核壳结构疗法

Pub Date : 2021-09-27 DOI:10.1142/s179398442141004x
Q. Guan, Min Wang
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引用次数: 1

摘要

癌症威胁着人类的生命和福祉。全世界每年报告数百万新诊断的癌症病例和由癌症引起的大量死亡。早期发现和有效治疗是降低癌症死亡率的关键,这可以通过使用“治疗学”来实现。治疗学是一组混合纳米颗粒,通过单个纳米结构在癌症患者中提供诊断和治疗功能。特别是,核-壳结构治疗学显示出独特的物理化学特性,使它们能够促进分子/细胞靶向,生物成像和药物传递功能。因此,本文旨在介绍和讨论核壳结构治疗学的最新研究进展。具体来说,它侧重于由金属、二氧化硅和聚合物制成的核壳结构治疗。本文就核-壳结构治疗学的合成和结构等方面进行了综述。这篇综述有助于读者对核壳结构治疗学的设计和制造有一个很好的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Core-Shell Structured Theranotics
Cancer threatens the life and well-being of human beings. Millions of newly diagnosed cancer cases and a large number of deaths caused by cancer are reported each year in the world. Early detection and effective treatment are key to reduce cancer mortality, which can be potentially realized by using “theranostics”. Theranostics are a group of hybrid nanoparticles that perform in cancer patients to provide both diagnostic and therapeutic functions through a single nano-sized structure. In particular, core-shell structured theranostics have shown unique physicochemical properties, allowing them to facilitate molecular/cell targeting, bio-imaging, and drug delivery functions. This review, therefore, aims to present and discuss the recent development of research on core-shell structured theranostics. Specifically, it focuses on core-shell structured theranostics made of metals, silica and polymers. Different aspects, such as synthesis and structure, of core-shell structured theranostics are discussed in this review. This review helps readers to have a good understanding of the design and fabrication of core-shell structured theranostics.
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