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首页> 外文期刊>Journal of Colloid and Interface Science >Hemoglobin bioconjugates with surface-protected gold nanoparticles in aqueous media: The stability depends on solution pH and protein properties
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Hemoglobin bioconjugates with surface-protected gold nanoparticles in aqueous media: The stability depends on solution pH and protein properties

机译:血红蛋白生物缀合物在水性介质中具有表面保护的金纳米粒子:稳定性取决于溶液pH和蛋白质性质

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The identification of the factors that dictate the formation and physicochemical properties of protein-nanomaterial bioconjugates are important to understand their behavior in biological systems. The present work deals with the formation and characterization of bioconjugates made of the protein hemoglobin (Hb) and gold nanoparticles (AuNP) capped with three different molecular layers (citrate anions (c), 6-mercaptopurine (MP) and omega-mercaptoundecanoic acid (MUA)). The main focus is on the behavior of the bioconjugates in aqueous buffered solutions in a wide pH range. The stability of the bioconjugates have been studied by UV visible spectroscopy by following the changes in the localized surface resonance plasmon band (LSRP), Dynamic light scattering (DLS) and zeta-potential pH titrations. It has been found that they are stable in neutral and alkaline solutions and, at pH lower than the protein isoelectric point, aggregation takes place. Although the surface chemical properties of the AuNPs confer different properties in respect to colloidal stability, once the bioconjugates are formed their properties are dictated by the Hb protein corona. The protein secondary structure, as analyzed by Attenuated total reflectance infrared (ATR-IR) spectroscopy, seems to be maintained under the conditions of colloidal stability but some small changes in protein conformation take place when the bioconjugates aggregate. These findings highlight the importance to keep the protein structure upon interaction with nanomaterials to drive the stability of the bioconjugates. (C) 2017 Elsevier Inc. All rights reserved.
机译:确定蛋白质 - 纳米材料生物缀合物的形成和物理化学性质的因素的鉴定对于了解其在生物系统中的行为是重要的。本工作涉及由蛋白质血红蛋白(HB)和用三种不同分子层(柠檬酸盐阴离子(C),6-巯基嘌呤(MP)和Omega-巯羟基己酸( mua))。主要重点是在宽pH范围内的水缓冲溶液中的生物缀合物的行为。通过uV可见光谱通过局部表面谐振等离子体带(LSRP),动态光散射(DLS)和Zeta-潜在的pH滴定的变化来研究生物缀合物的稳定性。已经发现它们在中性和碱性溶液中稳定,并且在pH下低于蛋白质等电点,进行聚集。尽管剖腹产物的表面化学性质在形成生物缀合物的情况下赋予胶体稳定性不同的性质,但是通过Hb蛋白质电晕决定它们的性质。通过减弱总反射率红外(ATR-IR)光谱分析的分析蛋白二级结构似乎在胶体稳定性的条件下保持,但是当生物缀合物聚集体时,蛋白质构象的一些小变化发生。这些发现突出了保持蛋白质结构在与纳米材料相互作用时保持蛋白质结构以驱动生物缀合物的稳定性的重要性。 (c)2017年Elsevier Inc.保留所有权利。

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