Hezinger A F E, Tessmar J, Göpferich A
Department of Pharmaceutical Technology, Universität Regensburg, Universitätstrasse 31, Regensburg, Germany.
Eur J Pharm Biopharm. 2008 Jan;68(1):138-52. doi: 10.1016/j.ejpb.2007.05.013. Epub 2007 Jun 15.
The use of quantum dots for biological and biomedical applications is one of the fastest moving fields of nanotechnology today. The unique optical properties of these nanometer-sized semiconductor crystals make them an exciting fluorescent tool for in-vivo and in-vitro imaging as well as for sensoric applications. To apply them in biological fluids or aqueous environment it is essential to modulate the chemical nature of quantum dot surfaces to alter their solubility and add additional chemical functionalities. By employing different coating technologies they cannot only be rendered water soluble but also functionalized to fulfill different tasks, like receptor targeting or sensing of low molecular weight substances. To achieve this goal different polymeric coatings are applied to provide solubility in water and additional functional groups for attachment. Taken together the versatile modifications described in this review make quantum dots a promising alternative to conventional fluorescent dyes and may offer possibilities for new future developments.
量子点在生物和生物医学领域的应用是当今纳米技术中发展最快的领域之一。这些纳米级半导体晶体独特的光学特性使其成为用于体内和体外成像以及传感应用的令人兴奋的荧光工具。要将它们应用于生物流体或水性环境中,调节量子点表面的化学性质以改变其溶解度并添加额外的化学功能至关重要。通过采用不同的涂层技术,它们不仅可以变得水溶性,还可以功能化以完成不同的任务,如受体靶向或低分子量物质的传感。为了实现这一目标,应用了不同的聚合物涂层以提供在水中的溶解度和用于连接的额外官能团。综上所述,本综述中描述的多种修饰使量子点成为传统荧光染料的有前途的替代品,并可能为未来的新发展提供可能性。
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