首页> 外文期刊>Cryobiology: International Journal of Low Temperature Biology and Medicine >A new cryomacroscope device (Type III) for visualization of physical events in cryopreservation with applications to vitrification and synthetic ice modulators
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A new cryomacroscope device (Type III) for visualization of physical events in cryopreservation with applications to vitrification and synthetic ice modulators

机译:一种新型的低温显微镜设备(III型),用于可视化冷冻保存中的物理事件,并应用于玻璃化和合成冰调制器

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The objective of the current study is to develop a new cryomacroscope prototype for the study of vitrification in large-size specimens. The unique contribution in the current study is in developing a cryomacroscope setup as an add-on device to a commercial controlled-rate cooler and in demonstration of physical events in cryoprotective cocktails containing synthetic ice modulators (SIM)-compounds which hinder ice crystal growth. Cryopreservation by vitrification is a highly complex application, where the likelihood of crystallization, fracture formation, degradation of the biomaterial quality, and other physical events are dependent not only upon the instantaneous cryogenic conditions, but more significantly upon the evolution of conditions along the cryogenic protocol. Nevertheless, cryopreservation success is most frequently assessed by evaluating the cryopreserved product at its end states-either at the cryogenic storage temperature or room temperature. The cryomacroscope is the only available device for visualization of large-size specimens along the thermal protocol, in an effort to correlate the quality of the cryopreserved product with physical events. Compared with earlier cryomacroscope prototypes, the new Cryomacroscope-III evaluated here benefits from a higher resolution color camera, improved illumination, digital recording capabilities, and high repeatability in tested thermal conditions via a commercial controlled-rate cooler. A specialized software package was developed in the current study, having two modes of operation: (a) experimentation mode to control the operation of the camera, record camera frames sequentially, log thermal data from sensors, and save case-specific information; and (b) post-processing mode to generate a compact file integrating images, elapsed time, and thermal data for each experiment. The benefits of the Cryomacroscope-III are demonstrated using various tested mixtures of SIMs with the cryoprotective cocktail DP6, which were found effective in preventing ice growth, even at significantly subcritical cooling rates with reference to the pure DP6.
机译:当前研究的目的是开发一种新的冷冻显微镜的原型,用于研究大尺寸样品的玻璃化。在当前研究中的独特贡献在于开发了一种冷冻倍率镜装置,作为商用可控速率冷却器的附加设备,并演示了含有阻止冰晶生长的合成制冰剂(SIM)化合物的防冻混合物中的物理事件。通过玻璃化进行冷冻保存是一个非常复杂的应用,其中结晶,断裂形成,生物材料质量下降和其他物理事件的可能性不仅取决于瞬时低温条件,而且还取决于沿低温方案的条件演变。然而,最常通过在低温储存温度或室温下评估处于最终状态的冷冻保存产品来评估冷冻保存的成功。低温胃镜是唯一可用于沿热规程可视化大尺寸样本的设备,旨在使低温保存产品的质量与物理事件相关联。与较早的冷冻倍率镜原型相比,此处评估的新型低温倍率镜III受益于更高分辨率的彩色相机,改进的照明,数字记录功能以及通过商业控制速率冷却器在测试的热工况下具有很高的可重复性。当前研究中开发了一个专用软件包,该软件包具有两种操作模式:(a)实验模式,用于控制摄像机的操作,顺序记录摄像机帧,记录来自传感器的热数据并保存特定案例的信息; (b)后处理模式,以生成一个紧凑的文件,其中包含每个实验的图像,经过时间和热数据。使用各种经过测试的SIM与冷冻保护性混合物DP6的混合物证明了Ccromacroscope-III的优势,发现该混合物即使相对于纯DP6而言,在显着的亚临界冷却速率下也能有效防止冰块的生长。

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