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Hyaluronic Acid Coated Chitosan Nanoparticles Reduced the Immunogenicity of the Formed Protein Corona

机译:透明质酸涂层的壳聚糖纳米颗粒降低了形成的蛋白质电晕的免疫原性。

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摘要

Studying the interactions of nanoparticles (NPs) with serum proteins is necessary for the rational development of nanocarriers. Optimum surface chemistry is a key consideration to modulate the formation of the serum protein corona (PC) and the resultant immune response. We investigated the constituent of the PC formed by hyaluronic acid-coated chitosan NPs (HA-CS NPs). Non-decorated chitosan NPs (CS NPs) and alginate-coated chitosan NPs (Alg-CS NPs) were utilized as controls. Results show that HA surface modifications significantly reduced protein adsorption relative to controls. Gene Ontology analysis demonstrates that HA-CS NPs were the least immunogenic nanocarriers. Indeed, less inflammatory proteins were adsorbed onto HA-CS NPs as opposed to CS and Alg-CS NPs. Interestingly, HA-CS NPs differentially adsorbed two unique anti-inflammatory proteins (ITIH4 and AGP), which were absent from the PC of both controls. On the other hand, CS and Alg-CS NPs selectively adsorbed a proinflammatory protein (Clusterin) that was not found on the surfaces of HA-CS NPs. While further studies are needed to investigate abilities of the PCs of only ITIH4 and AGP to modulate the interaction of NPs with the host immune system, our results suggest that this proof-of-concept could potentially be utilized to reduce the immunogenicity of a wide range of nanomaterials.
机译:研究纳米颗粒(NPs)与血清蛋白的相互作用对于合理开发纳米载体是必要的。最佳表面化学是调节血清蛋白电晕(PC)的形成和所产生的免疫反应的关键考虑因素。我们调查了由透明质酸涂层的壳聚糖NP(HA-CS NP)形成的PC的组成。将未装饰的壳聚糖NP(CS NP)和藻酸盐包被的壳聚糖NP(Alg-CS NP)用作对照。结果表明,HA表面修饰相对于对照显着降低了蛋白质吸附。基因本体论分析表明,HA-CS NPs是免疫原性最低的纳米载体。实际上,与CS和Alg-CS NP相反,较少的炎性蛋白被吸附到HA-CS NP上。有趣的是,HA-CS NPs差异吸附了两种独特的抗炎蛋白(ITIH4和AGP),这两个对照组的PC均不存在。另一方面,CS和Alg-CS NPs选择性吸附在HA-CS NPs表面未发现的促炎蛋白(簇蛋白)。尽管需要进一步的研究来调查仅ITIH4和AGP的PC调节NP与宿主免疫系统相互作用的能力,但我们的结果表明,这种概念验证可潜在地用于降低大范围的免疫原性。纳米材料。

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