Advancing Transfusion Medicine through Raman Tweezers Spectroscopy: A Review of Recent Progress and Future Perspectives

Mithun Nelliat, G. Mohan, J. Lukose, S. Shastry, S. Chidangil
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Abstract

Background: Raman tweezers spectroscopy (RTS) is a powerful tool that combines optical tweezers and Raman spectroscopy to study single living cells. RTS has become increasingly popular in biomedical and clinical research due to its high molecular specificity and sensitivity, which enable the study of cell viability, cell deformation, cell-protein, cell-nanoparticle, cell-cell interaction, etc. In transfusion medicine, RTS can give valuable insights into the storage lesions and effects of various preservatives and intravenous fluids on blood cells. Summary: By analyzing the Raman spectra of individual blood cells, RTS can detect changes in the cellular blood components which can be used to monitor the quality of blood products during storage and transfusion. The present review article highlights the principle and clinical applications of RTS in transfusion medicine. Key Messages: Raman spectroscopy is a versatile analytical method for biomedical research. Combining the Raman spectroscopy method with the optical tweezers technique will allow us to explore the dynamics of live single cells in their physiological medium.
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通过拉曼镊子光谱学推进输血医学:最新进展与未来展望综述
背景:拉曼镊子光谱(RTS)是一种结合光学镊子和拉曼光谱研究单个活细胞的强大工具。由于其分子特异性和灵敏度高,可以研究细胞活力、细胞变形、细胞-蛋白质、细胞-纳米颗粒、细胞-细胞相互作用等,拉曼镊子光谱在生物医学和临床研究中越来越受欢迎。在输血医学中,拉曼光谱分析可以深入了解血细胞的储存病变以及各种防腐剂和静脉注射液对血细胞的影响。摘要:通过分析单个血细胞的拉曼光谱,RTS 可以检测细胞血液成分的变化,从而用于监测血液制品在储存和输血过程中的质量。本综述文章重点介绍了 RTS 在输血医学中的原理和临床应用。关键信息:拉曼光谱是一种用于生物医学研究的多功能分析方法。将拉曼光谱方法与光学镊子技术相结合,将使我们能够探索单个活细胞在其生理介质中的动态变化。
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