红外光谱和显微技术在肥胖症诊断中的应用

Ayca Dogan Mollaoglu, I. Ozyurt, F. Severcan
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引用次数: 3

摘要

红外光谱学是一种基于激发分子键振动的物质吸收红外辐射的振动光谱学技术。它是研究生物分子、细胞和组织的结构、功能和组成变化的有力方法。近年来,科研人员不断提高该技术在癌症和代谢紊乱等临床病例中的表现。肥胖是增加许多疾病风险的主要因素之一,并导致脂肪、肝脏和肌肉等组织的功能障碍。红外光谱技术的应用可以识别肥胖引起的分子变化,了解疾病的分子机制,识别可用于诊断的特定光谱生物标志物。此外,这些光谱生物标记物可用于确定适当的药物及其治疗剂量。本章将介绍红外光谱和显微技术在肥胖代谢表征和理解中的应用。这些技术在肥胖诊断中的鉴别能力将被讨论。未来,这些新方法将有助于肥胖症的内部诊断在临床中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applications of Infrared Spectroscopy and Microscopy in Diagnosis of Obesity
Infrared (IR) spectroscopy is a vibrational spectroscopic technique based on the absorption of infrared radiation by matters that excite vibrations of molecular bonds. It is a powerful method for investigating structural, functional, and compositional changes in biomolecules, cells, and tissues. In recent years, scientific researchers have continued to increase the performance of this technique on clinical cases such as cancers and metabolic disorders. Obesity is one of the main factors that increases the risk of many diseases and contributes to functional disabilities in tissues such as adipose, liver, and muscle. Applications of IR spectroscopic techniques allow identifying molecular changes due to obesity, to understand the molecular mechanism of the disease, to identify specific spectral biomarkers that can be used in diagnosis. In addition, these spectral biomarkers can be used to identify the appropriate drugs and their doses for treatment. In this chapter, applications of IR spectroscopic and microscopic techniques to the characterization and understanding the obesity metabolism will be presented. The discriminatory power of these techniques in diagnosis of obesity will be discussed. In future, these novel approaches will shed light on the internal diagnosis of obesity in clinical application.
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