Department of Chemical Engineering and Waterloo Institute for Nanotechnology, University of Waterloo, 200 University Avenue West, Waterloo, Ontario, N2L 3G1, Canada.
Department of Chemistry and Waterloo Institute for Nanotechnology, University of Waterloo, Waterloo, 200 University Avenue West, Ontario, N2L 3G1, Canada.
Adv Healthc Mater. 2015 Dec 9;4(17):2709-18. doi: 10.1002/adhm.201500636. Epub 2015 Oct 16.
Most drug delivery systems have been developed for efficient delivery to tumor sites via targeting and on-demand strategies, but the carriers rarely execute synergistic therapeutic actions. In this work, C8, a cationic, pH-triggered anticancer peptide, is developed by incorporating histidine-mediated pH-sensitivity, amphipathic helix, and amino acid pairing self-assembly design. We designed C8 to function as a pH-responsive nanostructure whose cytotoxicity can be switched on and off by its self-assembly: Noncytotoxic β-sheet fibers at high pH with neutral histidines, and positively charged monomers with membrane lytic activity at low pH. The selective activity of C8, tested for three different cancer cell lines and two noncancerous cell lines, is shown. Based on liposome leakage assays and multiscale computer simulations, its physical mechanisms of pore-forming action and selectivity are proposed, which originate from differences in the lipid composition of the cellular membrane and changes in hydrogen bonding. C8 is then investigated for its potential as a drug carrier. C8 forms a nanocomplex with ellipticine, a nonselective model anticancer drug. It selectively targets cancer cells in a pH-responsive manner, demonstrating enhanced efficacy and selectivity. This study provides a novel powerful strategy for the design and development of multifunctional self-assembling peptides for therapeutic and drug delivery applications.
大多数药物输送系统都是为了通过靶向和按需策略高效递送到肿瘤部位而开发的,但载体很少能执行协同治疗作用。在这项工作中,通过整合组氨酸介导的 pH 敏感性、两亲性螺旋和氨基酸配对自组装设计,开发了一种阳离子、pH 触发的抗癌肽 C8。我们设计 C8 作为一种 pH 响应的纳米结构,其细胞毒性可以通过自组装来开启和关闭:在高 pH 值下具有中性组氨酸的非细胞毒性β-折叠纤维,以及在低 pH 值下具有膜裂解活性的带正电荷的单体。C8 的选择性活性已在三种不同的癌细胞系和两种非癌细胞系中进行了测试。基于脂质体渗漏实验和多尺度计算机模拟,提出了其形成孔的作用和选择性的物理机制,这源于细胞膜的脂质组成的差异和氢键的变化。然后研究了 C8 作为药物载体的潜力。C8 与椭圆碱(一种非选择性的模型抗癌药物)形成纳米复合物。它以 pH 响应的方式选择性地靶向癌细胞,显示出增强的疗效和选择性。这项研究为治疗和药物输送应用的多功能自组装肽的设计和开发提供了一种新的强大策略。