The development of ultrasensitive microcalorimeters for bioanalysis and energy balance monitoring

IF 6.2 3区 综合性期刊 Q1 Multidisciplinary
Hanliang Zhu , Lan Wang , Jianguo Feng , Pavel Neuzil
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引用次数: 0

Abstract

Heat generation or consumption is required for all biological processes. Microcalorimetry is an ultrasensitive method to measure heat change for various applications. In this paper, we aimed to review the ultrasensitive microcalorimeter systems and their extensive applications in bioanalysis and energy balance monitoring. We first discussed the basic structure of microcalorimeters, including the closed system and open system, temperature sensing methods, isolation materials, and temperature stabilization. Then, we focused on their applications, such as cell metabolism research, biomolecule interaction measurement, biothermal analysis, and calorimetric detection. Finally, we compared the advantages and disadvantages of commercially available microcalorimeters and their contributions to bioresearch. The development of ultrasensitive microcalorimeters provides the tools for bioanalysis at the single-cell, or even subcellular, level, as well as for precise calorimetric detection.
用于生物分析和能量平衡监测的超灵敏微量热计的研制
所有生物过程都需要产生或消耗热量。微量热法是一种超灵敏的测量热变化的方法,适用于各种应用。本文综述了超灵敏微量热计系统及其在生物分析和能量平衡监测中的广泛应用。我们首先讨论了微热量计的基本结构,包括封闭系统和开放系统、温度传感方法、隔离材料和温度稳定。然后重点介绍了它们在细胞代谢研究、生物分子相互作用测量、生物热分析和量热检测等方面的应用。最后,我们比较了市售微热量计的优缺点及其对生物研究的贡献。超灵敏微量热计的发展为单细胞甚至亚细胞水平的生物分析提供了工具,也为精确的量热检测提供了工具。
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来源期刊
Fundamental Research
Fundamental Research Multidisciplinary-Multidisciplinary
CiteScore
4.00
自引率
1.60%
发文量
294
审稿时长
79 days
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