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Monitoring enzymatic degradation of pericellular matrices through SERS stamping

机译:监控pericellular的酶促降解矩阵通过ser冲压

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We introduce a surface enhanced Raman spectroscopy (SERS) stamping approach for acquiring cell-surface specific vibrational spectra of individual living cells under physiological conditions. The SERS stamping approach utilizes a nanostructured metal surface on top of a lithographically defined piston that can be translated in 3-dimensions with nanometer resolution to contact living cells in solution with a pristine metal surface. We applied this approach to characterize the chemical composition of the cellular surface of living MCF7 breast cancer cells and to monitor its change upon addition of the enzyme hyaluronidase, which degrades major constituents of the pericellular matrix. Although the cell surface spectra show significant cell-to-cell fluctuations, a statistical barcode analysis of the spectra ensembles reveals systematic changes in the cell surface SERS spectra upon addition of hyaluronidase, which are consistent with a thinning of the pericellular matrix.
机译:我们引入一个表面增强拉曼光谱(ser)冲压方法获取细胞表面特定的振动光谱单个活细胞生理条件。纳米金属表面上光刻活塞,可以定义翻译与纳米三维解决接触活细胞在解决方案原始的金属表面。描述化学成分的方法生活MCF7细胞表面的乳房癌细胞和监测其变化添加透明质酸酶的酶,这种酶降解pericellular的主要成分矩阵。重要的细胞间波动,a统计条码的光谱分析乐团揭示系统细胞的变化在添加表面ser光谱透明质酸酶,这是一致的pericellular的稀疏矩阵。

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