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Surface enhanced Raman scattering for probing cellular biochemistry

机译:表面增强拉曼散射探测细胞生物化学

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摘要

Surface enhanced Raman scattering (SERS) from biomolecules in living cells enables the sensitive, but also very selective, probing of their biochemical composition. This minireview discusses the developments of SERS probing in cells over the past years from the proof-of-principle to observe a biochemical status to the characterization of molecule–nanostructure and molecule–molecule interactions and cellular processes that involve a wide variety of biomolecules and cellular compartments. Progress in applying SERS as a bioanalytical tool in living cells, to gain a better understanding of cellular physiology and to harness the selectivity of SERS, has been achieved by a combination of live cell SERS with several different approaches. They range from organelle targeting, spectroscopy of relevant molecular models, and the optimization of plasmonic nanostructures to the application of machine learning and help us to unify the information from defined biomolecules and from the cell as an extremely complex system.
机译:表面增强喇曼散射(ser)在活细胞使生物分子敏感,但也非常挑剔,探索他们的生化成分。论述了爵士的发展探索在过去的几年中从细胞理论水平观察生化状态的表征molecule—纳米and molecule—molecule相互作用和细胞过程涉及各种各样的生物分子和细胞隔间。活细胞分析工具,来获得一个更好的理解细胞生理学和利用ser的选择性通过活细胞ser的组合几种不同的方法。细胞器定位,光谱学相关分子模型和优化电浆纳米结构的应用机器学习和帮助我们统一从生物分子定义和信息细胞作为一个极其复杂的系统。

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