An Integrative Proteomic/Lipidomic Analysis of the Gold Nanoparticle Biocorona in Healthy and Obese Conditions.

Q2 Health Professions Applied In Vitro Toxicology Pub Date : 2019-09-01 Epub Date: 2019-09-17 DOI:10.1089/aivt.2019.0005
Lisa M Kobos, Saeed Alqatani, Christina R Ferreira, Uma K Aryal, Victoria Hedrick, Tiago J P Sobreira, Jonathan H Shannahan
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引用次数: 16

Abstract

Introduction: When nanoparticles (NPs) enter a physiological environment, a coating of biomolecules or biocorona (BC) forms on the surface. Formation of the NP-BC is dependent on NP properties, the physiological environment, and time. The BC influences NP properties and biological interactions such as cellular internalization, immune responses, biodistribution, and others, leading to pharmacological and toxicological consequences. To date, examination of the NP-BC has focused primarily on protein components and healthy conditions. Therefore, we evaluated the protein and lipid content of BCs that formed on physicochemically distinct gold nanoparticles (AuNPs) under healthy and obese conditions. A comprehensive understanding of the NP-BC is necessary for the translation of in vitro toxicity assessments to clinical applications. Materials and Methods: AuNPs with two coatings (poly-N-vinylpyrrolidone [PVP] or citrate) and diameters (20 or 100 nm) were incubated in pooled human serum, and an integrated proteomic/lipidomic approach was used to evaluate BC composition. Macrophages were utilized to evaluate differential immune responses due to variations in the AuNP-BC. Results: AuNPs form distinct BCs based on physicochemical properties and the surrounding environment, with the obese BC containing more proteins and fewer lipids than the healthy BC. Differential macrophage inflammatory responses were observed based on AuNP properties and BC composition. Discussion and Conclusion: Overall, these findings demonstrate that AuNP size and coating, as well as physiological environment, influence the protein and lipid composition of the BC, which impacts cellular responses following exposure. These findings demonstrate that incorporation of BCs representing distinct physiological conditions may enhance the translatability of nanosafety in vitro studies.

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健康和肥胖条件下金纳米粒子生物冠的蛋白质组学/脂质组学综合分析
当纳米颗粒(NPs)进入生理环境时,在表面形成一层生物分子或生物冕(BC)涂层。NP- bc的形成取决于NP的性质、生理环境和时间。BC影响NP特性和生物相互作用,如细胞内化、免疫反应、生物分布等,导致药理学和毒理学后果。迄今为止,NP-BC的检查主要集中在蛋白质成分和健康状况上。因此,我们评估了健康和肥胖条件下在物理化学上不同的金纳米颗粒(AuNPs)上形成的bc的蛋白质和脂质含量。全面了解NP-BC对于将体外毒性评估转化为临床应用是必要的。材料与方法:将直径为20 nm或100 nm的两种涂层(聚n -乙烯基吡咯烷酮[PVP]或柠檬酸盐)的AuNPs放在混合的人血清中孵育,并采用蛋白质组学/脂质组学综合方法评估BC的组成。巨噬细胞被用来评估由于AuNP-BC变化而引起的差异免疫反应。结果:AuNPs根据物理化学性质和周围环境形成不同的BC,肥胖的BC比健康的BC含有更多的蛋白质和更少的脂质。根据AuNP性质和BC组成观察巨噬细胞的不同炎症反应。讨论和结论:总的来说,这些发现表明,AuNP的大小和包衣以及生理环境影响BC的蛋白质和脂质组成,从而影响暴露后的细胞反应。这些发现表明,结合代表不同生理条件的bc可能会提高纳米安全性体外研究的可翻译性。
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来源期刊
Applied In Vitro Toxicology
Applied In Vitro Toxicology Health Professions-Medical Laboratory Technology
CiteScore
2.70
自引率
0.00%
发文量
13
期刊介绍: Applied In Vitro Toxicology is a peer-reviewed journal providing the latest research on the application of alternative in vitro testing methods for predicting adverse effects in the pharmaceutical, chemical, and personal care industries. This Journal aims to address important issues facing the various chemical industries, including regulatory requirements; the reduction, refinement, and replacement of animal testing; new screening methods; evaluation of new cell and tissue models; and the most appropriate methods for assessing safety and satisfying regulatory demands. The Journal also delivers the latest views and opinions of developers of new models, end users of the models, academic laboratories that are inventing new tools, and regulatory agencies in the United States, Europe, Latin America, Australia and Asia. Applied In Vitro Toxicology is the journal that scientists involved with hazard identification and risk assessment will read to understand how new and existing in vitro methods are applied, and the questions for which these models provide answers. Applied In Vitro Toxicology coverage includes: -Applied in vitro toxicology industry standards -New technologies developed for applied in vitro toxicology -Data acquisition, cleaning, distribution, and best practices -Data protection, privacy, and policy -Business interests from research to product -The changing role of in vitro toxicology -Visualization and design principles of applied in vitro toxicology infrastructures -Physical interfaces and robotics -Opportunities around applied in vitro toxicology
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