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通过应变促进的炔基-叠氮化物环加成反应实现氮化硅表面的无铜点击生物功能化。

Copper-free click biofunctionalization of silicon nitride surfaces via strain-promoted alkyne-azide cycloaddition reactions.

机构信息

Laboratory of Organic Chemistry, Wageningen University, Dreijenplein 8, 6703 HB Wageningen, The Netherlands.

出版信息

Langmuir. 2012 Jun 12;28(23):8651-63. doi: 10.1021/la300921e. Epub 2012 May 29.

Abstract

Cu-free "click" chemistry is explored on silicon nitride (Si(3)N(4)) surfaces as an effective way for oriented immobilization of biomolecules. An ω-unsaturated ester was grafted onto Si(3)N(4) using UV irradiation. Hydrolysis followed by carbodiimide-mediated activation yielded surface-bound active succinimidyl and pentafluorophenyl ester groups. These reactive surfaces were employed for the attachment of bicyclononyne with an amine spacer, which subsequently enabled room temperature strain-promoted azide-alkyne cycloaddition (SPAAC). This stepwise approach was characterized by means of static water contact angle, X-ray photoelectron spectroscopy, and fluorescence microscopy. The surface-bound SPAAC reaction was studied with both a fluorine-tagged azide and an azide-linked lactose, yielding hydrophobic and bioactive surfaces for which the presence of trace amounts of Cu ions would have been problematic. Additionally, patterning of the Si(3)N(4) surface using this metal-free click reaction with a fluorescent azide is shown. These results demonstrate the ability of the SPAAC as a generic tool for anchoring complex molecules onto a surface under extremely mild, namely ambient and metal-free, conditions in a clean and relatively fast manner.

摘要

无铜“点击”化学被探索应用于氮化硅(Si(3)N(4))表面,作为一种将生物分子定向固定的有效方法。利用紫外光辐照将 ω-不饱和酯接枝到 Si(3)N(4)上。水解后,通过碳二亚胺介导的活化生成表面结合的活性琥珀酰亚胺基和五氟苯基酯基。这些反应性表面用于带有胺间隔基的双环壬炔的连接,随后可在室温下进行应变促进的叠氮-炔环加成反应(SPAAC)。通过静态水接触角、X 射线光电子能谱和荧光显微镜对这种分步方法进行了表征。使用带有氟标记的叠氮化物和连接有叠氮化物的乳糖对表面结合的 SPAAC 反应进行了研究,得到了疏水性和生物活性表面,痕量的铜离子会对其产生影响。此外,还展示了使用这种无金属点击反应在 Si(3)N(4)表面进行荧光叠氮的图案化。这些结果证明了 SPAAC 作为一种通用工具,能够在极其温和的条件下(即在环境和无金属条件下),以清洁和相对快速的方式将复杂分子锚定到表面上。

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