生物组织中次要发色团的漫射光谱研究(综述)。

Sovremennye tekhnologii v meditsine Pub Date : 2025-01-01 Epub Date: 2025-02-28 DOI:10.17691/stm2025.17.1.12
K A Bylinskaya, V V Perekatova, I V Turchin
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引用次数: 0

摘要

漫射光谱学(DOS)是一种快速发展的非侵入性生物组织诊断技术,其基础是用可见光和/或近红外波长范围内的光辐射探测目标物体,并检测来自组织的漫射散射光。由于被称为发色团的光吸收化合物的存在,通过DOS获得的信号提供了关于组织生化组成的广泛信息。迄今为止,DOS被广泛用于检测主要的发色团,如脱氧(Hb)和氧化(HbO2)血红蛋白、水、脂质和黑色素。生物组织中Hb和HbO2的浓度在临床研究中具有重要意义,因为它们为组织氧合状态提供了有价值的见解,并使缺氧检测成为可能。然而,生物组织也含有较少研究的发色团-次要发色团-它们也有助于整体吸收光谱。这些包括各种球蛋白,如高铁血红蛋白、碳氧血红蛋白和肌红蛋白,以及细胞色素和细胞色素c氧化酶。由于与主要发色团相比,次要发色团的吸收贡献相对较低,并且对其特定吸收光谱的了解有限,因此使用DOS识别次要发色团具有挑战性。尽管如此,同时检测主要和次要发色团可以全面了解组织中血管、细胞内和线粒体室内的代谢过程。这将大大扩展DOS在研究和临床研究中的潜在应用。在这篇综述中,我们研究了DOS对生物组织中次要发色团的研究的文献来源,讨论了主要发色团的作用,并评估了DOS同时检测主要和次要发色团的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Minor Chromophores in Biological Tissues by Diffuse Optical Spectroscopy (Review).

Diffuse optical spectroscopy (DOS) is a rapidly advancing non-invasive diagnostic technique to investigate biological tissue, based on probing the target object with optical radiation in the visible and/or near-infrared wavelength range and detecting the diffusely scattered light from the tissue. The signals obtained through DOS provide extensive information about the biochemical composition of tissues due to the presence of light-absorbing compounds known as chromophores. To date, DOS is widely employed to detect major chromophores such as deoxygenated (Hb) and oxygenated (HbO2) hemoglobin, water, lipids, and melanin. The concentrations of Hb and HbO2 in biological tissues are highly significant in clinical research, as they offer valuable insights into tissue oxygenation status and enable the detection of hypoxia. However, biological tissues also contain less-studied chromophores - minor chromophores - which also contribute to the overall absorption spectrum. These include various globins, such as methemoglobin, carboxyhemoglobin, and myoglobin, as well as cytochromes and cytochrome c oxidase. Identifying minor chromophores using DOS is challenging due to their relatively low absorption contributions compared to major chromophores, as well as the limited understanding of their specific absorption spectra. Nevertheless, the simultaneous detection of both major and minor chromophores could provide a comprehensive understanding of metabolic processes within vascular, intracellular, and mitochondrial compartments of tissues. This would substantially expand the potential applications of DOS in both research and clinical studies. In this review we examine literature sources that explore the investigation of minor chromophores in biological tissues by DOS, discuss the role of major chromophores, and evaluate the potential for simultaneous detection of both major and minor chromophores with DOS.

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