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石墨化碳修饰的SBA - 15介孔二氧化硅的结构特征及其与红细胞和血浆蛋白的生物相互作用。

Structural aspects of graphitic carbon modified SBA-15 mesoporous silica and biological interactions with red blood cells and plasma proteins.

作者信息

Martinez Diego S T, Damasceno João Paulo V, Franqui Lidiane S, Bettini Jefferson, Mazali Italo O, Strauss Mathias

机构信息

Brazilian Nanotechnology National Laboratory (LNNano), Brazilian Center for Research in Energy and Materials (CNPEM), Zip Code 13083-970, Campinas, São Paulo, Brazil; School of Technology, University of Campinas (UNICAMP), Limeira, São Paulo, Brazil.

Functional Materials Laboratory, Institute of Chemistry, University of Campinas (UNICAMP), Campinas, São Paulo, Brazil.

出版信息

Mater Sci Eng C Mater Biol Appl. 2017 Sep 1;78:141-150. doi: 10.1016/j.msec.2017.03.298. Epub 2017 Apr 8.

Abstract

Functional mesoporous materials have been worldwide studied for different applications. Mesoporous silicas are highlighted due to the synthetic possibilities for the preparation of such materials with different particle sizes and morphologies, and controlled pores sizes and structures. Moreover, the silica superficial silanol groups are explored in several chemical modifications, leading to functional materials with tuned functionalities and properties. In this work, an organo-functionalization and pyrolysis synthetic procedure is used to obtain graphitic carbon modified mesoporous SBA-15 silica. The carbon content was tuned during the functionalization step, and the graphitic nanodomains were formed in the pores surface and particles outer surface. Textural and small angle X-ray diffraction analysis accessed the presence of the carbon nanostructures inside the SBA-15 mesopores. Advanced microanalysis using electron energy loss spectroscopy coupled to a transmission electron microscope had confirmed the carbon distribution along the silica pores, which gives higher hydrophobicity and changed the interaction of the mesoporous material with biological systems. Finally, the influence of the surface modification with graphitic carbon species over the interaction with human red blood cells (hemolysis) and human blood plasma (protein corona formation) was elucidated for the very first time for this kind of functional materials. It was observed that the graphitic carbon species considerably reduced the hemolytic effect of the silica particles, and was responsible for modulating the loading and composition of the hard corona plasma proteins. This work deepness the fundamental knowledge on the interaction between such nanomaterials and biological systems, one step further the use of these modified silicas in biomedical applications.

摘要

功能性介孔材料已在全球范围内针对不同应用进行了研究。介孔二氧化硅备受关注,因为其具备合成各种不同粒径和形态、可控孔径和结构的此类材料的可能性。此外,二氧化硅表面的硅醇基团可用于多种化学修饰,从而制备出具有特定功能和性质的功能材料。在本工作中,采用一种有机功能化和热解合成程序来制备石墨化碳修饰的介孔SBA-15二氧化硅。在功能化步骤中调节碳含量,在孔表面和颗粒外表面形成石墨纳米域。通过结构和小角X射线衍射分析确定SBA-15介孔内部存在碳纳米结构。使用与透射电子显微镜联用的电子能量损失谱进行的先进微分析证实了碳沿二氧化硅孔的分布,这赋予了更高的疏水性,并改变了介孔材料与生物系统的相互作用。最后,首次阐明了用石墨碳物种进行表面修饰对与人类红细胞(溶血)和人类血浆(蛋白质冠形成)相互作用的影响。结果表明,石墨碳物种显著降低了二氧化硅颗粒的溶血作用,并负责调节硬冠血浆蛋白的负载和组成。这项工作加深了对此类纳米材料与生物系统之间相互作用的基础知识的了解,进一步推动了这些修饰二氧化硅在生物医学应用中的使用。

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