Soloperto Alessandro, Palazzolo Gemma, Tsushima Hanako, Chieregatti Evelina, Vassalli Massimo, Difato Francesco
Neuroscience and Brain Technologies Department, Istituto Italiano di Tecnologia Genoa, Italy.
Institute of Biophysics, National Research Council of Italy Genoa, Italy.
Front Neurosci. 2016 Mar 11;10:101. doi: 10.3389/fnins.2016.00101. eCollection 2016.
Current optical approaches are progressing far beyond the scope of monitoring the structure and function of living matter, and they are becoming widely recognized as extremely precise, minimally-invasive, contact-free handling tools. Laser manipulation of living tissues, single cells, or even single-molecules is becoming a well-established methodology, thus founding the onset of new experimental paradigms and research fields. Indeed, a tightly focused pulsed laser source permits complex tasks such as developing engineered bioscaffolds, applying calibrated forces, transfecting, stimulating, or even ablating single cells with subcellular precision, and operating intracellular surgical protocols at the level of single organelles. In the present review, we report the state of the art of laser manipulation in neuroscience, to inspire future applications of light-assisted tools in nano-neurosurgery.
当前的光学方法正不断发展,远远超出了监测生物物质结构与功能的范畴,并且作为极其精确、微创、非接触式的操作工具而得到广泛认可。对活组织、单细胞甚至单分子进行激光操控正成为一种成熟的方法,从而开启了新的实验范式和研究领域。事实上,一个高度聚焦的脉冲激光源能够完成诸如构建工程化生物支架、施加校准力、转染、刺激甚至以亚细胞精度消融单细胞,以及在单个细胞器水平上实施细胞内手术方案等复杂任务。在本综述中,我们报告了神经科学中激光操控的技术现状,以启发光辅助工具在纳米神经外科中的未来应用。