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Surface charge influences protein corona, cell uptake and biological effects of carbon dots

机译:表面电荷影响蛋白质电晕、细胞摄取和碳点的生物效应

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Carbon dots are emerging nanoparticles (NPs) with tremendous applications, especially in the biomedical field. Herein is reported the first quantitative proteomic analysis of the protein corona formed on CDs with different surface charge properties. Four CDs were synthesized from citric acid and various amine group-containing passivation reagents, resulting in cationic NPs with increasing zeta (ζ)-potential and density of positive charges. After CD contact with serum, we show that protein corona identity is influenced by CD surface charge properties, which in turn impacts CD uptake and viability loss in macrophages. In particular, CDs with high ζ-potential (>+30 mV) and charge density (>2 μmol mg−1) are the most highly internalized, and their cell uptake is strongly correlated with a corona enriched in vitronectin, fibulin, fetuin, adiponectin and alpha-glycoprotein. On the contrary, CDs with a lower ζ-potential (+11 mV) and charge density (0.01 μmol mg−1) are poorly internalized, while having a corona with a very different protein signature characterized by a high abundance of apolipoproteins (APOA1, APOB and APOC), albumin and hemoglobin. These data illustrate how corona characterization may contribute to a better understanding of CD cellular fate and biological effects, and provide useful information for the development of CDs for biomedical applications.
机译:碳点是新兴的纳米颗粒(NPs)巨大的应用,特别是在生物医学领域。蛋白质的定量蛋白质组学分析电晕cd与不同表面上形成的电荷属性。柠檬酸和各种胺包含钝化试剂,导致阳离子NPs随着泽塔(ζ)的可能性和密度正电荷。表明蛋白质电晕身份的影响通过CD表面电荷属性,反过来影响CD吸收和生存能力损失巨噬细胞。ζ可能性(> + 30 mV)和电荷密度(> 2μ摩尔mg−1)是最高度内化,和他们的细胞吸收与电晕有着密不可分的关系富含vitronectin fibulin,胎球蛋白,脂联素和alpha-glycoprotein。相反,cdζ较低可能性(+ 11 mV)和电荷密度(0.01μ摩尔毫克−1)差内化,而和一个日冕不同的蛋白质签名的特征高的载脂蛋白(APOA1、飞机观测和APOC),白蛋白和血红蛋白。说明电晕特性有助于更好的理解CD细胞命运和生物效应,并提供有用的信息发展的cd生物医学应用。

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