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首页> 外文期刊>ACS nano >Optical Nanosensor Architecture for Cell-Signaling Molecules Using DNA Aptamer-Coated Carbon Nanotubes
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Optical Nanosensor Architecture for Cell-Signaling Molecules Using DNA Aptamer-Coated Carbon Nanotubes

机译:使用DNA适体涂层碳纳米管的细胞信号分子的光学纳米传感器体系结构。

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We report a novel optical biosensor platform using near-infrared fluorescent single-walled carbon nanotubes (SWNTs) functionalized with target-recognizing aptamer DNA for noninvasively detecting cell-signaling molecules In real time. Photoluminescence (PL) emission of aptamer-coated SWNTs is modulated upon selectively binding to target molecules, which is exploited to detect insulin using an insulin-binding aptamer (IBA) as a molecular recognition element. We find that nanotube PL quenches upon insulin recognition via a photoinduced charge transfer mechanism with a quenching rate of k(q) = 5.85 x 10(14) M(-1) s(-1) a diffusion reaction rate of k(r) = 0.129 s(-1). Circular dichroism spectra reveal for the first time that IBA strands retain a four-stranded, parallel guanine quadruplex conformation on the nanotubes, ensuring target selectivity. We demonstrate that these IBA-functionalized SWNT sensors incorporated in a collagen extracellular matrix (ECM) can be regenerated by removing bound analytes through enzymatic proteolysis. As proof-of-concept, we show that the SWNT sensors embedded in the ECM promptly detect insulin secreted by cultured pancreatic INS-1 cells stimulated by glucose influx and report a gradient contour of insulin secretion profile. This novel design enables new types of label-free assays and noninvasive, in situ, real-time detection schemes for cell-signaling molecules.
机译:我们报告了一种新型的光学生物传感器平台,该平台使用近红外荧光单壁碳纳米管(SWNTs)与目标识别适体DNA功能化,用于实时非侵入性检测细胞信号分子。适体包被的SWNTs的光致发光(PL)发射在选择性结合靶分子后受到调节,利用靶分子结合胰岛素的适体(IBA)作为分子识别元件来检测胰岛素。我们发现,纳米管PL通过光诱导的电荷转移机制以k(q)= 5.85 x 10(14)M(-1)s(-1)的猝灭速率对胰岛素进行识别而猝灭,扩散反应速率为k(r)。 = 0.129 s(-1)。圆二色性光谱首次揭示了IBA链在纳米管上保留了四链,平行的鸟嘌呤四链体构象,从而确保了目标选择性。我们证明,结合在胶原细胞外基质(ECM)中的这些IBA功能化SWNT传感器可以通过酶解蛋白去除结合的分析物来再生。作为概念验证,我们证明了嵌入在ECM中的SWNT传感器可以迅速检测葡萄糖流入刺激的胰腺INS-1细胞分泌的胰岛素,并报告胰岛素分泌曲线的梯度轮廓。这种新颖的设计实现了新型的无标记测定方法以及细胞信号分子的非侵入性,原位实时检测方案。

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