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Hydrogel-based microbeads for Raman-encoded suspension array using the reversed-phase suspension polymerization method and ultraviolet light curing

机译:用于拉曼编码悬浮阵的水凝胶基微珠,使用反相悬浮聚合方法和紫外线固化

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摘要

A one-step synthesis using the reversed-phase suspension polymerization method and ultraviolet light curing is proposed for preparing the Raman-encoded suspension array (SA). The encoded microcarriers are prepared by doping the Raman reporter molecules into an aqueous phase, and then dispersing the aqueous phase in an oil phase and curing by ultraviolet light irradiation. The multiplexed biomolecule detection and various concentration experiments confirm the qualitative and quantitative analysis capabilities of the Raman-encoded SA with a limit of detection of 52.68?pM. The narrow bandwidth of the Raman spectrum can achieve a large number of codes in the available spectral range and the independence between the encoding channel and the fluorescent label channel provides the encoding method with high accuracy. This preparation method is simple and easy to operate, low in cost, and high in efficiency. A large number of hydrogel-based encoding microbeads could be quickly obtained with good biocompatibility. Most importantly, concentrating plenty of Raman reporter molecules inside the microbeads increases the signal intensity and means the molecular assembly is not limited by the functional groups; thus, the types of materials available for Raman encoding method are expanded. Furthermore, the signal intensity–related encoding method is verified by doping different proportions of Raman reporter molecules with our proposed synthesis method, which further increases the detection throughput of Raman-encoded SA.Graphical Abstract
机译:提出了一种使用反相悬浮聚合方法和紫外线的一步合成,用于制备拉曼编码的悬浮阵列(SA)。通过将拉曼报告分子掺杂到水相中,然后将水相分散在油相中并通过紫外光照射固化来制备编码的微载体。多路复用的生物分子检测和各种浓度实验证实了拉曼编码的SA的定性和定量分析能力,其检测限为52.68μm。拉曼光谱的窄带宽可以在可用光谱范围内获得大量代码,并且编码信道和荧光标签通道之间的独立性提供高精度的编码方法。该制备方法简单易于操作,成本低,效率高。可以通过良好的生物相容性快速获得大量的基于水凝胶的编码微珠。最重要的是,在微珠内浓缩大量拉曼报告器分子增加了信号强度,并且表示分子组件不受官能团的限制;因此,扩展了用于拉曼编码方法的材料类型。此外,通过用我们提出的合成方法掺杂不同比例的拉曼报道分子的不同比例来验证信号强度相关的编码方法,这进一步增加了拉曼编码的SA.Graphication摘要的检测吞吐量

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