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Albumin-coated SPIONs: an experimental and theoretical evaluation of protein conformation, binding affinity and competition with serum proteins

机译:Albumin-coated SPIONs:一个实验和蛋白质构象的理论评价,亲和力、竞争与血清蛋白质

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摘要

The variety of nanoparticles (NPs) used in biological applications is increasing and the study of their interaction with biological media is becoming more important. Proteins are commonly the first biomolecules that NPs encounter when they interact with biological systems either in vitro or in vivo. Among NPs, super-paramagnetic iron oxide nanoparticles (SPIONs) show great promise for medicine. In this work, we study in detail the formation, composition, and structure of a monolayer of bovine serum albumin (BSA) on SPIONs. We determine, both by molecular simulations and experimentally, that ten molecules of BSA form a monolayer around the outside of the SPIONs and their binding strength to the SPIONs is about 3.5 x 10(-4) M, ten times higher than the adsorption of fetal bovine serum (FBS) on the same SPIONs. We elucidate a strong electrostatic interaction between BSA and the SPIONs, although the secondary structure of the protein is not affected. We present data that supports the strong binding of the BSA monolayer on SPIONs and the properties of the BSA layer as a protein-resistant coating. We believe that a complete understanding of the behavior and morphology of BSA-SPIONs and how the protein interacts with SPIONs is crucial for improving NP surface design and expanding the potential applications of SPIONs in nanomedicine.
机译:中使用的各种各样的纳米颗粒(NPs)增加和生物应用研究与生物的互动媒体正变得越来越重要。NPs时遇到的第一个生物分子他们与生物系统相互作用体外或体内。氧化铁纳米颗粒(SPIONs)好了医学的承诺。详细的形成、组成和结构单层的牛血清白蛋白(BSA)SPIONs。模拟和实验,十BSA分子周围形成一个单层外的SPIONs及其粘结强度SPIONs大约是3.5 x 10(4)米,十次高于胎牛血清的吸附(的边后卫)SPIONs相同。BSA和之间的静电相互作用SPIONs,尽管的二级结构蛋白质不受影响。支持强大的BSA的结合单层SPIONs和BSA的属性层protein-resistant涂层。完成对行为的理解,形态学的BSA-SPIONs以及蛋白质与SPIONs改善NP是至关重要的表面设计和扩大的潜力SPIONs在纳米药物的应用。

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