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首页> 外文期刊>Bulletin of Japan Society of Coordination Chemistry >Surface Modification of Coordination Polymers with Biomolecules for Cellular Uptake
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Surface Modification of Coordination Polymers with Biomolecules for Cellular Uptake

机译:配位聚合物与生物分子对细胞吸收的表面改性

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Coordination polymers (CPs) or metal-organic frameworks (MOFs) are attractive porous materials because of their potential applications such as molecular storage, separation, heterogeneous catalysis, chemical sensing and others. Recently, nano-sized MOFs have been studied as drug delivery vehicles and biomedical imaging agents. Despite the growing interest on MOFs in the biological field, their instability and poor biocompatibility restrict their application to biomaterials. In order to improve the stability and to provide biocompatibility, surface modification of MOFs has been advanced by using a thin silica shell, hydrophilic organic polymers (PEG and PVP) and biomolecules. In this topic, I focus on the recent researches on the surface modification of MOF nanoparticles with biomolecules such as nucleic acid, lipid bilayer and protein. The MOF nanoparticles covered with biomolecules exhibit increased stability under physiological condition, and enhanced cellular uptake compared with unmodified MOF nanoparticles. These results clearly indicate that biomolecule conjugation to MOFs is a useful strategy for creating novel biomaterials.
机译:配位聚合物(CP)或金属有机骨架(MOF)是有吸引力的多孔材料,因为它们的潜在应用包括分子存储,分离,多相催化,化学传感等。近来,已经研究了纳米MOF作为药物递送载体和生物医学成像剂。尽管在生物领域对MOF的兴趣日益浓厚,但它们的不稳定性和较差的生物相容性限制了它们在生物材料中的应用。为了提高稳定性并提供生物相容性,MOF的表面改性已通过使用薄硅胶壳,亲水性有机聚合物(PEG和PVP)和生物分子来进行。在本主题中,我将重点关注利用生物分子(例如核酸,脂质双层和蛋白质)对MOF纳米颗粒进行表面修饰的最新研究。与未修饰的MOF纳米粒子相比,被生物分子覆盖的MOF纳米粒子在生理条件下显示出更高的稳定性,并增强了细胞摄取。这些结果清楚地表明,生物分子与MOF的结合是创建新型生物材料的有用策略。

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