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Lactoferrin adsorption onto silver nanoparticle interface: Implications of corona on protein conformation, nanoparticle cytotoxicity and the formulation adjuvanticity

机译:Lactoferrin吸附到银纳米粒子界面上:Corona对蛋白质构象的影响,纳米粒子细胞毒性和配方辅助性

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摘要

Nanoparticle, in biological milieu, tends to bind a variety of biomolecules, especially protein, forming an interfacial corona that provides biological identity to nanoparticle. Understanding the protein corona is likely to provide insight in nanoparticle bio-distribution, nanoparticle-mediated cytotoxicity and potential nanoparticle-mediated applications. Thus, the bovine lactoferrin (BLf) corona onto silver nanoparticle (AgNP) interface is studied with reference to BLf conformational stability and the resulting complex's cytotoxic and adjuvant properties. The adsorption of BLf onto AgNP interface is reflected by change in the particle-specific surface plasmon resonance (SPR). Additionally, the molecular dynamics (MD) simulation deciphered the binding energy and molecular recognition in BLf and AgNP complex. Protein adsorption onto the interface is majorly driven by van der Waals interactions and hydrogen bonds, without any significant effect on the protein conformation and stability. BLf retains bacteriostatic property in the conjugate, and the presence of BLf corona ameliorated the particle-mediated cytotoxicity, despite the enhanced cellular internalization. Additionally, BLf adsorbed AgNP formulation shows better adjuvanticity than AgNP only or BLf only formulation, as demonstrated using Bacillus anthracis protective antigen protein, in vivo.
机译:在生物环境中,纳米粒子倾向于结合各种生物分子,尤其是蛋白质,形成为纳米颗粒提供生物学标识的界面电晕。理解蛋白质电晕可能会在纳米颗粒生物分布,纳米粒子介导的细胞毒性和潜在的纳米粒子介导的应用中提供见解。因此,通过参考BLF构象稳定性和所得复合的细胞毒性和佐剂性能研究了牛乳铁蛋白(BLF)电晕(AgNP)界面上。 BLF对AGNP界面的吸附被粒子特异性表面等离子体共振(SPR)的变化反射。另外,分子动力学(MD)模拟破译BLF和AgNP复合物中的结合能量和分子识别。蛋白质吸附在界面上主要由Van der WaaS相互作用和氢键驱动,而没有对蛋白质构象和稳定性的任何显着影响。 BLF保留在缀合物中的抑菌性质,并且尽管细胞内化增强,但BLF电晕的存在改善了颗粒介导的细胞毒性。另外,BLF吸附的AGNP制剂显示出的佐性,而不是仅使用芽孢杆菌保护抗原蛋白在体内所证明的辅助性或仅用于制剂。

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