4D LABS, Department of Chemistry, Simon Fraser University, Burnaby, British Columbia, Canada.
Nanomedicine. 2012 Aug;8(6):908-15. doi: 10.1016/j.nano.2011.10.012. Epub 2011 Nov 16.
The ability of gold (Au) nanoparticles (NPs) to generate heat efficiently by absorbing visible and near-infrared (NIR) light holds great promise as a means to trigger chemical and biochemical events near the NPs. Previous demonstrations show that pulsed laser irradiation can selectively elicit the release of a fluorescent dye covalently anchored to the NP surface through a heat-labile linker without measurably changing the temperature of the surroundings. This article reports that the authors demonstrate the biological efficacy of this approach to photodelivery by showing that the decorated Au NPs are rapidly internalized by cells, are stable under physiological conditions, are nontoxic, and exhibit nonlethal photorelease following exposure to pulsed laser radiation. These observations, further supported by the versatility of our delivery motif, reaffirm the potential for further development of nonlethal photothermal therapeutics and their future relevance to such fields as gene therapy and stem-cell differentiation.
金(Au)纳米粒子(NPs)通过吸收可见光和近红外(NIR)光高效地产生热量,有望成为在 NPs 附近引发化学和生物化学事件的一种手段。先前的研究表明,脉冲激光照射可以通过热不稳定的连接物选择性地引发共价固定在 NP 表面的荧光染料的释放,而周围环境的温度变化可以忽略不计。本文报道了作者通过证明经过修饰的 Au NPs 被细胞快速内化、在生理条件下稳定、无毒性以及在暴露于脉冲激光辐射后表现出非致死性光释放,证明了这种光传递方法在光递药方面的生物功效。这些观察结果进一步得到了我们传递模式的多功能性的支持,再次证实了非致死性光热治疗的进一步发展潜力,以及它们在基因治疗和干细胞分化等领域的未来相关性。