Nishiyama Nobuhiro, Iriyama Aya, Jang Woo-Dong, Miyata Kanjiro, Itaka Keiji, Inoue Yuji, Takahashi Hidenori, Yanagi Yasuo, Tamaki Yasuhiro, Koyama Hiroyuki, Kataoka Kazunori
Center for Disease Biology and Integrative Medicine, Graduate School of Medicine, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Nat Mater. 2005 Dec;4(12):934-41. doi: 10.1038/nmat1524. Epub 2005 Nov 20.
The control of gene transfection in the body is a core issue in gene therapy. Photochemical internalization is a technology that allows light-induced delivery of DNA, drugs or other biological factors directly inside cells. Usually it requires that a photosensitizer be added to the drug-delivery system to photochemically destabilize the endosomal membrane. Here we present a system for in vivo DNA delivery in which these two components are assembled into one structure. This is a ternary complex composed of a core containing DNA packaged with cationic peptides and enveloped in the anionic dendrimer phthalocyanine, which provides the photosensitizing action. The ternary complex showed more than 100-fold photochemical enhancement of transgene expression in vitro with reduced photocytotoxicity. In an animal experiment, subconjuctival injection of the ternary complex followed by laser irradiation resulted in transgene expression only in the laser-irradiated site. This work demonstrates a new biomedical application for dendrimers, and the first success in the photochemical-internalization-mediated gene delivery in vivo.
体内基因转染的控制是基因治疗中的核心问题。光化学内化是一种可使DNA、药物或其他生物因子通过光诱导直接递送至细胞内部的技术。通常这需要在药物递送系统中添加一种光敏剂,以光化学方式破坏内体膜的稳定性。在此,我们展示了一种用于体内DNA递送的系统,其中这两种成分被组装成一种结构。这是一种三元复合物,其核心包含与阳离子肽包装在一起的DNA,并被阴离子树枝状酞菁包裹,后者提供光敏作用。该三元复合物在体外显示出转基因表达的光化学增强超过100倍,且光细胞毒性降低。在动物实验中,结膜下注射三元复合物后进行激光照射,结果仅在激光照射部位出现转基因表达。这项工作展示了树枝状大分子的一种新的生物医学应用,以及光化学内化介导的体内基因递送的首次成功。