Chinese Academy of Sciences Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Beijing, 100190, China; Department of Parasitology, Leiden University Center for Infectious Diseases (LU-CID), Leiden University Medical Center, Leiden, ZA, 2333, Netherlands; Department of Mechanical Engineering, University of California Berkeley, Berkeley, CA, 94720, USA.
Department of Bioengineering, University of California Berkeley, Berkeley, CA, 94720, USA.
Cryobiology. 2022 Jun;106:139-147. doi: 10.1016/j.cryobiol.2022.02.002. Epub 2022 Feb 18.
We introduce an isochoric (constant-volume) supercooling cryomicroscope (ISCM), enabling the ice-free study of biological systems and biochemical reactions at subzero temperatures at atmospheric pressure absent ice. This technology draws from thermodynamic findings on the behavior of water in isochoric systems at subfreezing temperatures. A description of the design of the ISCM and a demonstration of the stability of the supercooled solution in the ISCM is followed by an illustration of the possible use of the ISCM in the preservation of biological matter research. A comparison was made between the survival of HeLa cells in the University of Wisconsin (UW) solution in the ISCM at +4 °C under conventional atmospheric conditions and at -5 °C under isochoric supercooled conditions. Continuous real-time monitoring at cryopreservation temperature via fluorescence microscopy showed that after three days of isochoric supercooling storage, the percentage of compromised cells remained similar to fresh controls, while storage at +4 °C yielded approximately three times the mortality rate of cells preserved at -5 °C.
我们介绍了一种等容(等体积)过冷 cryomicroscope(ISCM),使在没有冰的情况下在亚零温度下在大气压下对生物系统和生化反应进行无冰研究成为可能。这项技术借鉴了关于过冷等容系统中水分子行为的热力学发现。接下来介绍了 ISCM 的设计,并展示了 ISCM 中超冷溶液的稳定性,然后说明了 ISCM 在生物物质研究保存中的可能用途。将在传统大气条件下在 ISCM 中的+4°C 下和在等容过冷条件下在-5°C 下 HeLa 细胞在威斯康星大学(UW)溶液中的存活进行了比较。通过荧光显微镜在 cryopreservation 温度下进行连续实时监测表明,在等容过冷储存三天后,受损细胞的百分比与新鲜对照相似,而在+4°C 下储存的细胞的死亡率约为在-5°C 下储存的细胞的三倍。