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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Biomineralization of gold nanoparticles by lysozyme and cytochrome c and their applications in protein film formation
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Biomineralization of gold nanoparticles by lysozyme and cytochrome c and their applications in protein film formation

机译:溶菌酶和细胞色素c对纳米金的生物矿化作用及其在蛋白质膜形成中的应用。

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Lysozyme (Lys) and cytochrome c (Cyc,c) proteins were used as mild reducing and stabilizing agents to synthesize gold nanoparticles (NPs) at precisely 40 and 80 °C. All reactions were monitored simultaneously by UV-visible measurements to determine changes in the nature of the protein during the course of reaction. The synthesis of Au NPs caused the simultaneous denaturation of protein due to the formation of bioconjugate NPs, and the denaturation temperature decreased with the number of NPs. Lys entrapped NPs in a typical gel state, and Cyc,c carried them on well-defined micelles at 80 °C or in the form of long fibrils or strands at 40 °C. The shape, size, and arrangement of bioconjugate NPs were characterized by atomic force microscopy and transmission electron microscopy measurements. Purified bioconjugate NPs were further used in zein protein film formation. The resulting films were characterized by photophysical and mechanical measurements. The induction of bioconjugate NPs made protein films isotropic and relatively more brittle (with a greater effect for Cyc,c than for Lys conjugate NPs) than in their absence and was considered to be well suited for biomedical applications.
机译:溶菌酶(Lys)和细胞色素c(Cyc,c)蛋白用作温和的还原剂和稳定剂,可在40和80°C下精确合成金纳米颗粒(NPs)。通过UV-可见的测量同时监测所有反应,以确定反应过程中蛋白质性质的变化。 Au NPs的合成由于生物共轭NPs的形成而引起蛋白质的同时变性,并且变性温度随NPs数量的增加而降低。 Lys包裹的NPs处于典型的凝胶状态,Cyc,c在80°C时将它们携带在明确定义的胶束上,或在40°C时以长纤维或股状形式携带。通过原子力显微镜和透射电子显微镜测量来表征生物共轭NP的形状,大小和排列。纯化的生物缀合物NP进一步用于玉米醇溶蛋白蛋白膜的形成。通过光物理和机械测量来表征所得膜。生物共轭NPs的诱导使蛋白质膜各向同性,并且比不存在时具有更大的脆性(对Cyc,c的作用比对Lys共轭NPs的作用更大),被认为非常适合生物医学应用。

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