玻璃化的低温显微镜,第一部分:VS55和DP6鸡尾酒的原型和实验观察。

Yoed Rabin, Michael J Taylor, John R Walsh, Simona Baicu, Paul S Steif
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引用次数: 45

摘要

一种新的成像设备,称为“低温显微镜”,在这个报告中提出。该装置旨在帮助探索与大规模玻璃化和结晶相关的热效应和机械效应,目前的设置范围为50 μm至2 cm。低温显微镜并不打算作为低温显微镜的替代品,而是作为低温生物学家的补充工具。低温显微镜和低温显微技术的结合被认为是多尺度低温生物学研究的基础。本报告介绍了低温保护剂DP6和VS55混合物中玻璃化、结晶和裂缝形成的初步结果。这些结果表明,在平行研究中,通过差示扫描量热仪(DSC)测量的临界冷却和再加热速率,在形成晶体的趋势方面存在一些不一致。这项研究还处于初期阶段,目前正在进行生物材料的比较研究。本报告的第二部分(附论文)介绍了低温保护剂中裂缝形成的结果,并讨论了促进这些裂缝的机械应力。与这些报告相结合,更多的玻璃化、结晶和裂缝形成的低温显微镜照片可在http://www.me.cmu.edu/faculty1/rabin/CryomacroscopyImages01.htm上获得。
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Cryomacroscopy of vitrification, Part I: A prototype and experimental observations on the cocktails VS55 and DP6.

A new imaging device, termed a "cryomacroscope", is presented in this report. This device is designed to assist in exploring thermal and mechanical effects associated with large-scale vitrification and crystallization, with the current setup aimed at the range of 50 μm to 2 cm. The cryomacroscope is not intended as a substitute for the cryomicroscope, but as a complementary tool for the cryobiologist. A combination of cryomacroscopy and cryomicroscopy is suggested as a basis for multi-scale cryobiology studies. This report presents initial results on vitrification, crystallization, and fracture formation in the cryoprotectant cocktails DP6 and VS55. These results show some inconsistency in the tendency to form crystals, based on critical cooling and rewarming rates measured by means of a differential scanning calorimetric device (DSC) in parallel studies. This research is in its early stages, and comparative studies on biological materials are currently underway. Part II of this report (the companion paper) presents results for fracture formation in the cryoprotectant and discusses the mechanical stresses which promote these fractures. In conjunction with these reports, additional photos of cryomacroscopy of vitrification, crystallization, and fracture formation are available at http://www.me.cmu.edu/faculty1/rabin/CryomacroscopyImages01.htm.

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