Nishizono Hirofumi, Shioda Masaki, Takeo Toru, Irie Tetsumi, Nakagata Naomi
Kyudo Company Limited, Kumamoto 861-0104, Japan.
Biol Reprod. 2004 Sep;71(3):973-8. doi: 10.1095/biolreprod.103.024422. Epub 2004 May 19.
In general, the fertilizing ability of cryopreserved mouse spermatozoa is less than that of fresh spermatozoa. This ability is especially low in C57BL/6, the main strain used for the production of transgenic mice. To solve this problem, the relationship between cell damage and fertilizing ability in cryopreserved mouse spermatozoa was examined in this study. Sperm motility analysis revealed no significant difference among the motilities of cryopreserved C57BL/6J, BALB/cA, and DBA/2N sperm (67.6%, 43.4%, and 60.0%, respectively) after thawing. However, the results of in vitro fertilization (IVF), scanning electron microscopy (SEM), and transmission electron microscopy (TEM) showed a strong correlation between the frequency of aberrant spermatozoa (FAS) and fertilization rates (FR; C57BL/6J: FAS, 83.7%; FR, 17.0%; BALB/cA: FAS, 67.2%; FR, 24.2%; and DBA/2N: FAS, 10.2%; FR, 93.6%), and damage to spermatozoa was localized particularly in the acrosome of the head and mitochondria.
一般来说,冷冻保存的小鼠精子的受精能力低于新鲜精子。在用于生产转基因小鼠的主要品系C57BL/6中,这种能力尤其低。为了解决这个问题,本研究检测了冷冻保存的小鼠精子中细胞损伤与受精能力之间的关系。精子活力分析显示,解冻后冷冻保存的C57BL/6J、BALB/cA和DBA/2N精子的活力之间没有显著差异(分别为67.6%、43.4%和60.0%)。然而,体外受精(IVF)、扫描电子显微镜(SEM)和透射电子显微镜(TEM)的结果表明,异常精子频率(FAS)与受精率(FR;C57BL/6J:FAS,83.7%;FR,17.0%;BALB/cA:FAS,67.2%;FR,24.2%;DBA/2N:FAS,10.2%;FR,93.6%)之间存在很强的相关性,精子损伤尤其集中在头部顶体和线粒体。