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Biomolecule-assisted green synthesis of nanostructured calcium phosphates and their biomedical applications

机译:纳米结构磷酸钙及其生物医学应用的生物分子辅助绿色合成

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摘要

Calcium phosphates (CaPs) are ubiquitous in nature and vertebrate bones and teeth, and have high biocompatibility and promising applications in various biomedical fields. Nanostructured calcium phosphates (NCaPs) are recognized as promising nanocarriers for drug/gene/protein delivery owing to their high specific surface area, pH-responsive degradability, high drug/gene/protein loading capacity and sustained release performance. In order to control the structure and surface properties of NCaPs, various biomolecules with high biocompatibility such as nucleic acids, proteins, peptides, liposomes and phosphorus-containing biomolecules are used in the synthesis of NCaPs. Moreover, biomolecules play important roles in the synthesis processes, resulting in the formation of various NCaPs with different sizes and morphologies. At room temperature, biomolecules can play the following roles: (1) acting as a biocompatible organic phase to form biomolecule/CaP hybrid nanostructured materials; (2) serving as a biotemplate for the biomimetic mineralization of NCaPs; (3) acting as a biocompatible modifier to coat the surface of NCaPs, preventing their aggregation and increasing their colloidal stability. Under heating conditions, biomolecules can (1) control the crystallization process of NCaPs by forming biomolecule/CaP nanocomposites before heating; (2) prevent the rapid and disordered growth of NCaPs by chelating with Ca2+ ions to form precursors; (3) provide the phosphorus source for the controlled synthesis of NCaPs by using phosphorus-containing biomolecules. This review focuses on the important roles of biomolecules in the synthesis of NCaPs, which are expected to guide the design and controlled synthesis of NCaPs. Moreover, we will also summarize the biomedical applications of NCaPs in nanomedicine and tissue engineering, and discuss their current research trends and future prospects.
机译:磷酸钙(盖子)在自然界和脊椎动物和牙齿中普遍存在,并且在各种生物医学领域具有高生物相容性和有前途的应用。纳米结构钙钙(NCAPS)被认为是由于其高比表面积,pH响应性降解性,高药/基因/蛋白负载能力和持续释放性能而被认为是用于药物/基因/蛋白质递送的有前途的纳米载体。为了控制NCAPS的结构和表面性质,使用具有高生物相容性的各种生物分子,例如核酸,蛋白质,肽,脂质体和含磷的生物分子在NCaps的合成中使用。此外,生物分子在合成过程中起重要作用,导致具有不同尺寸和形态的各种NCAPS形成。在室温下,生物分子可以发挥以下作用:(1)作为生物相容性有机相形成生物分子/帽杂化纳米结构材料; (2)用作NCAPS的仿生矿化的生物板; (3)作为一种生物相容性改性剂来涂覆NCAPS的表面,防止它们的聚集并增加它们的胶体稳定性。在加热条件下,生物分子可以(1)通过在加热前形成生物分子/帽纳米复合材料来控制NCAP的结晶过程; (2)通过与Ca2 +离子螯合形成前体来防止NCAPs的快速和无序生长; (3)通过使用含磷的生物分子提供用于控制NCAP的合成的磷来源。本综述重点介绍了生物分子在NCAPS合成中的重要作用,预计将指导设计和控制NCAP的合成。此外,我们还将总结NCAPS在纳米医生和组织工程中的生物医学应用,并讨论他们目前的研究趋势和未来前景。

著录项

  • 来源
    《Chemical Society Reviews》 |2019年第10期|共40页
  • 作者单位

    Chinese Acad Sci Shanghai Inst Ceram State Key Lab High Performance Ceram &

    Superfine Shanghai 200050 Peoples R China;

    Univ N Carolina Sch Pharm Chapel Hill NC 27515 USA;

    Shenzhen Univ Hlth Sci Ctr Sch Biomed Engn Guangdong Key Lab Biomed Measurements &

    Ultrasoun Shenzhen 518060 Peoples R China;

    Chinese Acad Sci Shanghai Inst Ceram State Key Lab High Performance Ceram &

    Superfine Shanghai 200050 Peoples R China;

    Univ N Carolina Sch Pharm Chapel Hill NC 27515 USA;

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

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