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基于蛋白质微阵列与微流控芯片集成的适体筛选。

Selection of aptamers based on a protein microarray integrated with a microfluidic chip.

机构信息

State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, China.

出版信息

Lab Chip. 2016 Dec 20;17(1):178-185. doi: 10.1039/c6lc01208f.

Abstract

We developed an efficient and fast method based on a protein microarray integrated with a microfluidic chip for the process of SELEX (systematic evolution of ligands by exponential enrichment). Lactoferrin from bovine milk was used as a target protein, while bovine serum albumin (BSA), α-lactalbumin, β-lactoglobulin and casein were used as negative proteins. They were separately dotted and immobilized to prepare the protein microarray and the resulting microarray was further integrated into a microfluidic chip for the SELEX (PMM-SELEX) process. The interaction between aptamer candidates and targets could be monitored using a fluorescence microarray scanner and the whole PMM-SELEX process was performed through seven-round selection. As a result, five aptamers (Lac-14, Lac-6a, Lac-9, Lac-5, Lac-3a) with high specificity and affinity can be repeatedly obtained during three times of independent repeated selection. Surface plasmon resonance (SPR) was used to calculate the dissociation constants (K). The aptamer Lac-6a was then used for detection of lactoferrin by fluorescence polarization. A linear response was observed for lactoferrin concentrations in the range of 0.78-50 μg mL and the detection limit was 0.39 μg mL. Thus, the innovative PMM-SELEX presented shows stability, accuracy and high efficiency for aptamer screening.

摘要

我们开发了一种基于蛋白质微阵列与微流控芯片集成的高效快速方法,用于 SELEX(配体指数富集系统进化)过程。牛乳铁蛋白被用作靶蛋白,而牛血清白蛋白(BSA)、α-乳白蛋白、β-乳球蛋白和酪蛋白则被用作阴性蛋白。它们分别被点样和固定化,以制备蛋白质微阵列,然后将得到的微阵列进一步集成到微流控芯片中,用于 SELEX(PMM-SELEX)过程。荧光微阵列扫描仪可用于监测适配体候选物与靶标的相互作用,整个 PMM-SELEX 过程通过七轮选择进行。结果,在三次独立重复选择中,可以反复获得具有高特异性和亲和力的 5 个适配体(Lac-14、Lac-6a、Lac-9、Lac-5、Lac-3a)。表面等离子体共振(SPR)用于计算解离常数(K)。然后,适配体 Lac-6a 用于通过荧光偏振检测乳铁蛋白。乳铁蛋白浓度在 0.78-50 μg mL 范围内呈现线性响应,检测限为 0.39 μg mL。因此,所提出的创新的 PMM-SELEX 方法在适配体筛选中表现出稳定性、准确性和高效率。

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