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用对流干燥法保存小鼠精子并用 3-O-甲基-D-葡萄糖储存。

Preservation of mouse sperm by convective drying and storing in 3-O-methyl-D-glucose.

机构信息

Center for Engineering in Medicine and Surgical Services, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts, United States of America.

出版信息

PLoS One. 2012;7(1):e29924. doi: 10.1371/journal.pone.0029924. Epub 2012 Jan 17.

Abstract

With the fast advancement in the genetics and bio-medical fields, the vast number of valuable transgenic and rare genetic mouse models need to be preserved. Preservation of mouse sperm by convective drying and subsequent storing at above freezing temperatures could dramatically reduce the cost and facilitate shipping. Mouse sperm were convectively dried under nitrogen gas in the Na-EGTA solution containing 100 mmol/L 3-O-methyl-D-glucose and stored in LiCl sorption jars (Relative Humidity, RH, 12%) at 4°C and 22°C for up to one year. The functionality of these sperm samples after storage was tested by intracytoplasmic injection into mouse oocytes. The percentages of blastocysts produced from sperm stored at 4°C for 1, 2, 3, 6, and 12 months were 62.6%, 53.4%, 39.6%, 33.3%, and 30.4%, respectively, while those stored at 22°C for 1, 2, and 3 months were 28.8%, 26.6%, and 12.2%, respectively. Transfer of 38 two- to four-cell embryos from sperm stored at 4°C for 1 year produced two live pups while 59 two- to four-cell embryos from sperm stored at 22°C for 3 months also produced two live pups. Although all the pups looked healthy at 3 weeks of age, normality of offspring produced using convectively dried sperm needs further investigation. The percentages of blastocyst from sperm stored in the higher relative humidity conditions of NaBr and MgCl(2) jars and driest condition of P(2)O(5) jars at 4°C and 22°C were all lower. A simple method of mouse sperm preservation is demonstrated. Three-O-methyl-D-glucose, a metabolically inactive derivative of glucose, offers significant protection for dried mouse sperm at above freezing temperatures without the need for poration of cell membrane.

摘要

随着遗传学和生物医学领域的快速发展,大量有价值的转基因和罕见的遗传小鼠模型需要保存。通过对流干燥和随后在高于冰点的温度下储存来保存小鼠精子,可以显著降低成本并方便运输。将小鼠精子在含有 100mmol/L 3-O-甲基-D-葡萄糖的 Na-EGTA 溶液中用氮气对流干燥,并储存在 LiCl 吸附小瓶(相对湿度,RH,12%)中,在 4°C 和 22°C 下储存长达一年。通过将这些精子样本储存后的精子进行胞质内注射到小鼠卵母细胞中来测试其功能。在 4°C 下储存 1、2、3、6 和 12 个月的精子产生囊胚的百分比分别为 62.6%、53.4%、39.6%、33.3%和 30.4%,而在 22°C 下储存 1、2 和 3 个月的精子产生囊胚的百分比分别为 28.8%、26.6%和 12.2%。从在 4°C 下储存 1 年的精子中转移 38 个 2-4 细胞胚胎产生了 2 只活幼仔,而从在 22°C 下储存 3 个月的精子中转移 59 个 2-4 细胞胚胎也产生了 2 只活幼仔。尽管所有幼仔在 3 周龄时看起来都很健康,但使用对流干燥精子产生的后代的正常性需要进一步研究。在 4°C 和 22°C 下,NaBr 和 MgCl(2)小瓶中相对湿度较高条件下以及 P(2)O(5)小瓶中最干燥条件下储存的精子形成囊胚的百分比均较低。展示了一种简单的小鼠精子保存方法。3-O-甲基-D-葡萄糖是葡萄糖的一种代谢惰性衍生物,在高于冰点的温度下为干燥的小鼠精子提供了显著的保护,而无需细胞膜穿孔。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45fd/3260178/56a85cc3dcec/pone.0029924.g001.jpg

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