A Review of In Vitro Instrumentation Platforms for Evaluating Thermal Therapies in Experimental Cell Culture Models.

Faraz Chamani, India Barnett, Marla Pyle, Tej Shrestha, Punit Prakash
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引用次数: 1

Abstract

Thermal therapies, the modulation of tissue temperature for therapeutic benefit, are in clinical use as adjuvant or stand-alone therapeutic modalities for a range of indications, and are under investigation for others. During delivery of thermal therapy in the clinic and in experimental settings, monitoring and control of spatio-temporal thermal profiles contributes to an increased likelihood of inducing desired bioeffects. In vitro thermal dosimetry studies have provided a strong basis for characterizing biological responses of cells to heat. To perform an accurate in vitro thermal analysis, a sample needs to be subjected to uniform heating, ideally raised from, and returned to, baseline immediately, for a known heating duration under ideal isothermal condition. This review presents an applications-based overview of in vitro heating instrumentation platforms. A variety of different approaches are surveyed, including external heating sources (i.e., CO2 incubators, circulating water baths, microheaters and microfluidic devices), microwave dielectric heating, lasers or the use of sound waves. We discuss critical heating parameters including temperature ramp rate (heat-up phase period), heating accuracy, complexity, peak temperature, and technical limitations of each heating modality.

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热疗实验细胞培养模型体外检测平台综述
热疗法,调节组织温度以获得治疗效果,在临床上作为辅助或独立治疗方式用于一系列适应症,并且正在研究其他治疗方法。在临床和实验环境中提供热疗法期间,监测和控制时空热分布有助于增加诱导所需生物效应的可能性。体外热剂量学研究为表征细胞对热的生物反应提供了强有力的基础。为了进行准确的体外热分析,样品需要均匀加热,理想情况下,在理想等温条件下,在已知的加热时间内,从基线上升并立即返回到基线。本文综述了体外加热仪器平台的应用概况。调查了各种不同的方法,包括外部热源(即CO2培养箱、循环水浴、微加热器和微流体装置)、微波电介质加热、激光或声波的使用。我们讨论了关键的加热参数,包括温度斜坡率(加热阶段),加热精度,复杂性,峰值温度,以及每种加热方式的技术限制。
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来源期刊
Critical Reviews in Biomedical Engineering
Critical Reviews in Biomedical Engineering Engineering-Biomedical Engineering
CiteScore
1.80
自引率
0.00%
发文量
25
期刊介绍: Biomedical engineering has been characterized as the application of concepts drawn from engineering, computing, communications, mathematics, and the physical sciences to scientific and applied problems in the field of medicine and biology. Concepts and methodologies in biomedical engineering extend throughout the medical and biological sciences. This journal attempts to critically review a wide range of research and applied activities in the field. More often than not, topics chosen for inclusion are concerned with research and practice issues of current interest. Experts writing each review bring together current knowledge and historical information that has led to the current state-of-the-art.
期刊最新文献
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