Cologne, Faculty of Medicine and University Hospital Cologne, Cologne, Germany.
Abstract:
We previously developed a simple method to cryopreserve and maintain B6N spermatozoa at -80 °C, instead of using liquid nitrogen (LN2), for up to one year without detrimental effects on fertility. The goal of the present study was to test the efficacy of this method in six different mouse strains (129/SvImJCnrm; 129, C57BL/6JCnrm; B6J, C57BL/6NTacCnrm; B6N, BALB/cByJCnrm; BALB/c, Crl:CD1(ICR); CD-1, and FVBN/JCnrm; FVB). At different time points up to one year, we evaluated the integrity and the fertility of the spermatozoa cryopreserved and stored at -80 °C in comparison to the classical LN2 method. After 1 year, no differences in the in vitro fertilisation (IVF) rate and in the number of dead spermatozoa were observed in 129, B6N, CD-1 and FVB strains. In contrast, spermatozoa from B6J and BALB/c cryopreserved at -80 °C showed a significant reduction in the IVF rate, an increased number of dead spermatozoa and increased morphological abnormalities after 3 months (BALB/c) and 6 months (B6J). In all strains, the total sperm motility decreased after 1 month at -80 °C and increased ultrastructural damage was found in the -80 °C group. The present results indicate that spermatozoa from 129, B6N, CD-1 and FVB can be cryopreserved and stored at -80 °C for at least one year without impacting their fertility. However, spermatozoa from B6J and BALB/c are the most sensitive to temperature. Therefore, cryopreservation and storage of 129, B6N, CD-1 and FVB strains at -80 °C for up to one year is feasible, thereby circumventing the use of LN2.

