首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Superhydrophobic bowl-like SERS substrates patterned from CMOS sensors for extracellular vesicle characterization
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Superhydrophobic bowl-like SERS substrates patterned from CMOS sensors for extracellular vesicle characterization

机译:用于细胞外囊泡表征的CMOS传感器图案化的超疏水碗状SERS基材

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摘要

Using a regular CMOS sensor as a template, we are able to fabricate a simple but highly effective superhydrophobic SERS substrate. Specifically, we decorated the microlens layer of the sensor with 7 mu m polystyrene beads to obtain a PDMS patterned replica. The process resulted in a uniform pattern of voids in the PDMS (denoted nanobowls) that are intercalated with a few larger voids (denoted here microbowls). The voids act as superhydrophobic substrates with analyte concentration capabilities in bigger bowl-like structures. Silver nanoparticles were directly grown on the patterned PDMS substrate inside both the nano- and microbowls, and serve as strong electromagnetic field enhancers for the SERS substrate. After systematic characterization of the fabricated SERS substrate by atomic force microscopy and scanning electron microscopy, we demonstrated its SERS performance using 4-aminothiophenol as a reporter molecule. Finally, we employed this innovative substrate to concentrate and analyze extracellular vesicles (EVs) isolated from an MC65 neural cell line in an ultralow sample volume. This substrate can be further exploited for the investigation of various EV biomarkers for early diagnosis of different diseases using liquid biopsy.
机译:使用常规CMOS传感器作为模板,我们能够制造一个简单但高效的超疏水SERS基板。具体地,我们用7μm聚苯乙烯珠子装饰了传感器的微透镜层,得到PDMS图案化的复制品。该过程导致PDMS(表示的纳米管道)中的空隙的均匀图案,其嵌入较大的空隙(在此表示MICROBOWL)。空隙用作超疏水基底,具有较大的碗状结构中的分析物浓度能力。将银纳米颗粒直接生长在纳米和微管的图案化的PDMS基板上,并用作SERS基板的强电磁场增强剂。通过原子力显微镜和扫描电子显微镜系统对制造的SERS基板进行系统性化,我们使用4-氨基噻吩醇作为报告分子证明其SERS性能。最后,我们使用这种创新的基质来集中和分析从超级样品体积中的MC65神经细胞系中分离的细胞外囊(EVS)。可以进一步利用该衬底来研究各种EV生物标志物,用于使用液体活组织检查对不同疾病的早期诊断。

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