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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Simple one-step process for immobilization of biomolecules on polymer substrates based on surface-attached polymer networks
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Simple one-step process for immobilization of biomolecules on polymer substrates based on surface-attached polymer networks

机译:基于表面附着的聚合物网络的简单一步法,将生物分子固定在聚合物基质上

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摘要

For the miniaturization of biological assays, especially for the fabrication of microarrays, immobilization of biomolecules at the surfaces of the chips is the decisive factor. Accordingly, a variety of binding techniques have been developed over the years to immobilize DNA or proteins onto such substrates. Most of them require rather complex fabrication processes and sophisticated surface chemistry. Here, a comparatively simple immobilization technique is presented, which is based on the local generation of small spots of surface attached polymer networks. Immobilization is achieved in a one-step procedure: Probe molecules are mixed with a photoactive copolymer in aqueous buffer, spotted onto a solid support, and cross-linked as well as bound to the substrate during brief flood exposure to UV light. The described procedure permits spatially confined surface functionalization and allows reliable binding of biological species to conventional substrates such as glass microscope slides as well as various types of plastic substrates with comparable performance. The latter also permits immobilization on structured, thermoformed substrates resulting in an all-plastic biochip platform, which is simple and cheap and seems to be promising for a variety of microdiagnostic applications.
机译:对于生物测定的小型化,特别是对于微阵列的制造,将生物分子固定在芯片表面是决定性因素。因此,多年来开发了多种结合技术以将DNA或蛋白质固定在此类底物上。它们中的大多数需要相当复杂的制造工艺和复杂的表面化学。在此,提出了一种相对简单的固定技术,该技术基于表面附着的聚合物网络小斑点的局部生成。固定化是一步一步完成的:将探针分子与光敏共聚物在水性缓冲液中混合,点到固体支持物上,然后在短暂泛光的紫外线照射下交联并结合到基材上。所描述的程序允许在空间上限制表面的功能化,并允许生物物种可靠地结合到常规基板,例如玻璃显微镜载玻片以及具有可比性能的各种类型的塑料基板。后者还允许固定在结构化的,热成型的基质上,从而形成一种全塑料生物芯片平台,该平台既简单又便宜,并且似乎有望用于各种微诊断应用。

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