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用于评估低浓度冷冻保护剂中结晶的超快速激光量热法

Ultra-Rapid Laser Calorimetry for the Assessment of Crystallization in Low-Concentration Cryoprotectants.

作者信息

Kangas Joseph, Zhan Li, Liu Yilin, Natesan Harishankar, Khosla Kanav, Bischof John

机构信息

Department of Mechanical Engineering, University of Minnesota-Twin Cities, Minneapolis, MN 55408.

Department of Mechanical Engineering, University of Minnesota-Twin Cities, Minneapolis, MN 55408; Department of Biomedical Engineering, University of Minnesota-Twin Cities, Minneapolis, MN 55408.

出版信息

J Heat Transfer. 2022 Mar 1;144(3):031207. doi: 10.1115/1.4052568. Epub 2022 Feb 7.

Abstract

Cryoprotective agents (CPAs) are routinely used to vitrify, attain an amorphous glass state void of crystallization, and thereby cryopreserve biomaterials. Two vital characteristics of a CPA-loaded system are the critical cooling and warming rates (CCR and CWR), the temperature rates needed to achieve and return from a vitrified state, respectively. Due to the toxicity associated with CPAs, it is often desirable to use the lowest concentrations possible, driving up CWR and making it increasingly difficult to measure. This paper describes a novel method for assessing CWR between the 0.4 × 10 and 10 °C/min in microliter CPA-loaded droplet systems with a new ultrarapid laser calorimetric approach. Cooling was achieved by direct quenching in liquid nitrogen, while warming was achieved by the irradiation of plasmonic gold nanoparticle-loaded vitrified droplets by a high-power 1064 nm millisecond pulsed laser. We assume "apparent" vitrification is achieved provided ice is not visually apparent (i.e., opacity) upon imaging with a camera (CCR) during cooling or highspeed camera (CWR) during warming. Using this approach, we were able to investigate CWRs in single CPA systems such as propylene glycol (PG), glycerol, and Trehalose in water, as well as mixtures of glycerol-trehalose-water and propylene glycol-trehalose-water CPA at low concentrations (20-40 wt %). Further, a phenomenological model for determining the CCRs and CWRs of CPAs was developed which allowed for predictions of CCR or CWR of single component CPA and mixtures (within and outside of the regime their constituents were measured in), providing an avenue for optimizing CCR and CWR and perhaps future CPA cocktail discovery.

摘要

冷冻保护剂(CPAs)通常用于玻璃化处理,以达到无结晶的非晶态玻璃状态,从而冷冻保存生物材料。加载CPA的系统有两个重要特性,即临界冷却速率和临界升温速率(CCR和CWR),分别是实现玻璃化状态和从玻璃化状态恢复所需的温度速率。由于CPA具有毒性,通常希望使用尽可能低的浓度,这就提高了CWR,使其越来越难以测量。本文描述了一种新方法,用于在微升加载CPA的液滴系统中,采用一种新型超快速激光量热法评估0.4×10至10℃/分钟之间的CWR。冷却通过在液氮中直接淬火实现,而升温则通过用高功率1064nm毫秒脉冲激光照射加载等离子体金纳米颗粒的玻璃化液滴来实现。我们假设,如果在冷却过程中用相机成像(CCR)或升温过程中用高速相机成像(CWR)时,肉眼看不到冰(即不透明),则实现了“表观”玻璃化。使用这种方法,我们能够研究单一CPA系统中的CWR,如水中的丙二醇(PG)、甘油和海藻糖,以及低浓度(20-40 wt%)的甘油-海藻糖-水和丙二醇-海藻糖-水CPA混合物。此外,还开发了一个用于确定CPAs的CCR和CWR的唯象模型,该模型可以预测单一组分CPA和混合物的CCR或CWR(在其成分测量范围之内和之外),为优化CCR和CWR以及未来发现CPA鸡尾酒提供了一条途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a5a/8823201/c8de19127f4b/ht-21-1359_031207_g001.jpg

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