Eisenberg David P, Taylor Michael J, Jimenez-Rios Jorge L, Rabin Yoed
Biothermal Technology Laboratory, Department of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213, United States.
Biothermal Technology Laboratory, Department of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213, United States; Cell and Tissue Systems, Inc., 2231 Technical Parkway, N. Charleston, SC 29406, United States.
Cryobiology. 2014 Jun;68(3):318-26. doi: 10.1016/j.cryobiol.2014.04.010. Epub 2014 Apr 21.
This study provides thermal expansion data for blood vessels permeated with the cryoprotective cocktail DP6, when combined with selected synthetic ice modulators (SIMs): 12% polyethylene glycol 400, 6% 1,3-cyclohexanediol, and 6% 2,3-butanediol. The general classification of SIMs includes molecules that modulate ice nucleation and growth, or possess properties of stabilizing the amorphous state, by virtue of their chemical structure and at concentrations that are not explained on a purely colligative basis. The current study is part of an ongoing effort to characterize thermo-mechanical effects on structural integrity of cryopreserved materials, where thermal expansion is the driving mechanism to thermo-mechanical stress. This study focuses on the lower part of the cryogenic temperature range, where the cryoprotective agent (CPA) behaves as a solid for all practical applications. By combining results obtained in the current study with literature data on the thermal expansion in the upper part of the cryogenic temperature range, unified thermal expansion curves are presented.
本研究提供了用冷冻保护剂混合物DP6渗透的血管在与选定的合成冰调节剂(SIMs):12%聚乙二醇400、6% 1,3 -环己二醇和6% 2,3 -丁二醇组合时的热膨胀数据。SIMs的一般分类包括通过其化学结构以及在不能单纯用依数性解释的浓度下调节冰核形成和生长或具有稳定非晶态性质的分子。当前的研究是正在进行的一项工作的一部分,该工作旨在表征对冷冻保存材料结构完整性的热机械效应,其中热膨胀是热机械应力的驱动机制。本研究聚焦于低温温度范围的较低部分,在所有实际应用中冷冻保护剂(CPA)在该温度范围表现为固体。通过将本研究获得的结果与低温温度范围上部热膨胀的文献数据相结合,给出了统一的热膨胀曲线。