首页> 外文期刊>Cryobiology: International Journal of Low Temperature Biology and Medicine >Cryopreservation of mouse spermatozoa. II. Relationship between survival after cryopreservation and osmotic tolerance of spermatozoa from three strains of mice
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Cryopreservation of mouse spermatozoa. II. Relationship between survival after cryopreservation and osmotic tolerance of spermatozoa from three strains of mice

机译:小鼠精子的冷冻保存。二。三种小鼠精子冷冻保存后存活与渗透耐受的关系

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A procedure to cryopreserve mouse spermatozoa has been derived to bank the genetics of valuable strains of mice in a practical way. The primary objective of this study was to apply the cryopreservation method developed for spermatozoa of strain B6D2F1 to those of strains 129/J and C57BL6/J. Using the capability of spermatozoa to fertilize oocytes in vitro as the criterion of survival, we found differences in survival after cryopreservation among the three strains. Blastocysts were obtained after in vitro fertilization of oocytes with frozen spermatozoa from B6D2F1 (51%) and 129/J (12%); none was obtained from C57BL6/J. Transfer of embryos into recipients resulted in the birth of 69 live pups from 164 embryos produced with frozen B6D2F1 spermatozoa and 11 pups from 35 embryos produced with 129/J spermatozoa. To seek an explanation of these differences among the three strains, spermatozoa were exposed to anisotonic solutions ranging from 5 to 3200 mOsm; viability of spermatozoa was assessed by a double stain using flow cytometry. Mouse spermatozoa tolerated exposure to solutions of osmolalities between 200 and 400 mOsm, but were damaged when exposed to solutions exceeding this range. Spermatozoa from C57BL6/J were the most sensitive: 20, 35, and 40% of C57BL6/J, 129/J, and B6D2F1 spermatozoa survived exposure to an 800 mOsm solution, respectively. This study suggests that there is a genetic basis for sensitivity of mouse spermatozoa to osmotic shock and freezing injury. Nevertheless, the birth of live pups produced with frozen spermatozoa from 129/J as well as with spermatozoa from B6D2F1 mice indicates that cryopreservation of spermatozoa can be used to preserve the genetics of valuable strains of mice.
机译:已经提出了冷冻保存小鼠精子的方法,以实用的方式保存了有价值的小鼠品系的遗传学。这项研究的主要目的是将为B6D2F1菌株精子开发的冷冻保存方法应用于129 / J和C57BL6 / J菌株的精子保存方法。使用精子体外受精卵的能力作为存活标准,我们发现了三种菌株冷冻保存后的存活差异。用冷冻的精子从B6D2F1(51%)和129 / J(12%)体外受精卵中获得卵囊。没有从C57BL6 / J获得。胚胎向受体的转移导致由冷冻的B6D2F1精子产生的164个胚胎中的69只活幼仔和由129 / J精子产生的35个胚胎中的11只幼崽出生。为了解释这三种菌株之间的这些差异,将精子暴露于5至3200 mOsm的各向异性溶液中。使用流式细胞仪通过双重染色评估精子的生存力。小鼠精子可以耐受渗透压在200至400 mOsm之间的溶液,但当暴露于超过此范围的溶液时会受到损害。来自C57BL6 / J的精子最敏感:分别暴露于800 mOsm溶液中的C57BL6 / J,129 / J和B6D2F1精子中的20%,35%和40%。这项研究表明,小鼠精子对渗透性休克和冰冻损伤的敏感性具有遗传基础。然而,用129 / J冷冻的精子以及B6D2F1小鼠的精子生产的活幼仔的出生表明,精子的冷冻保存可用于保存小鼠有价值的菌株的遗传学。

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