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拉曼组学:利用微拉曼光谱与生物分子成分分析的新组学学科,用于生物结构的分子特征分析。

Ramanomics: New Omics Disciplines Using Micro Raman Spectrometry with Biomolecular Component Analysis for Molecular Profiling of Biological Structures.

机构信息

Institute for Lasers, Photonics and Biophotonics, University at Buffalo, State University of New York, Buffalo, NY 14260-3000, USA.

Advanced Cytometry Instrumentation Systems, LLC, 640 Ellicott Street-Suite 499, Buffalo, NY 14203, USA.

出版信息

Biosensors (Basel). 2017 Nov 15;7(4):52. doi: 10.3390/bios7040052.

Abstract

Modern instrumentation for Raman microspectroscopy and current techniques in analysis of spectral data provide new opportunities to study molecular interactions and dynamics at subcellular levels in biological systems. Implementation of biomolecular component analysis (BCA) to microRaman spectrometry provides basis for the emergence of Ramanomics, a new biosensing discipline with unprecedented capabilities to measure concentrations of distinct biomolecular groups in live cells and organelles. Here we review the combined use of microRaman-BCA techniques to probe absolute concentrations of proteins, DNA, RNA and lipids in single organelles of live cells. Assessing biomolecular concentration profiles of organelles at the single cell level provides a physiologically relevant set of biomarkers for cellular heterogeneity. In addition, changes to an organelle's biomolecular concentration profile during a cellular transformation, whether natural, drug induced or disease manifested, can provide molecular insight into the nature of the cellular process.

摘要

现代拉曼微光谱仪器和当前的光谱数据分析技术为在生物系统的亚细胞水平上研究分子相互作用和动力学提供了新的机会。将生物分子成分分析(BCA)应用于微拉曼光谱学为拉曼组学的出现提供了基础,这是一个新的生物传感学科,具有前所未有的能力来测量活细胞和细胞器中不同生物分子群体的浓度。在这里,我们回顾了将微拉曼 - BCA 技术结合使用以探测活细胞中单细胞器中蛋白质、DNA、RNA 和脂质的绝对浓度。在单细胞水平上评估细胞器的生物分子浓度分布为细胞异质性提供了一组生理相关的生物标志物。此外,细胞器的生物分子浓度分布在细胞转化过程中(无论是自然的、药物诱导的还是疾病表现的)发生变化,可以为细胞过程的性质提供分子见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13b9/5746775/6f78ba5f36bd/biosensors-07-00052-g001.jpg

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