Smith Jason D, Fisher Gregory W, Waggoner Alan S, Campbell Phil G
Institute for Complex Engineered Systems, Carnegie Mellon University, 5000 Forbes Avenue, Pittsburgh, PA 15213, USA.
Microvasc Res. 2007 Mar;73(2):75-83. doi: 10.1016/j.mvr.2006.09.003. Epub 2006 Oct 27.
Quantum dots (QDs) are fluorescent semiconductor nanocrystals that possess a number of superior fluorescent properties compared to more established organic dyes and fluorescent proteins. As a result, QDs are being studied for use in a wide range of biological applications. We have examined QDs for one such application, visualization of blood vessels of the chick chorioallantoic membrane (CAM), a popular model for studying various aspects of blood vessel development including angiogenesis. Intravitally injected QDs were found to be biocompatible and were kept in circulation over the course of 4 days without any observed deleterious effects. QD vascular residence time was tunable through QD surface chemistry modification. We also found that use of QDs with higher emission wavelengths (>655 nm) virtually eliminated all chick-derived autofluorescence and improved depth-of-field imaging. QDs were compared to FITC-dextrans, a fluorescent dye commonly used for imaging CAM vessels. QDs were found to image vessels as well as or better than FITC-dextrans at 2-3 orders of magnitude lower concentration. We also demonstrated that QDs are fixable with low fluorescence loss and thus can be used in conjunction with histological processing for further sample analysis.
量子点(QDs)是荧光半导体纳米晶体,与更成熟的有机染料和荧光蛋白相比,具有许多优异的荧光特性。因此,人们正在研究量子点在广泛的生物应用中的用途。我们已经研究了量子点在一种这样的应用中的情况,即观察鸡胚绒毛尿囊膜(CAM)的血管,这是一种用于研究血管发育各个方面(包括血管生成)的常用模型。经活体注射后,量子点被发现具有生物相容性,并在4天的时间内保持在循环中,未观察到任何有害影响。量子点在血管中的停留时间可通过量子点表面化学修饰来调节。我们还发现,使用发射波长更高(>655 nm)的量子点几乎消除了所有鸡源自发荧光,并改善了景深成像。将量子点与FITC-葡聚糖(一种常用于CAM血管成像的荧光染料)进行了比较。发现在浓度低2至3个数量级时,量子点对血管成像的效果与FITC-葡聚糖相同或更好。我们还证明,量子点可以固定,荧光损失低,因此可以与组织学处理结合使用,以进行进一步的样品分析。