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Poly(ethylene glycol) carbodiimide coupling reagents for the biological and chemical functionalization of water-soluble nanoparticles

机译:聚(乙二醇)碳二亚胺偶联剂用于水溶性纳米粒子的生物和化学功能化

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摘要

Many types of metal and semiconductor nanoparticles (NPs) are created via colloidal synthetic methods, which renders the materials hydrophobic. Such NPs are dispersed in water through surface organic cap exchange or by amphiphilic polymer encapsulation; often, water solubility is achieved via the presence of carboxylic acid functionalities on the solubilizing agents. While this renders the material water-soluble, subsequent functionalization of the systems can be very difficult. The most obvious method to derivatize carboxylic acid coated NPs is to conjugate chemical and biological moieties containing amine functionality to the NP surface using the water-soluble activator 1-ethyl-3-(3- dimethylaminopropyl) carbodiimide hydrochloride (EDC). However, the excess use of this reagent appears to cause complete and permanent precipitation of the NPs. We report here our method on the chemical and biological functionalization of a variety of semiconductor nanoparticle systems using novel carbodiimide reagents. These reagents do not cause precipitation even at high loading levels and can be used to efficiently functionalize carboxylic acid coated NPs.
机译:通过胶体合成方法可以创建许多类型的金属和半导体纳米粒子(NP),从而使材料具有疏水性。这类NP通过表面有机帽交换或两亲性聚合物包封分散在水中。通常,水溶性是通过在增溶剂上存在羧酸官能团来实现的。尽管这使材料变得水溶性,但是系统的后续功能化可能非常困难。使羧酸包覆的NP衍生化的最明显方法是使用水溶性活化剂1-乙基-3-(3-二甲基氨基丙基)碳二亚胺盐酸盐(EDC)将含有胺官能团的化学和生物部分缀合到NP表面。但是,过量使用此试剂似乎会导致NP的完全和永久沉淀。我们在这里报告了使用新型碳二亚胺试剂对各种半导体纳米粒子系统进行化学和生物学功能化的方法。这些试剂即使在高负载量下也不会引起沉淀,可用于有效地官能化被羧酸包覆的NP。

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