Nano Letters · 2022 · 51 citations · 21 references
NanoparticlesNanotherapeuticsEngineeringRemote ManipulationBiomedical EngineeringCancer BiologyReactive Oxygen SpeciesTumor BiologyNanomedicineGene ReleaseTherapeutic NanomaterialsCancer Cell BiologyRos-sensitive Calcium ChannelBioimagingChemodynamic TherapyRadiation OncologyCancer ResearchBiophysicsCa2+ InfluxNanotechnologyPhotodynamic TherapyTumor TargetingBiophotonicsCell BiologyDrug TargetingNano-drug DeliveryMedicine
The regulation of reactive oxygen species (ROS)-sensitive calcium (Ca2+) channels is of great significance in the treatment of tumors. Here, a simple ROS generation system is developed to activate ROS-sensitive ion channels for enhancing calcium-cascade-mediated tumor cell death under near-infrared (NIR) light irradiation. Upon irradiation with an 808 nm laser, a low-lethality amount of ROS facilitates plasmid transient potential receptor melastatin-2 (pTRPM2) gene release via cleavage of the Se–Se bonds, which contributed to enhancing the expression of TRPM2 in tumor cells. Meanwhile, ROS could potently activate TRPM2 for Ca2+ influx to inhibit early autophagy and to further induce intracellular ROS production, which ultimately led to cell death in TRPM2 expressing tumor cells. Both in vitro and in vivo data show that nanoparticles have an excellent therapeutic effect on cancer upon NIR light. This work presents a simple modality based on NIR light to remotely control the ROS-sensitive ion channel for cancer therapy.
21
Calcium - a life and death signal
Michael J. Berridge, Martin D. Bootman, Peter Lipp · Nature · 1998 · 2K citations
Wen Gao, Yuhui Sun, Michelle Cai et al. · Nature Communications · 2018 · 322 citations · Full text