首页> 外文期刊>Journal of Microbiology, Biotechnology and Food Sciences >OPTIMIZATION OF FREEZING CONDITIONS FOR CRYOPRESERVATION OF RAT SPERMATOGONIAL STEM CELL
【24h】

OPTIMIZATION OF FREEZING CONDITIONS FOR CRYOPRESERVATION OF RAT SPERMATOGONIAL STEM CELL

机译:冻存大鼠精原干细胞冷冻条件的优化

获取原文
           

摘要

Different cell types demonstrate an individual response to the doses of DMSO in freezing media that cannot be calculated empirically. Such situation requires experimental adjustment of the dose of the main cryoprotectant for each cell type. The purpose of the work was to optimize the basic composition of the cryopreservation medium for the rat spermatogonial cell lines, to investigate the time period of the initial storage of the cells at –80° C, as well as the effect of the ratio of volume of the freezing medium to the number of cells on their subsequent survival after recovery. Our data demonstrate that the 8% DMSO is the most effective concentration of the cryoprotectant. Furthermore, we tested different time of initial storage of cryovials in a commonly used “Mr. Frosty” Freezing Container at –80oC. Our results suggest that 12 hours period (overnight) provides enough time for primary freezing step at –80oC. Optimization of the volume of freezing medium revealed, that 0.5 ml, compared with 1.0 ml of medium for rat spermatogonial stem cells allows more effective preservation and long-time cryostorage of low numbers of cells (3×104) with successful recovery of up to 50% of the frozen cell population. Additionally, we attempted to improve the freezing medium composition by supplementing its base formulation with sucrose and/or trehalose. The use of optimal concentration of DMSO (8%) in the medium in combination with a 200mM of trehalose resulted in an increase of spermatogonia viability after recovery by more than 12% compared to the original composition of SG (Spermatogonia Growth) medium containing 10% of DMSO.
机译:不同的细胞类型显示了无法凭经验计算的对冷冻培养基中DMSO剂量的个体反应。这种情况需要对每种细胞类型的主要防冻剂的剂量进行实验性调整。该工作的目的是优化大鼠精原细胞系的冷冻保存培养基的基本组成,研究细胞在–80°C初始保存的时间,以及体积比的影响。恢复后冷冻细胞对细胞数量的影响。我们的数据表明,8%DMSO是最有效的防冻剂浓度。此外,我们在常用的“ Mr. –80oC的“冰霜”冷冻容器。我们的结果表明,在12小时内(过夜)可为–80oC的初级冷冻步骤提供足够的时间。优化的冷冻培养基体积显示,与用于大鼠精原干细胞的1.0 ml培养基相比,0.5 ml培养基可以更有效地保存和长期冷冻保存少量细胞(3×104),成功回收了多达50个细胞冷冻细胞群体的百分比。另外,我们试图通过用蔗糖和/或海藻糖补充其基础制剂来改善冷冻培养基的组成。与含有10%的SG(精原细胞生长)培养基的原始成分相比,在培养基中使用DMSO的最佳浓度(8%)与200mM海藻糖相结合,可使恢复后精原细胞活力提高了12%以上。 DMSO。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号