Risco Ramon, Elmoazzen Heidi, Doughty Marshal, He Xiaoming, Toner Mehmet
The Center for Engineering in Medicine, Massachusetts General Hospital, Harvard Medical School, 51 Blossom Street, Boston, MA 02114, USA.
Cryobiology. 2007 Dec;55(3):222-9. doi: 10.1016/j.cryobiol.2007.08.006. Epub 2007 Aug 26.
In this paper we report the thermal behavior of a new approach for vitrification. Thermal performance of traditional open pulled straws is compared with a new technique based on the combined use of quartz capillaries with slush nitrogen. This new method of vitrification achieved ultrafast cooling rates of 250,000 degrees C/min. As a result, a much lower concentration of cryoprotectant was needed to reach vitrification. In fact, a cryoprotectant solution typically used in oocyte slow freezing protocols was shown to remain transparent after cooling to liquid nitrogen temperatures indicating apparent "vitrification". This approach offers a new and very promising technique for vitrification of cells using low levels of cryoprotectants.
在本文中,我们报告了一种用于玻璃化的新方法的热行为。将传统开放式拉制麦管的热性能与一种基于石英毛细管与液氮联合使用的新技术进行了比较。这种新的玻璃化方法实现了250,000℃/分钟的超快冷却速率。因此,达到玻璃化所需的冷冻保护剂浓度要低得多。事实上,在卵母细胞慢速冷冻方案中通常使用的一种冷冻保护剂溶液在冷却至液氮温度后仍保持透明,表明出现了明显的“玻璃化”。这种方法为使用低水平冷冻保护剂对细胞进行玻璃化提供了一种新的且非常有前景的技术。