Zhong Junping, Wen Liewei, Yang Sihua, Xiang Liangzhong, Chen Qun, Xing Da
MOE Key Laboratory of Laser Life Science & Institute of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou, China.
Center for Bioengineering and School of Electrical and Computer Engineering, University of Oklahoma, Norman, OK, USA.
Nanomedicine. 2015 Aug;11(6):1499-509. doi: 10.1016/j.nano.2015.04.002. Epub 2015 Apr 28.
Photoacoustic therapy using the large photoacoustic effect of agents for selectively killing cancer cells is demonstrated. Herein, a highly efficient photoacoustic treatment using gold nanorods (AuNRs) and its antitumor effect are reported. Folic acid conjugated AuNRs are designed to specifically target folate receptor-expressing cancer cells. Following photoacoustic treatment, most of the cancer cells with intracellular AuNRs die within 20s. Compared with single-walled carbon nanotubes and indocyanine green containing nanoparticles, AuNRs can produce much stronger shock waves by absorbing the optical energy and thus induced the more efficient cell death at equal molar concentrations. In addition, the laser-induced shock waves can be detected for photoacoustic imaging. Our in vivo experiments demonstrated that the AuNR-mediated photoacoustic treatment resulted in efficient tumor suppression in mice. Thus, both efficient cancer cell diagnostics and selective photoacoustic treatment can be realized with a single-particle formulation.
Nanotechnology has enabled the development of many novel methods for the treatment of cancer. One of these is photoacoustic therapy. In this article, the authors demonstrated the efficacy of Folic acid conjugated gold nanorods in killing cancer cells after photoacoustic treatment. The findings should provide impetus for future clinical studies.
展示了利用试剂的大光声效应进行光声疗法以选择性杀死癌细胞。在此,报道了一种使用金纳米棒(AuNRs)的高效光声治疗及其抗肿瘤效果。叶酸共轭金纳米棒被设计用于特异性靶向表达叶酸受体的癌细胞。经过光声治疗后,大多数含有细胞内金纳米棒的癌细胞在20秒内死亡。与单壁碳纳米管和含吲哚菁绿的纳米颗粒相比,金纳米棒在等摩尔浓度下通过吸收光能可产生更强的冲击波,从而诱导更有效的细胞死亡。此外,激光诱导的冲击波可用于光声成像检测。我们的体内实验表明,金纳米棒介导的光声治疗可有效抑制小鼠肿瘤。因此,通过单一颗粒制剂可实现高效的癌细胞诊断和选择性光声治疗。
纳米技术推动了许多治疗癌症的新方法的发展。其中之一就是光声疗法。在本文中,作者展示了叶酸共轭金纳米棒在光声治疗后杀死癌细胞的功效。这些发现应为未来的临床研究提供动力。