Huebinger Jan, Han Hong-Mei, Grabenbauer Markus
Department of Systemic Cell Biology, Max-Planck-Institute of Molecular Physiology, Otto-Hahn-Str. 11, D-44227 Dortmund, Germany.
PLoS One. 2016 Oct 6;11(10):e0164270. doi: 10.1371/journal.pone.0164270. eCollection 2016.
Rapid cooling of aqueous solutions is a useful approach for two important biological applications: (I) cryopreservation of cells and tissues for long-term storage, and (II) cryofixation for ultrastructural investigations by electron and cryo-electron microscopy. Usually, both approaches are very different in methodology. Here we show that a novel, fast and easy to use cryofixation technique called self-pressurized rapid freezing (SPRF) is-after some adaptations-also a useful and versatile technique for cryopreservation. Sealed metal tubes with high thermal diffusivity containing the samples are plunged into liquid cryogen. Internal pressure builds up reducing ice crystal formation and therefore supporting reversible cryopreservation through vitrification of cells. After rapid rewarming of pressurized samples, viability rates of > 90% can be reached, comparable to best-performing of the established rapid cooling devices tested. In addition, the small SPRF tubes allow for space-saving sample storage and the sealed containers prevent contamination from or into the cryogen during freezing, storage, or thawing.
(I)细胞和组织的冷冻保存以进行长期储存,以及(II)用于通过电子显微镜和冷冻电子显微镜进行超微结构研究的冷冻固定。通常,这两种方法在方法学上有很大不同。在这里,我们展示了一种新颖、快速且易于使用的冷冻固定技术,称为自加压快速冷冻(SPRF),经过一些改进后,它也是一种用于冷冻保存的有用且通用的技术。将装有样品的具有高热扩散率的密封金属管浸入液态制冷剂中。内部压力升高,减少冰晶形成,因此通过细胞玻璃化支持可逆冷冻保存。在对加压样品进行快速复温后,可以达到>90%的存活率,与测试的性能最佳的现有快速冷却装置相当。此外,小型SPRF管可节省样品储存空间,并且密封容器可防止在冷冻、储存或解冻过程中制冷剂的污染或进入。