CSIR-Institute of Microbial Technology , Chandigarh - 160036 , India.
Bioconjug Chem. 2018 Apr 18;29(4):1102-1110. doi: 10.1021/acs.bioconjchem.7b00772. Epub 2018 Mar 13.
Peptide-based drug delivery systems have become a mainstay in the contemporary medicinal field, resulting in the design and development of better pharmaceutical formulations. However, most of the available reports employ tedious multiple reaction steps for the conjugation of bioactive cationic peptides with drug delivery vehicles. To overcome these limitations, the present work describes a one-step approach for facile and time efficient synthesis of highly cationic cell penetrating peptide functionalized gold nanoparticles and their intracellular delivery. The nanoconstruct was synthesized by the reduction of gold metal ions utilizing cell penetrating peptide (CPP), which facilitated the simultaneous synthesis of metal nanoparticles and the capping of the peptide over the nanoparticle surface. The developed nanoconstruct was thoroughly characterized and tested for intracellular delivery into HeLa cells. Intriguingly, a high payload of cationic peptide over gold particles was achieved, in comparison to conventional conjugation methods. Moreover, this method also provides the ability to control the size and peptide payload of nanoparticles. The nanoconstructs produced showed enhanced cancer cell penetration (μM) and significant cytotoxic effect compared to unlabeled gold nanoparticles. Therefore, this novel approach may also have significant future potential to kill intracellular hidden dreaded pathogens like the human immunodeficiency virus, Mycobacterium tuberculosis, and so forth.
基于肽的药物传递系统已成为当代医学领域的主要手段,从而设计和开发出更好的药物制剂。然而,大多数现有报道采用繁琐的多步反应步骤将生物活性阳离子肽与药物传递载体进行缀合。为了克服这些限制,本工作描述了一种简便、高效的一步法合成高度阳离子细胞穿透肽功能化金纳米粒子及其细胞内递药的方法。该纳米结构是通过利用细胞穿透肽(CPP)还原金金属离子合成的,这促进了金属纳米粒子的同时合成和肽在纳米粒子表面的覆盖。对所开发的纳米结构进行了全面的表征,并测试了其对 HeLa 细胞的细胞内递药性能。有趣的是,与传统的缀合方法相比,金颗粒上的阳离子肽的高载药量得以实现。此外,该方法还提供了控制纳米颗粒尺寸和肽载药量的能力。与未标记的金纳米粒子相比,所制备的纳米结构表现出增强的癌细胞穿透(µM)和显著的细胞毒性作用。因此,这种新方法也可能具有显著的未来潜力,可以杀死细胞内隐藏的可怕病原体,如人类免疫缺陷病毒、结核分枝杆菌等。