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Library Approach for Reliable Synthesis and Properties of DNA-Gold Nanorod Conjugates

机译:DNA-金纳米棒缀合物可靠合成和性质的文库方法

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摘要

We developed a library-based approach to chemically stabilize cetyltrimethylammonium bromide (CTAB)-coated gold nanorods for the synthesis of polyvalent DNA--gold nanorod conjugates (DNA--AuNRs). Eleven chemical reagents were carefully chosen to constitute an additive library and screened by UV--vis spectroscopy to evaluate their stabilizing capability for the CTAB-coated AuNRs. Interestingly, 5-bromosalicylic acid (5-BrSA) was determined to most significantly stabilize the AuNRs by inducing additional adsorption of CTAB on the rod. Importantly, these stabilized AuNRs with 5-BrSA were conjugated with thiol DNA in an exceptionally reproducible and reliable method, which led to the systematic investigation of their cooperative assembly and disassembly properties under various conditions, including different types and lengths of the DNA sequences.
机译:我们开发了一种基于文库的方法来化学稳定溴化十六烷基三甲基溴化铵(CTAB)的金纳米棒,以合成多价DNA--金纳米棒结合物(DNA--AuNRs)。精心选择了11种化学试剂来构成添加剂库,并通过UV-可见光谱进行筛选以评估其对CTAB涂层AuNR的稳定能力。有趣的是,确定5-溴水杨酸(5-BrSA)可通过在棒上诱导CTAB的额外吸附来最大程度地稳定AuNRs。重要的是,这些稳定的具有5-BrSA的AuNRs以一种异常可重现和可靠的方法与硫醇DNA偶联,从而导致在各种条件下,包括不同类型和长度的DNA序列,对它们的协同装配和拆卸特性进行了系统的研究。

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