...
首页> 外文期刊>Microfluidics and nanofluidics >Facile and highly efficient loading and freezing of cryoprotectants for oocyte vitrification based on planar microfluidics
【24h】

Facile and highly efficient loading and freezing of cryoprotectants for oocyte vitrification based on planar microfluidics

机译:基于平面微流体的卵母料玻璃化的轻度和高效载荷和冷冻保护剂

获取原文
获取原文并翻译 | 示例

摘要

Vitrification is widely used in assisted reproduction technology via cell cryopreservation, which requires precise washing sequences and timings using several cryoprotectants (CPAs) to alleviate their osmotic shock. Compare with embryos, oocytes are more susceptible to osmotic stress and chemical toxicity and hence require more precise and complicated manual operations. In this paper, an automatic prototype system is established based on a novel planar microfluidic chip featuring superhydrophobic surfaces and poly-D-Lysine coating, which enables a single oocyte to be easily settled inside a ball-like droplet to facilitate the CPA exchange. Using the automatic equipment, the droplet concentration can be smoothly changed while maintaining a stable spherical shape. After the loading and removal of CPAs, the planar chip with an oocyte can be directly placed into liquid nitrogen for cryopreservation with similar oocyte survival rate as that obtained by manual operation. Compared with manual operation or other channel-based microfluidic technologies, this planar microfluidic method can avoid cell loss and the inconvenience of cell transfer and cryopreservation, which indicates its immense potential to serve as a facile and universal automatic solution for the vitrification of various precious cells.
机译:玻璃化通过细胞冷冻保存广泛用于辅助再现技术,这需要使用几种冷冻保护剂(CPA)的精确洗涤序列和定时来缓解其渗透冲击。与胚胎进行比较,卵母细胞更容易受到渗透压和化学毒性的影响,因此需要更精确和复杂的手动操作。本文基于新型平面微流体芯片建立了一种自动原型系统,具有超疏水表面和聚-D-赖氨酸涂层,这使得单个卵母细胞能够容易地沉淀在球状液滴内,以便于CPA交换。使用自动设备,可以平稳地改变液滴浓度,同时保持稳定的球形。在加载和去除CPA之后,可以将具有卵母细胞的平面芯片直接置于液氮中,以具有与通过手动操作所获得的类似卵母细胞存活率的冷冻保存。与手动操作或其他基于通道的微流体技术相比,这种平面的微流体方法可以避免细胞损失和细胞转移和冷冻保存的不便,这表明其巨大的潜力作为各种珍贵细胞玻璃化的容易和通用的自动解决方案。

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