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Functionalization of Graphene Oxide Generates a Unique Interface for Selective Serum Protein Interactions

机译:石墨烯氧化物的官能化产生可用于选择性血清蛋白质相互作用的独特界面

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摘要

Potential toxicity and risk of inducing allergy and inflammation have always been a great concern of using nanomaterials in biomedicine. In this work, we investigate the serum behaviors of graphene oxide (GO) and how such behaviors are affected by its surface modification such as PEGylation. The results show that, when incubated with human sera, unfunctionalized GO adsorbs a significant amount of serum proteins and strongly induces complement C3 cleavage (part of the complement activation cascade), generating C3a/ C3a(des-Arg), an anaphylatoxin involved in local inflammatory responses, whereas PEGylated nano-GO (nGO-PEG) exhibits dramatic reductions in both protein binding in general and complement C3 activation. Moreover, we uncover that PEGylation on GO nanosheets apparently generates an interesting nanointerface, evidenced by the acquired certain selectivity and increased binding capacities of nGO-PEG toward a few serum proteins. Further mass spectrometry analysis identifies six nGO-PEG binding proteins, four of which are immune-related factors, including C3a/C3a(des-Arg). A series of Western blot analysis demonstrate that nGO-PEG binds up to 2-fold amount of C3a/ C3a(des-Arg) than unfunctionalized GO, and can efficiently decrease the level of C3a/C3a(des-Arg) in treated sera, preventing the normal interaction of C3a with its receptor. In a proof-of-concept experiment, we demonstrate that nGO-PEG may serve to help eliminate the C3a/C3a(des-Arg) induced by other nanomaterials such as as-made GO, indicating a new strategy to modulate the immune responses evoked by one nanomaterial through the addition of another type of nanomaterial. Our results highlight the great importance of nanobio interface in regulating the biological effects of nanomaterials.
机译:诱导过敏和炎症的潜在毒性和风险始终是使用生物医学中使用纳米材料的重要关注。在这项工作中,我们研究了石墨烯氧化物(GO)的血清行为以及这些行为如何受其表面改性的影响,例如Pegymation。结果表明,当与人血清一起孵育时,未官能化的液体吸附大量血清蛋白质,并强烈地诱导补体C3裂解(部分补体激活级联),产生C3A / C3A(DES-ARG),参与当地的过敏毒素毒素炎症反应,而Pegymated Nano-Go(NGO-PEG)在一般的蛋白质结合中表现出显着的减少,并补体C3活化。此外,我们发现去纳米片上的PEG化显然产生了一个有趣的纳米面,通过所获得的某些选择性和NGO-PEG的结合容量增加了若干血清蛋白。进一步的质谱分析鉴定了六种NGO-PEG结合蛋白,其中4个是免疫相关因子,包括C3A / C3A(DES-ARG)。一系列Western印迹分析表明,NGO-PEG结合高达2倍的C3A / C3a(DES-ARG),而不是未官能化的GO,并且可以有效地降低治疗血清中C3A / C3A(DES-ARG)的水平,防止C3A与其受体的正常相互作用。在概念证据实验中,我们证明NGO-PEG可用于帮助消除由其他纳米材料诱导的C3A / C3A(DES-ARG),例如原制的,表明调节免疫应答的新策略通过添加另一种类型的纳米材料通过一种纳米材料。我们的结果突出了纳米奥互联界面在调节纳米材料的生物学效应方面的重要意义。

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  • 作者单位

    Institute of Functional Nano &

    Soft Materials (FUNSOM) Jiangsu Key Laboratory for Carbon-Based Functional Materials &

    Devices Soochow University Suzhou Jiangsu 215123 China;

    Institute of Functional Nano &

    Soft Materials (FUNSOM) Jiangsu Key Laboratory for Carbon-Based Functional Materials &

    Devices Soochow University Suzhou Jiangsu 215123 China;

    Institute of Functional Nano &

    Soft Materials (FUNSOM) Jiangsu Key Laboratory for Carbon-Based Functional Materials &

    Devices Soochow University Suzhou Jiangsu 215123 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    graphene oxide; nanobio interface; serum behavior; immune response; anaphylatoxin; C3a/C3a(des-Arg);

    机译:氧化石墨烯;纳米酰亚胺界面;血清行为;免疫反应;过敏反应;C3A / C3A(DES-ARG);

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