| Literature DB >> 29339188 |
Dao-Zhou Liu1, Ying Cheng1, Rong-Qiao Cai1, Wen-Wen Wang Bd1, Han Cui1, Miao Liu1, Bang-le Zhang1, Qi-Bing Mei2, Si-Yuan Zhou3.
Abstract
In order to enhance the penetration of small interference RNA against the polo-like kinase I (siPLK1) across BBB to treat glioblastoma (GBM), transferrin (Tf) modified magnetic nanoparticle (Tf-PEG-PLL/MNP@siPLK1) was prepared. The in vitro experiments indicated that Tf-PEG-PLL/MNP@siPLK1 enhanced the cellular uptake of siPLK1, which resulted in an increase of gene silencing effect and cytotoxicity of Tf-PEG-PLL/MNP@siPLK1 on U87 cells. Besides, Tf-PEG-PLL/MNP@siPLK1 significantly inhibited the growth of U87 glioblastoma spheroids and markedly increased the BBB penetration efficiency of siPLK1 with the application of external magnetic field in in-vitro BBB model. The in vivo experiments indicated that siPLK1 selectively accumulated in the brain tissue, and markedly reduced tumor volume and prolonged the survival time of GBM-bearing mice after Tf-PEG-PLL/MNP@siPLK1 was injected to GBM-bearing mice via tail vein. The above data indicated that magnet and transferrin co-modified nanoparticle enhanced siPLK1 penetration across BBB and increased its anti GBM activity in vivo.Entities:
Keywords: Glioblastoma; Magnetic nanoparticle; Polo-like kinase I; Transferrin; siRNA
Mesh:
Substances:
Year: 2018 PMID: 29339188 DOI: 10.1016/j.nano.2018.01.004
Source DB: PubMed Journal: Nanomedicine ISSN: 1549-9634 Impact factor: 5.307