Centre for Micro-Photonics, Faculty of Engineering and Industrial Sciences, Swinburne University of Technology, Hawthorn, Victoria 3122, Australia.
Biomaterials. 2010 Dec;31(36):9492-8. doi: 10.1016/j.biomaterials.2010.08.068. Epub 2010 Oct 6.
Two-photon microscopy powered by a femtosecond laser is a promising tool for luminescence imaging and localized microsurgery of cancers. However, the high energy required to destruct cells limits its medical applications. In this work, gold nanorods were conjugated with transferrin for efficient targeting, two-photon luminescence imaging and enhanced microsurgery of cancer cells. Due to the large two-photon excitation cross section of gold nanorods, gold nanorods are a hundred times more efficient than Fluorescein isothiocyanate (FITC), a common molecular dye, in three-dimensional imaging of cancer cells. The enhanced light absorption and energy conversion by gold nanorods enable treatment of cells with energy fluences two orders of magnitude below that in the absence of gold nanorods. By manipulating the energy fluence, apoptosis of cancer cells has been achieved. At a same power density, the energy fluence for apoptosis induction is less than 20% of that for necrosis. Gold nanorods-enhanced luminescence imaging coupled with apoptosis induction of cancer cells provides a medically safe femtosecond laser-based imaging and microsurgery system for cancer diagnosis and treatment.
基于飞秒激光的双光子显微镜是一种很有前途的荧光成像和癌症局部微创手术工具。然而,破坏细胞所需的高能量限制了其在医学上的应用。在这项工作中,金纳米棒与转铁蛋白偶联,以实现对癌细胞的高效靶向、双光子荧光成像和增强微创手术。由于金纳米棒具有较大的双光子激发截面,金纳米棒在三维成像癌细胞方面的效率比常用的分子染料异硫氰酸荧光素(FITC)高 100 倍。金纳米棒增强的光吸收和能量转换使细胞的能量密度降低了两个数量级,而无需金纳米棒。通过控制能量密度,可以实现癌细胞的凋亡。在相同的功率密度下,诱导细胞凋亡的能量密度小于诱导坏死的能量密度的 20%。金纳米棒增强的荧光成像与诱导癌细胞凋亡相结合,为癌症的诊断和治疗提供了一种基于飞秒激光的安全医学成像和微创手术系统。