College of Chemistry and Chemical Engineering, Southwest Petroleum University, Chengdu 610500, People's Republic of China; State Key Laboratory of Oil & Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu 610500, People's Republic of China.
College of Chemistry and Chemical Engineering, Southwest Petroleum University, Chengdu 610500, People's Republic of China.
Acta Biomater. 2018 Jul 1;74:36-55. doi: 10.1016/j.actbio.2018.05.004. Epub 2018 May 4.
According to recent research, nanotechnology based on quantum dots (QDs) has been widely applied in the field of bioimaging, drug delivery, and drug analysis. Therefore, it has become one of the major forces driving basic and applied research. The application of nanotechnology in bioimaging has been of concern. Through in vitro labeling, it was found that luminescent QDs possess many properties such as narrow emission, broad UV excitation, bright fluorescence, and high photostability. The QDs also show great potential in whole-body imaging. The QDs can be combined with biomolecules, and hence, they can be used for targeted drug delivery and diagnosis. The characteristics of QDs make them useful for application in pharmacy and pharmacology. This review focuses on various applications of QDs, especially in imaging, drug delivery, pharmaceutical analysis, photothermal therapy, biochips, and targeted surgery. Finally, conclusions are made by providing some critical challenges and a perspective of how this field can be expected to develop in the future.
Quantum dots (QDs) is an emerging field of interdisciplinary subject that involves physics, chemistry, materialogy, biology, medicine, and so on. In addition, nanotechnology based on QDs has been applied in depth in biochemistry and biomedicine. Some forward-looking fields emphatically reflected in some extremely vital areas that possess inspiring potential applicable prospects, such as immunoassay, DNA analysis, biological monitoring, drug discovery, in vitro labelling, in vivo imaging, and tumor target are closely connected to human life and health and has been the top and forefront in science and technology to date. Furthermore, this review has not only involved the traditional biochemical detection but also particularly emphasized its potential applications in life science and biomedicine.
根据最近的研究,基于量子点(QD)的纳米技术已广泛应用于生物成像、药物输送和药物分析领域。因此,它已成为推动基础和应用研究的主要力量之一。纳米技术在生物成像中的应用受到关注。通过体外标记,发现发光 QD 具有许多特性,例如窄发射、宽 UV 激发、明亮的荧光和高光稳定性。QD 还在全身成像中显示出巨大的潜力。QD 可以与生物分子结合,因此可以用于靶向药物输送和诊断。QD 的特性使其在药学和药理学中有很好的应用。本综述重点介绍了 QD 的各种应用,特别是在成像、药物输送、药物分析、光热治疗、生物芯片和靶向手术方面的应用。最后,通过提供一些关键挑战和对该领域未来发展的展望,得出了结论。
量子点(QD)是一个新兴的跨学科领域,涉及物理、化学、材料学、生物学、医学等。此外,基于 QD 的纳米技术已在生物化学和生物医学中得到深入应用。一些前瞻性领域在一些极其重要的领域中得到了强调,这些领域具有令人鼓舞的潜在应用前景,如免疫测定、DNA 分析、生物监测、药物发现、体外标记、体内成像和肿瘤靶向等,这些领域与人类的生命和健康密切相关,是迄今为止科学技术的前沿和热点。此外,本综述不仅涉及传统的生化检测,还特别强调了其在生命科学和生物医学中的潜在应用。