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Determination of the platelet-derived growth factor BB by a competitive thrombin-linked aptamer-based Fluorometric assay

机译:通过竞争性凝血酶连接的适体荧光测定法测定血小板衍生的生长因子BB

摘要

The authors describe a competitive aptamer based assay for detection of the platelet-derived growth factor BB (PDGF-BB; used as a model protein). The assay is making use of thrombin (a serine protease) as an enzyme label for reporting signals. It is taking advantage of a highly selective aptamer and of the fairly specific enzymatic activity of thrombin in terms of cleaving artificial fluorogenic peptide substrates. In a first step, the surface of wells of microplates is coated with PDGF-BB. On addition of a sample containing PDGF-BB, free and bound PDGF-BB compete with each other for binding to a DNA probe that consists of an aptamer sequence for PDGF-BB and a 29-mer aptamer sequence for thrombin. After washing, thrombin is added and will attach to the DNA probe that bound to the PDGF-BB on the microplates. Following addition of a fluorogenic peptide substrate, the bound thrombin will catalyze the cleavage of the substrate to generate a fluorescent product whose fluorescence intensity is measured at excitation/emission wavelengths of 370/440 nm. Fluorescence intensity decreases with increasing PDGF-BB concentration in the sample because less thrombin will bind to the PDGF-BB coated surface of the microplate. Under optimal conditions, PDGF-BB can be quantified in the 0.125 to 3 nM concentration range. This assay was successfully applied to the determination of PDGF-BB in spiked 100-fold diluted human serum.
机译:作者描述了一种基于竞争性适体的测定方法,用于检测血小板衍生的生长因子BB(PDGF-BB;用作模型蛋白)。该测定法利用凝血酶(一种丝氨酸蛋白酶)作为报告信号的酶标记。就裂解人工荧光肽底物而言,它利用了高度选择性的适体和凝血酶相当特定的酶活性。第一步,将微孔板的孔表面涂上PDGF-BB。加入含有PDGF-BB的样品后,游离的和结合的PDGF-BB彼此竞争结合DNA探针,该DNA探针由PDGF-BB的适体序列和凝血酶的29-mer适体序列组成。洗涤后,添加凝血酶,并将其结合到与微孔板上PDGF-BB结合的DNA探针上。添加荧光肽底物后,结合的凝血酶将催化底物的裂解,生成荧光产物,其荧光强度在激发/发射波长为370/440 nm时测量。荧光强度随着样品中PDGF-BB浓度的增加而降低,这是因为较少的凝血酶会结合到微孔板的PDGF-BB涂层表面。在最佳条件下,PDGF-BB的定量浓度范围为0.125至3 nM。该测定法成功地用于测定加标的100倍稀释人血清中的PDGF-BB。

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    Guo Limin; Zhao Qiang;

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  • 年度 2016
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