JAM-2 SiRNA Intracellular Delivery and Real-time Imaging by Proton-sponge Coated Quantum Dots
Overview
Authors
Affiliations
In this study, proton-sponge coated quantum dots were prepared by using amphipol PMAL, grafted with polyethylenimine (PEI) as an encapsulation polymer. The QD-PMAL-PEI nanoparticles showed low cytotoxicity and superior gene silencing efficiency in serum-containing medium against junctional adhesion molecule-2 (JAM-2), which is over-expressed in glioma cells. Confocal microscopic analysis showed efficient siRNA intracellular release. In particular, QD-mediated JAM-2 knockdown was reported for the first time to facilitate inhibition of glioma cell migration. Furthermore, the Notch pathway served as the target for the JAM-2 gene function, confirmed by downregulation of its downstream genes HES1 and HES5. The unique proton-sponge coated QDs can serve as multifunctional siRNA carriers for efficient gene silencing and real-time intracellular imaging, and provide a base for design of novel efficient siRNA delivery carriers with high biocompatibility.
The Roles of Junctional Adhesion Molecules (JAMs) in Cell Migration.
Wang J, Liu H Front Cell Dev Biol. 2022; 10:843671.
PMID: 35356274 PMC: 8959349. DOI: 10.3389/fcell.2022.843671.
Liu Y, Xie S, Zeng J, Song X, Tan M, He D Int J Oncol. 2019; 55(2):462-472.
PMID: 31173184 PMC: 6615927. DOI: 10.3892/ijo.2019.4822.
The role of JAM-B in cancer and cancer metastasis (Review).
Zhao H, Yu H, Martin T, Teng X, Jiang W Oncol Rep. 2016; 36(1):3-9.
PMID: 27121546 PMC: 4899009. DOI: 10.3892/or.2016.4773.
Wang Q, Zhang C, Shen G, Liu H, Fu H, Cui D J Nanobiotechnology. 2014; 12:58.
PMID: 25547381 PMC: 4304159. DOI: 10.1186/s12951-014-0058-0.