Kachynski Aliaksandr V, Kuzmin Andrey N, Nyk Marcin, Roy Indrajit, Prasad Paras N
The Institute for Lasers, Photonics, and Biophotonics, University at Buffalo, The State University of New York, Buffalo, NY 14260, USA.
J Phys Chem C Nanomater Interfaces. 2008 Jul 24;112(29):10721-10724. doi: 10.1021/jp801684j.
In this paper we show that biocompatible zinc oxide (ZnO) nanocrystals (NCs) having non-centrosymmetric structure can be used as non-resonant nonlinear optical probes for targeting in bioimaging applications in vitro by use of the second order processes of second harmonic and sum frequency generation, as well as the third order process of four wave mixing. These non-resonant processes provide advantages above and beyond traditional two-photon bioimaging: (i) the probes do not photo-bleach; (ii) the input wavelength can be judiciously selected; and (iii) no heat is dissipated into the cells, ensuring longer cell viability and ultimately longer imaging times. ZnO NCs have been synthesized in organic media by using a non-hydrolytic sol-gel process, and subsequently dispersed in aqueous media using phospholipid micelles, and incorporated with the biotargeting molecule folic acid (FA). Sum Frequency, Second Harmonic and non-resonant four wave mixing non-linear signals from this stable dispersion of ZnO NCs, targeted to the live tumor (KB) cells were used for imaging. Robust intracellular accumulation of the targeted (FA incorporated) ZnO nanocrystals could be observed, without any indication of cytotoxicity.
在本文中,我们表明具有非中心对称结构的生物相容性氧化锌(ZnO)纳米晶体(NCs)可作为非共振非线性光学探针,通过二次谐波和和频产生的二阶过程以及四波混频的三阶过程,用于体外生物成像应用中的靶向定位。这些非共振过程提供了超越传统双光子生物成像的优势:(i)探针不会光漂白;(ii)输入波长可以明智地选择;(iii)不会向细胞中散热,确保更长的细胞活力以及最终更长的成像时间。通过非水解溶胶 - 凝胶法在有机介质中合成了ZnO NCs,随后使用磷脂微团将其分散在水性介质中,并与生物靶向分子叶酸(FA)结合。来自这种稳定分散的ZnO NCs的和频、二次谐波以及非共振四波混频非线性信号,靶向活肿瘤(KB)细胞用于成像。可以观察到靶向(掺入FA)的ZnO纳米晶体在细胞内有强烈积累,且没有任何细胞毒性迹象。