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Quantum Dot-Based Nanotools for Bioimaging, Diagnostics, and Drug Delivery

机译:基于量子点的纳米工具,用于生物成像,诊断和药物输送

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摘要

Quantum dots (QDs) are highly fluorescent nanocrystals with advanced photophysical and spectral properties: high brightness and stability against photobleaching accompanied by broad excitation and narrow emission spectra. Water-soluble QDs functionalized with biomolecules, such as proteins, peptides, antibodies, and drugs, are used for biomedical applications. The advantages of QD-based approaches to immuno-histochemical analysis, single-molecule tracking, and in vivo imaging (over traditional methods with organic dyes and fluorescent proteins) are explained. The unique spectral properties of QDs offer opportunities for designing systems for multiplexed analysis by multicolor imaging for the simultaneous detection of multiple targets. Conjugation of drug molecules with QDs or their incorporation into QD-based drug-delivery particles makes it possible to monitor real-time drug tracking and carry out image-guided therapy. Because of the tunability of their photophysical properties, QDs emitting in the near-infrared have become an attractive tool for deep-tissue mono-and multiphoton in vivo imaging. We review recent achievements in QD applications for bioimaging, targeting, and drug delivery, as well as challenges related to their toxicity and non-biodegradability. Key and perspectives for further development of advanced QD-based nanotools are addressed.
机译:量子点(QD)是具有先进的光物理和光谱特性的高荧光纳米晶体:高亮度和抗光漂白稳定性,并具有宽激发和窄发射光谱。用生物分子(例如蛋白质,肽,抗体和药物)功能化的水溶性QD用于生物医学应用。解释了基于QD的方法在免疫组织化学分析,单分子跟踪和体内成像方面的优势(相对于使用有机染料和荧光蛋白的传统方法而言)。量子点的独特光谱特性为设计系统提供了机会,该系统可以通过多色成像同时检测多个目标进行多路分析。药物分子与QD结合或将其掺入基于QD的药物递送颗粒中,可以监控实时药物跟踪并进行图像引导疗法。由于其光物理特性的可调谐性,近红外发射的QD已成为深组织单光子和多光子体内成像的有吸引力的工具。我们回顾了QD在生物成像,靶向和药物递送方面的最新应用,以及与它们的毒性和不可生物降解性相关的挑战。讨论了进一步开发基于QD的先进纳米工具的关键和观点。

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