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Interactions between Metal Oxides and Biomolecules: from Fundamental Understanding to Applications

机译:金属氧化物和生物分子之间的相互作用:从对应用的根本理解

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摘要

Metallo-oxide (MO)-based bioinorganic nanocomposites promise unique structures, physicochemical properties, and novel biochemical functionalities, and within the past decade, investment in research on materials such as ZnO, TiO2, SiO2, and GeO2 has significantly increased. Besides traditional approaches, the synthesis, shaping, structural patterning, and postprocessing chemical functionalization of the materials surface is inspired by strategies which mimic processes in nature. Would such materials deliver new technologies? Answering this question requires the merging of historical knowledge and current research from different fields of science. Practically, we need an effective defragmentation of the research area. From our perspective, the superficial accounting of material properties, chemistry of the surfaces, and the behavior of biomolecules next to such surfaces is a problem. This is particularly of concern when we wish to bridge between technologies in vitro and biotechnologies in vivo. Further, besides the potential practical technological efficiency and advantages such materials might exhibit, we have to consider the wider long-term implications of material stability and toxicity. In this contribution, we present a critical review of recent advance in the chemistry and engineering of MO-based biocomposites, highlighting the role of interactions at the interface and the techniques by which these can be studied. At the end of the article, we outline the challenges which hamper progress in research and extrapolate to developing and promising directions including additive manufacturing and synthetic biology that could benefit from molecular level understanding of interactions occurring between inanimate (abiotic) and living (biotic) materials.
机译:基于氧化物(MO)的生物氧化物纳米复合材料可以承诺独特的结构,物理化学性质和新的生化功能,并且在过去十年内,对ZnO,TiO2,SiO2和Geo2等材料的投资显着增加。除了传统方法,材料表面的合成,成型,结构图案化和后处理化学官能化是通过模拟过程中的策略的启发。这些材料是否会提供新技术?回答这个问题需要遵守不同科学领域的历史知识和目前的研究。实际上,我们需要有效的研究区碎片整理。从我们的角度来看,表面性质的表面核算,表面化学,以及这种表面旁边的生物分子的行为是一个问题。当我们希望在体内体外和生物技术之间进行桥接时,这尤其是令人担忧的。此外,除了潜在的实用技术效率和优势,这些材料可能表现出,我们必须考虑更广泛的材料稳定性和毒性的长期影响。在这一贡献中,我们对Mo基生物复合材料的化学和工程近期提出了对近期的批判性审查,突出了界面之间的相互作用和这些技术的作用。在本文结束时,我们概述了妨碍研究和外推到开发和有希望的方向的挑战,包括添加剂制造和合成生物学,这些方法可能会受益于无生命(非生物)和生活(生物)材料之间发生的相互作用的分子水平。

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  • 来源
    《Chemical Reviews》 |2018年第22期|共76页
  • 作者单位

    Nottingham Trent Univ Sch Sci &

    Technol Interdisciplinary Biomed Res Ctr Clifton Lane Nottingham NG11 8NS England;

    Nottingham Trent Univ Sch Sci &

    Technol Interdisciplinary Biomed Res Ctr Clifton Lane Nottingham NG11 8NS England;

    Nottingham Trent Univ Sch Sci &

    Technol Interdisciplinary Biomed Res Ctr Clifton Lane Nottingham NG11 8NS England;

    Nottingham Trent Univ Sch Sci &

    Technol Interdisciplinary Biomed Res Ctr Clifton Lane Nottingham NG11 8NS England;

    Nottingham Trent Univ Sch Sci &

    Technol Interdisciplinary Biomed Res Ctr Clifton Lane Nottingham NG11 8NS England;

    Nottingham Trent Univ Sch Sci &

    Technol Interdisciplinary Biomed Res Ctr Clifton Lane Nottingham NG11 8NS England;

    Nottingham Trent Univ Sch Sci &

    Technol Interdisciplinary Biomed Res Ctr Clifton Lane Nottingham NG11 8NS England;

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  • 正文语种 eng
  • 中图分类 化学;
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