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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Highly sensitive detection of antibodies in a soft bioactive three-dimensional bioorthogonal hydrogel
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Highly sensitive detection of antibodies in a soft bioactive three-dimensional bioorthogonal hydrogel

机译:软生物活性三维生物正交水凝胶中抗体的高敏感性检测

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To this date, biosensing devices mainly based on two-dimensional (2D) assays such as enzyme-linked immunosorbent assay (ELISA) or 2D-microarrays are found on the market. In this article, we circumvent the drawbacks of 2D assays such as low loading capacity and protein denaturation, by producing a three-dimensional (3D) hydrogel array. As a proof of concept, we focus on antibody detection by peptides. A click reaction of polyethylene glycol (PEG) and dendritic polyglycerol (dPG) has produced one of the softest (G ' = 200 Pa) but relatively robust existing hydrogels comparable to cells. This customizable hydrogel is favorable for antibody diffusion and for peptide immobilization through bioorthogonal chemistry. An extensive study of the mechanical properties as a function of the PEG length has been conducted, which suggests, at both nano- and macro-scales, that an increase of the PEG length decreased the stiffness of the hydrogels and increased the mesh size, which correspondingly increased the diffusion rate of antibodies. The hydrogels exhibited a remarkable swelling ratio reaching up to 100 with a height expansion ratio up to 8. This specific and selective 3D model of detection has suggested a loading capacity seven times higher compared to 2D arrays, a higher sensitivity by 20% and a limit of detection up to 27 pg mL(-1) for 3D assays setting the limits as low as that of other antibody binding methods such as ELISA, whereas the limit of detection for 2D slides is 0.5 mu g mL(-1).
机译:迄今为止,在市场上发现了主要基于二维(2D)测定的生物传感装置,例如酶联免疫吸附测定(ELISA)或2D微阵列。在本文中,通过产生三维(3D)水凝胶阵列来规避2D测定的缺点,例如低负载能力和蛋白质变性。作为概念证明,我们专注于肽的抗体检测。聚乙二醇(PEG)和树突式聚甘油(DPG)的点击反应已产生一种最软的(G'= 200Pa),但与细胞相当的现有水凝胶。这种可定制的水凝胶是有利于抗体扩散和通过生物正交化学固定的肽固定。已经进行了对机械性能作为PEG长度的函数的广泛研究,这在纳米和宏观上表明,PEG长度的增加降低了水凝胶的刚度并增加了网状尺寸相应地增加了抗体的扩散速率。水凝胶表现出达到最多100的显着膨胀比,高度膨胀比最多为8.这种特定的选择3D检测模型已经提出了与2D阵列相比七倍的负载能力,较高的敏感度升高20%和极限检测高达27pg ml(-1)的3D测定将限制与其他抗体结合方法(例如ELISA)的限制设置为,而2D载玻片的检测限为0.5μgmm(-1)。

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