Unsaturated phospholipid modified FeOCl nanosheets for enhancing tumor ferroptosis.
Zi HeYijun GuoJinzhu ChenHuiling LuoXinxin LiuXiuming ZhangYanan SunDongtao GeShefang YeWei ShiPublished in: Journal of materials chemistry. B (2023)
Iron-dependent accumulation of reactive oxygen species (ROS) and lipid peroxidation play key roles in ferroptosis, which has been an attractive strategy to kill tumor cells. However, the rapid annihilation of hydroxyl radicals (˙OH) produced from the Fenton reaction has become a major obstacle in inducing lipid peroxidation in cells. In this study, we develop a nano-delivery system of unsaturated phospholipid (Lip) and polyacrylic acid (PAA) functionalized FeOCl nanosheets (FeOCl@PAA-Lip). In this system, the ˙OH radicals produced from the Fenton reaction between FeOCl nanosheets and endogenous H 2 O 2 of tumor cells attack Lip on the nanosheets in situ to initiate the lipid peroxidation chain reaction, which not only realizes free radical conversion but also leads to the amplification of ROS and lipid peroxides, thus enhancing tumor ferroptosis. The in vitro and in vivo results confirmed that FeOCl@PAA-Lip nanosheets exhibited specific tumor cell-killing effects, good biocompatibility, long circulation time, low side effects, high tumor targeting and an excellent tumor inhibition rate (73%). The Lip functionalization strategy offers a paradigm of enhancing ferroptosis treatment by conversion of ˙OH/phospholipid radicals/lipid peroxyl radicals and strengthening lipid peroxidation.
Keyphrases
- cell death
- fatty acid
- reactive oxygen species
- quantum dots
- reduced graphene oxide
- metal organic framework
- highly efficient
- cell cycle arrest
- induced apoptosis
- wastewater treatment
- stem cells
- gold nanoparticles
- oxidative stress
- drug delivery
- mass spectrometry
- signaling pathway
- mesenchymal stem cells
- cancer therapy
- electron transfer