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Cytocompatible and multifunctional polymeric nanoparticles for transportation of bioactive molecules into and within cells

机译:细胞相容性和多功能聚合物纳米颗粒用于将生物活性分子转运到细胞内和细胞内

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摘要

Multifunctional polymeric nanoparticles are materials with great potential for a wide range of biomedical applications. For progression in this area of research, unfavorable interactions of these nanoparticles with proteins and cells must be avoided in biological environments, for example, through treatment of the nanoparticle surfaces. Construction of an artificial cell membrane structure based on polymers bearing the zwitterionic phosphorylcholine group can prevent biological reactions at the surface effectively. In addition, certain bioactive molecules can be immobilized on the surface of the polymer to generate enough affinity to capture target biomolecules. Furthermore, entrapment of inorganic nanoparticles inside polymeric matrices enhances the nanoparticle functionality significantly. This review summarizes the preparation and characterization of cytocompatible and multifunctional polymeric nanoparticles; it analyzes the efficiency of their fluorescence function, the nature of the artificial cell membrane structure, and their performance as in-cell devices; and finally, it evaluates both their chemical reactivity and effects in cells.
机译:多功能聚合物纳米颗粒是具有广泛生物医学应用潜力的材料。为了在该研究领域中取得进展,必须避免在生物环境中例如通过对纳米粒子表面的处理来避免这些纳米粒子与蛋白质和细胞的不利相互作用。基于带有两性离子磷酸胆碱基团的聚合物的人工细胞膜结构的构建可以有效地防止表面的生物反应。此外,某些生物活性分子可以固定在聚合物表面上,以产生足够的亲和力来捕获目标生物分子。此外,将无机纳米颗粒截留在聚合物基质中显着增强了纳米颗粒的功能性。这篇综述总结了细胞相容性和多功能聚合物纳米颗粒的制备和表征。它分析了其荧光功能的效率,人工细胞膜结构的性质以及它们在细胞内的性能。最后,它评估了它们的化学反应性和对细胞的影响。

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