Suppr超能文献

面向基于微流控荧光肽的生物传感器系统的无标记检测技术的开发。

Toward Development of a Label-Free Detection Technique for Microfluidic Fluorometric Peptide-Based Biosensor Systems.

作者信息

Sitkov Nikita, Zimina Tatiana, Kolobov Alexander, Karasev Vladimir, Romanov Alexander, Luchinin Viktor, Kaplun Dmitry

机构信息

Department of Micro- and Nanoelectronics, Saint Petersburg Electrotechnical University "LETI", 197376 Saint Petersburg, Russia.

Institute of Highly Pure Biopreparations, 197110 Saint Petersburg, Russia.

出版信息

Micromachines (Basel). 2021 Jun 13;12(6):691. doi: 10.3390/mi12060691.

Abstract

The problems of chronic or noncommunicable diseases (NCD) that now kill around 40 million people each year require multiparametric combinatorial diagnostics for the selection of effective treatment tactics. This could be implemented using the biosensor principle based on peptide aptamers for spatial recognition of corresponding protein markers of diseases in biological fluids. In this paper, a low-cost label-free principle of biomarker detection using a biosensor system based on fluorometric registration of the target proteins bound to peptide aptamers was investigated. The main detection principle considered includes the re-emission of the natural fluorescence of selectively bound protein markers into a longer-wavelength radiation easily detectable by common charge-coupled devices (CCD) using a specific luminophore. Implementation of this type of detection system demands the reduction of all types of stray light and background fluorescence of construction materials and aptamers. The latter was achieved by careful selection of materials and design of peptide aptamers with substituted aromatic amino acid residues and considering troponin T, troponin I, and bovine serum albumin as an example. The peptide aptamers for troponin T were designed in silico using the «Protein 3D» (SPB ETU, St. Petersburg, Russia) software. The luminophore was selected from the line of ZnS-based solid-state compounds. The test microfluidic system was arranged as a flow through a massive of four working chambers for immobilization of peptide aptamers, coupled with the optical detection system, based on thick film technology. The planar optical setup of the biosensor registration system was arranged as an excitation-emission cascade including 280 nm ultraviolet (UV) light-emitting diode (LED), polypropylene (PP) UV transparent film, proteins layer, glass filter, luminophore layer, and CCD sensor. A laboratory sample has been created.

摘要

慢性或非传染性疾病(NCD)目前每年导致约4000万人死亡,这些疾病的问题需要多参数组合诊断来选择有效的治疗策略。这可以通过基于肽适配体的生物传感器原理来实现,用于在生物流体中空间识别疾病的相应蛋白质标志物。在本文中,研究了一种基于与肽适配体结合的目标蛋白荧光检测的低成本无标记生物标志物检测原理的生物传感器系统。所考虑的主要检测原理包括将选择性结合的蛋白质标志物的天然荧光重新发射为更长波长的辐射,该辐射可通过普通电荷耦合器件(CCD)使用特定发光体轻松检测到。这种类型的检测系统的实现需要减少建筑材料和适配体的所有类型的杂散光和背景荧光。通过仔细选择材料和设计具有取代芳香族氨基酸残基的肽适配体,并以肌钙蛋白T、肌钙蛋白I和牛血清白蛋白为例,实现了后者。使用“Protein 3D”(俄罗斯圣彼得堡的SPB ETU)软件在计算机上设计了针对肌钙蛋白T的肽适配体。发光体是从基于ZnS的固态化合物系列中选择的。测试微流体系统被设置为通过四个用于固定肽适配体的工作腔室的流动,并与基于厚膜技术的光学检测系统相结合。生物传感器记录系统的平面光学装置被设置为激发-发射级联,包括280nm紫外(UV)发光二极管(LED)、聚丙烯(PP)UV透明膜、蛋白质层、玻璃滤光片、发光体层和CCD传感器。创建了一个实验室样本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a0f/8232019/3bd6dc365b12/micromachines-12-00691-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验