A novel, simplified method to prepare and preserve freeze-dried mouse sperm in plastic microtubes.

IF 1.9 4区 生物学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE Journal of Reproduction and Development Pub Date : 2023-08-11 DOI:10.1262/jrd.2023-034
Li Ly Yang, Daiyu Ito, Natsuki Ushigome, Sayaka Wakayama, Masatoshi Ooga, Teruhiko Wakayama
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Abstract

Although freeze-drying sperm can save space, reduce maintenance costs, and facilitate the transportation of genetic samples, the current method requires breakable, custom-made, and expensive glass ampoules. In the present study, we developed a simple and economical method for collecting freeze-dried (FD) sperm using commercially available plastic microtubes. Mouse epididymal sperm suspensions were placed in 1.5 ml polypropylene tubes, frozen in liquid nitrogen, and dried in an acrylic freeze-drying chamber, after which they were closed under a vacuum. The drying duration did not differ between the microtube and glass ampoule methods (control); however, the sperm recovery rate was higher using the microtube method, and the physical damage to the sperm after rehydration was also reduced. Intracytoplasmic sperm injection (ICSI) using FD sperm stored in microtubes at -30°C yielded healthy offspring without reducing the success rate, even after 9 months of storage. Air infiltration into all microtubes stored at room temperature (RT) within 2 weeks of storage caused a drastic decrease in the fertilization rate of FD sperm; underwater storage did not prevent air infiltration. RT storage of FD sperm in microtubes for 1 week resulted in healthy offspring after ICSI (5-18%), but the addition of silica gel or CaCl2 did not improve the success rate. Our novel microtube method is currently the simplest and most effective method for treating FD sperm, contributing to the development of alternative low-cost approaches for preserving and transporting genetic resources.

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一种在塑料微管中制备和保存冻干小鼠精子的新颖、简化方法。
虽然冷冻干燥精子可以节省空间,降低维护成本,方便基因样本的运输,但目前的方法需要易碎的,定制的,昂贵的玻璃安瓿。在本研究中,我们开发了一种简单而经济的方法来收集冷冻干燥(FD)精子,使用市售的塑料微管。将小鼠附睾精子悬液置于1.5 ml聚丙烯管中,液氮冷冻,丙烯酸冷冻干燥室干燥,真空封闭。干燥时间在微管法和玻璃安瓿法(对照)之间没有差异;但微管法的精子恢复率更高,同时也减少了补液后对精子的物理损伤。卵胞浆内单精子注射(ICSI)将FD精子储存在-30°C的微管中,即使在储存9个月后,也能产生健康的后代,且成功率不降低。室温(RT)保存2周内空气渗入所有微管,导致FD精子受精率急剧下降;水下储存不能防止空气渗入。FD精子在微管中RT储存1周后ICSI后子代健康(5-18%),但添加硅胶或CaCl2并没有提高成功率。我们的新微管方法是目前治疗FD精子最简单、最有效的方法,有助于开发低成本的替代方法来保存和运输遗传资源。
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来源期刊
Journal of Reproduction and Development
Journal of Reproduction and Development 生物-奶制品与动物科学
CiteScore
3.70
自引率
11.10%
发文量
52
审稿时长
2 months
期刊介绍: Journal of Reproduction and Development (JRD) is the official journal of the Society for Reproduction and Development, published bimonthly, and welcomes original articles. JRD provides free full-text access of all the published articles on the web. The functions of the journal are managed by Editorial Board Members, such as the Editor-in-Chief, Co-Editor-inChief, Managing Editors and Editors. All manuscripts are peer-reviewed critically by two or more reviewers. Acceptance is based on scientific content and presentation of the materials. The Editors select reviewers and correspond with authors. Final decisions about acceptance or rejection of manuscripts are made by the Editor-in-Chief and Co-Editor-in-Chief.
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