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Delivering quantum dots to cells: bioconjugated quantum dots for targeted and nonspecific extracellular and intracellular imaging

机译:向细胞传递量子点:生物共轭量子点,用于靶向和非特异性细胞外和细胞内成像

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摘要

Bioconjugated nanomaterials offer endless opportunities to advance both nanobiotechnology and biomedical technology. In this regard, semiconductor nanoparticles, also called quantum dots, are of particular interest for multimodal, multifunctional and multiplexed imaging of biomolecules, cells, tissues and animals. The unique optical properties, such as size-dependent tunable absorption and emission in the visible and NIR regions, narrow emission and broad absorption bands, high photoluminescence quantum yields, large one- and multi-photon absorption cross-sections, and exceptional photostability are the advantages of quantum dots. Multimodal imaging probes are developed by interfacing the unique optical properties of quantum dots with magnetic or radioactive materials. Besides, crystalline structure of quantum dots adds scope for high-contrast X-ray and TEM imaging. Yet another unique feature of a quantum dot is its spacious and flexible surface which is promising to integrate multiple ligands and antibodies and construct multi-functional probes for bioimaging. In this critical review, we will summarize recent advancements in the preparation of biocompatible quantum dots, bioconjugation of quantum dots, and applications of quantum dots and their bioconjugates for targeted and nonspecific imaging of extracellular and intracellular proteins, organelles and functions (181 references).
机译:生物共轭纳米材料为推动纳米生物技术和生物医学技术的发展提供了无限的机会。在这方面,半导体纳米颗粒,也称为量子点,对于生物分子,细胞,组织和动物的多峰,多功能和多重成像特别感兴趣。独特的光学特性包括可见光和近红外区域中取决于尺寸的可调吸收和发射,窄发射和宽吸收带,高光致发光量子产率,较大的单光子和多光子吸收截面以及出色的光稳定性。量子点的优点。多峰成像探头是通过将量子点的独特光学特性与磁性或放射性材料相连接而开发的。此外,量子点的晶体结构增加了高对比度X射线和TEM成像的范围。量子点的另一个独特特征是其宽敞而灵活的表面,有望整合多种配体和抗体并构建用于生物成像的多功能探针。在本次重要综述中,我们将总结生物相容性量子点的制备,量子点的生物缀合以及量子点及其生物缀合物在细胞外和细胞内蛋白,细胞器和功能的靶向和非特异性成像中的应用方面的最新进展(181篇参考文献)。

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