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Micro-competition system for Raman quantification of multiple glycans on intact cell surface

机译:用于完整细胞表面多种聚糖拉曼定量的微竞争系统

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摘要

A micro-competition system is designed for simultaneous quantification of multiple glycans on intact cell surfaces, by integrating two-surface-one-molecule competition with surface enhanced Raman scattering (SERS). The micro-competition is achieved among multiple-polysaccharide-coated gold nanostars functionalized silica bubbles, target cells and gold nanoprobes at a micron scale. The gold nanoprobes are prepared by coating distinct Raman molecules and lectins on gold nanoparticles for signal resolution and glycan recognition, respectively. The silica bubble surface serves as an artificial glycan surface and a SERS substrate. Upon the competitive recognition of lectin to the corresponding glycan, the gold nanoprobes can be specifically captured by the bubbles and cells in a homogeneous system, and the amounts of different gold nanoprobes on bubbles are simultaneously detected by SERS to reflect the corresponding glycan amounts on the cell surface. This micro-competition system with multiple quantification capability provides a powerful tool for investigation of the complex glycan-related biological processes.
机译:通过将两个表面一分子竞争与表面增强拉曼散射(SERS)相结合,设计了一种微竞争系统,用于同时定量完整细胞表面上的多种聚糖。微竞争是在微米级规模的多多糖涂层金纳米星功能化的二氧化硅气泡,靶细胞和金纳米探针之间实现的。通过分别在金纳米颗粒上涂覆不同的拉曼分子和凝集素来制备金纳米探针,以分别用于信号分辨率和聚糖识别。二氧化硅气泡表面用作人造聚糖表面和SERS底物。当凝集素竞争性识别相应的聚糖后,金纳米探针可以被均质系统中的气泡和细胞特异性捕获,气泡上不同金纳米探针的量可以通过SERS同时检测,从而反映出相应的聚糖含量。细胞表面。这种具有多种定量功能的微竞争系统为研究复杂的聚糖相关的生物过程提供了强大的工具。

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