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Biomedical Use of Isothermal Microcalorimeters

机译:等温微量热量计的生物医学用途

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摘要

Isothermal microcalorimetry is becoming widely used for monitoring biological activities in vitro. Microcalorimeters are now able to measure heat production rates of less than a microwatt. As a result, metabolism and growth of relatively small numbers of cultured bacteria, protozoans, human cells and even small animals can be monitored continuously and extremely accurately at any chosen temperature. Dynamic effects on these organisms of changes in the culture environment—or of additions to it—are easily assessed over periods from hours to days. In addition microcalorimetry is a non-destructive method that does not require much sample preparation. It is also completely passive and thus allows subsequent evaluations of any kind on the undisturbed sample. In this review, we present a basic description of current microcalorimetry instruments and an overview of their use for various biomedical applications. These include detecting infections, evaluating effects of pharmaceutical or antimicrobial agents on cells, monitoring growth of cells harvested for tissue eingineering, and assessing medical and surgical device material physico-chemical stability and cellular biocompatibility.
机译:等温微量热法已被广泛用于监测体外生物活性。微米量热仪现在能够测量小于一瓦的热量产生率。结果,可以在任何选择的温度下连续且极其精确地监测相对少量的培养细菌,原生动物,人类细胞甚至小型动物的代谢和生长。在数小时至数天的时间内,可以轻松评估培养环境变化(或添加环境变化)对这些生物的动态影响。另外,微量量热法是一种非破坏性方法,不需要大量样品制备。它也是完全被动的,因此可以对未受干扰的样本进行任何形式的后续评估。在这篇综述中,我们介绍了当前微量量热仪的基本描述以及它们在各种生物医学应用中的使用概述。这些措施包括检测感染,评估药物或抗微生物剂对细胞的作用,监测为组织工程而收获的细胞的生长以及评估医疗和外科手术器械材料的物理化学稳定性和细胞生物相容性。

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