Ma Qiang, Wang Chao, Su Xingguang
Department of Analytical Chemistry, College of Chemistry, Jilin University, Changchun 130012, China.
J Nanosci Nanotechnol. 2008 Mar;8(3):1138-49.
Fluorescent quantum dots have been used in biological applications as desirable fluorescent labels instead of traditional fluorophores. Incorporation into microspheres enhances many features of quantum dots that make them ideal for biological detection, such as photostability, multi-target, and improved brightness. Quantum dot-tagged microbeads are emerging as a new class of fluorescent labels and are expected to open new opportunities in nanotechnology and biology. In this review, we describe different approaches for the synthesis of quantum dot-tagged microbeads, surface modification methods that make microbeads suitable for bioconjugation, and the biological applications of the quantum dot-tagged fluorescent microbeads with their desired features in recent research. We also discuss the limitations of some kinds of quantum dot-tagged microbeads and the developments that will enhance their abilities in biological applications.
荧光量子点已被用作生物应用中理想的荧光标记物,取代了传统的荧光团。将其掺入微球可增强量子点的许多特性,使其成为生物检测的理想选择,如光稳定性、多靶点和更高的亮度。量子点标记的微珠正在成为一类新型的荧光标记物,并有望在纳米技术和生物学领域开辟新的机遇。在这篇综述中,我们描述了合成量子点标记微珠的不同方法、使微珠适合生物共轭的表面修饰方法,以及量子点标记的荧光微珠在近期研究中具有所需特性的生物应用。我们还讨论了某些类型的量子点标记微珠的局限性以及将增强其生物应用能力的发展情况。