School of Engineering, EPFL, Station 17, 1015 Lausanne, Switzerland.
Biomaterials. 2010 Mar;31(8):2272-7. doi: 10.1016/j.biomaterials.2009.11.096. Epub 2009 Dec 8.
The second harmonic generation (SHG) active nanocrystals have been demonstrated as attractive imaging probes in nonlinear microscopy due to their coherent, non-bleaching and non-blinking signals with a broad flexibility in the choice of excitation wavelength. For the use of these nanocrystals as biomarkers, it is essential to prepare a chemical interface for specific labeling. We developed a specific labeling scheme for barium titanate (BaTiO3) nanocrystals which we use as second harmonic radiation imaging probes. The specificity was achieved by covalently coupling antibodies onto the nanocrystals. We demonstrate highly specific labeling of the nanocrystal conjugates in an antibody microarray and also the membrane proteins of live biological cells in vitro. The development of surface functionalization and bioconjugation of SHG active nanocrystals provides the opportunities of applying them to biological studies.
二次谐波产生 (SHG) 活性纳米晶体由于其相干、不漂白和不闪烁的信号,以及在激发波长选择方面的广泛灵活性,已被证明是非线性显微镜中具有吸引力的成像探针。为了将这些纳米晶体用作生物标志物,必须制备用于特定标记的化学界面。我们开发了一种针对钛酸钡 (BaTiO3) 纳米晶体的特定标记方案,我们将其用作二次谐波辐射成像探针。通过将抗体共价偶联到纳米晶体上,实现了特异性。我们在抗体微阵列中证明了纳米晶体缀合物的高度特异性标记,并且还证明了体外活生物细胞的膜蛋白的特异性标记。SHG 活性纳米晶体的表面功能化和生物共轭的发展为将它们应用于生物研究提供了机会。