CAS Key Laboratory for Biomedical Effects of Nanomaterials and Nanosafety, National Center for Nanoscience and Technology, Chinese Academy of Sciences, Beijing 100190, PR China.
Biomaterials. 2012 Feb;33(4):1180-9. doi: 10.1016/j.biomaterials.2011.10.058. Epub 2011 Nov 5.
Functionalization of nanostructures such as gold nanoparticles (AuNPs) with different biological molecules has many applications in biomedical imaging, clinical diagnosis and therapy. Researchers mostly employed AuNPs larger than 10 nm for different biological and medicinal applications in previous studies. Herein, we synthesized a novel small (2 nm) AuNPs, which were functionalized with the therapeutic peptide, PMI (p12), and a targeted peptide, CRGDK for selective binding to neuropilin-1(Nrp-1) receptors which overexpressed on the cancer cells and regulated the process of membrane receptor-mediated internalization. It was found that CRGDK peptides increased intracellular uptake of AuNPs compared to other surface conjugations quantified by ICP-MS. Interestingly, CRGDK functionalized AuNPs resulted in maximal binding interaction between the CRGDK peptide and targeted Nrp-1 receptor overexpressed on MDA-MB-321 cell surface, which improved the delivery of therapeutic P12 peptide inside targeted cells. Au@p12 + CRGDK nanoparticles indicated with highly effective cancer treatment by increasing p53 expression upregulated with intracellular enhanced p12 therapeutic peptide. These results have implications to design and functionalize different molecules onto AuNPs surfaces to make hybrid model system for selective target binding as well as therapeutic effects for cancer treatment.
纳米结构(如金纳米粒子(AuNPs))的功能化与不同的生物分子结合,在生物医学成像、临床诊断和治疗中有许多应用。在以前的研究中,研究人员主要使用大于 10nm 的 AuNPs 进行不同的生物和医学应用。在此,我们合成了一种新型的小(2nm)AuNPs,它被治疗肽 PMI(p12)和靶向肽 CRGDK 功能化,用于选择性结合在癌细胞上过表达的神经纤毛蛋白-1(Nrp-1)受体,并调节膜受体介导的内化过程。研究发现,与其他表面结合物相比,通过 ICP-MS 定量,CRGDK 肽增加了 AuNPs 的细胞内摄取。有趣的是,CRGDK 功能化的 AuNPs 导致 CRGDK 肽与 MDA-MB-321 细胞表面过表达的靶向 Nrp-1 受体之间产生最大的结合相互作用,从而提高了靶向细胞内治疗性 P12 肽的递送。Au@p12+CRGDK 纳米颗粒通过增加细胞内增强的 p12 治疗性肽而上调 p53 表达,从而实现了高效的癌症治疗。这些结果对于设计和功能化 AuNPs 表面上的不同分子以构建用于选择性靶结合以及癌症治疗的治疗效果的混合模型系统具有重要意义。