TY - JOUR
T1 - Conjugated polymer dots for biocompatible siRNA delivery
AU - Wang, Fei
AU - Chen, Haobin
AU - Liu, Zhihe
AU - Mi, Feixue
AU - Fang, Xiaofeng
AU - Liu, Jie
AU - Wang, Mingxue
AU - Lo, Pik Kwan
AU - Li, Qiong
PY - 2019/9/28
Y1 - 2019/9/28
N2 - Small interfering RNA (siRNA) that mediates target gene silencing through RNA interference (RNAi) has attracted increasing interest in exploring gene functions as well as treating a variety of diseases. However, the inefficient delivery of the unstable and negatively charged siRNA into cells restricts the progress of the RNAi-based therapeutics. In this work, we describe the development of a nanoplatform based on conjugated polymer dots (Pdots) for efficient siRNA delivery. The cationic lipid G0C14 was introduced in the Pdots for siRNA complexing. The G0C14-containing polymer dots (G-Pdots) not only retained the outstanding fluorescence properties but also enhanced cellular uptake of siRNA. The positively charged G0C14 was able to interact with the negatively charged siRNA via electrostatic interactions, while the G-Pdot/siRNA complexes still remained negatively charged. A prominent property of this nanoplatform was the low cytotoxicity as compared to the commercial agent Lipofectamine, while the gene silencing efficiency was comparable. Our results indicate that biocompatible G-Pdots represent a promising platform for imaging-guided siRNA delivery.
AB - Small interfering RNA (siRNA) that mediates target gene silencing through RNA interference (RNAi) has attracted increasing interest in exploring gene functions as well as treating a variety of diseases. However, the inefficient delivery of the unstable and negatively charged siRNA into cells restricts the progress of the RNAi-based therapeutics. In this work, we describe the development of a nanoplatform based on conjugated polymer dots (Pdots) for efficient siRNA delivery. The cationic lipid G0C14 was introduced in the Pdots for siRNA complexing. The G0C14-containing polymer dots (G-Pdots) not only retained the outstanding fluorescence properties but also enhanced cellular uptake of siRNA. The positively charged G0C14 was able to interact with the negatively charged siRNA via electrostatic interactions, while the G-Pdot/siRNA complexes still remained negatively charged. A prominent property of this nanoplatform was the low cytotoxicity as compared to the commercial agent Lipofectamine, while the gene silencing efficiency was comparable. Our results indicate that biocompatible G-Pdots represent a promising platform for imaging-guided siRNA delivery.
UR - http://www.scopus.com/inward/record.url?scp=85072310123&partnerID=8YFLogxK
UR - https://www.scopus.com/record/pubmetrics.uri?eid=2-s2.0-85072310123&origin=recordpage
U2 - 10.1039/c9nj03277k
DO - 10.1039/c9nj03277k
M3 - RGC 21 - Publication in refereed journal
SN - 1144-0546
VL - 43
SP - 14443
EP - 14449
JO - New Journal of Chemistry
JF - New Journal of Chemistry
IS - 36
ER -