Cargando…

Liposomes embedded with PEGylated iron oxide nanoparticles enable ferroptosis and combination therapy in cancer

Ferroptosis, an iron-dependent regulated cell death process driven by excessive lipid peroxides, can enhance cancer vulnerability to chemotherapy, targeted therapy and immunotherapy. As an essential upstream process for ferroptosis activation, lipid peroxidation of biological membranes is expected t...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Yang, Quan, Xuebo, Li, Jie, Huo, Jiawei, Li, Xing, Zhao, Zhongpu, Li, Shumu, Wan, Jing, Li, Jiao, Liu, Shuai, Wang, Tao, Zhang, Xing, Guan, Bo, Wen, Rui, Zhao, Zhenwen, Wang, Chunru, Bai, Chunli
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9843134/
https://www.ncbi.nlm.nih.gov/pubmed/36684514
http://dx.doi.org/10.1093/nsr/nwac167
_version_ 1784870318893957120
author Liu, Yang
Quan, Xuebo
Li, Jie
Huo, Jiawei
Li, Xing
Zhao, Zhongpu
Li, Shumu
Wan, Jing
Li, Jiao
Liu, Shuai
Wang, Tao
Zhang, Xing
Guan, Bo
Wen, Rui
Zhao, Zhenwen
Wang, Chunru
Bai, Chunli
author_facet Liu, Yang
Quan, Xuebo
Li, Jie
Huo, Jiawei
Li, Xing
Zhao, Zhongpu
Li, Shumu
Wan, Jing
Li, Jiao
Liu, Shuai
Wang, Tao
Zhang, Xing
Guan, Bo
Wen, Rui
Zhao, Zhenwen
Wang, Chunru
Bai, Chunli
author_sort Liu, Yang
collection PubMed
description Ferroptosis, an iron-dependent regulated cell death process driven by excessive lipid peroxides, can enhance cancer vulnerability to chemotherapy, targeted therapy and immunotherapy. As an essential upstream process for ferroptosis activation, lipid peroxidation of biological membranes is expected to be primarily induced by intrabilayer reactive oxygen species (ROS), indicating a promising strategy to initiate peroxidation by improving the local content of diffusion-limited ROS in the lipid bilayer. Herein, liposomes embedded with PEG-coated 3 nm γ-Fe(2)O(3) nanoparticles in the bilayer (abbreviated as Lp-IO) were constructed to promote the intrabilayer generation of hydroxyl radicals (•OH) from hydrogen peroxide (H(2)O(2)), and the integration of amphiphilic PEG moieties with liposomal bilayer improved lipid membrane permeability to H(2)O(2) and •OH, resulting in efficient initiation of lipid peroxidation and thus ferroptosis in cancer cells. Additionally, Lp-IO enabled traceable magnetic resonance imaging and pH/ROS dual-responsive drug delivery. Synergistic antineoplastic effects of chemotherapy and ferroptosis, and alleviated chemotherapeutic toxicity, were achieved by delivering doxorubicin (capable of xCT and glutathione peroxidase inhibition) with Lp-IO. This work provides an efficient alternative for triggering therapeutic lipid peroxidation and a ferroptosis-activating drug delivery vehicle for combination cancer therapies.
format Online
Article
Text
id pubmed-9843134
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-98431342023-01-19 Liposomes embedded with PEGylated iron oxide nanoparticles enable ferroptosis and combination therapy in cancer Liu, Yang Quan, Xuebo Li, Jie Huo, Jiawei Li, Xing Zhao, Zhongpu Li, Shumu Wan, Jing Li, Jiao Liu, Shuai Wang, Tao Zhang, Xing Guan, Bo Wen, Rui Zhao, Zhenwen Wang, Chunru Bai, Chunli Natl Sci Rev Research Article Ferroptosis, an iron-dependent regulated cell death process driven by excessive lipid peroxides, can enhance cancer vulnerability to chemotherapy, targeted therapy and immunotherapy. As an essential upstream process for ferroptosis activation, lipid peroxidation of biological membranes is expected to be primarily induced by intrabilayer reactive oxygen species (ROS), indicating a promising strategy to initiate peroxidation by improving the local content of diffusion-limited ROS in the lipid bilayer. Herein, liposomes embedded with PEG-coated 3 nm γ-Fe(2)O(3) nanoparticles in the bilayer (abbreviated as Lp-IO) were constructed to promote the intrabilayer generation of hydroxyl radicals (•OH) from hydrogen peroxide (H(2)O(2)), and the integration of amphiphilic PEG moieties with liposomal bilayer improved lipid membrane permeability to H(2)O(2) and •OH, resulting in efficient initiation of lipid peroxidation and thus ferroptosis in cancer cells. Additionally, Lp-IO enabled traceable magnetic resonance imaging and pH/ROS dual-responsive drug delivery. Synergistic antineoplastic effects of chemotherapy and ferroptosis, and alleviated chemotherapeutic toxicity, were achieved by delivering doxorubicin (capable of xCT and glutathione peroxidase inhibition) with Lp-IO. This work provides an efficient alternative for triggering therapeutic lipid peroxidation and a ferroptosis-activating drug delivery vehicle for combination cancer therapies. Oxford University Press 2022-08-18 /pmc/articles/PMC9843134/ /pubmed/36684514 http://dx.doi.org/10.1093/nsr/nwac167 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of China Science Publishing & Media Ltd. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Liu, Yang
Quan, Xuebo
Li, Jie
Huo, Jiawei
Li, Xing
Zhao, Zhongpu
Li, Shumu
Wan, Jing
Li, Jiao
Liu, Shuai
Wang, Tao
Zhang, Xing
Guan, Bo
Wen, Rui
Zhao, Zhenwen
Wang, Chunru
Bai, Chunli
Liposomes embedded with PEGylated iron oxide nanoparticles enable ferroptosis and combination therapy in cancer
title Liposomes embedded with PEGylated iron oxide nanoparticles enable ferroptosis and combination therapy in cancer
title_full Liposomes embedded with PEGylated iron oxide nanoparticles enable ferroptosis and combination therapy in cancer
title_fullStr Liposomes embedded with PEGylated iron oxide nanoparticles enable ferroptosis and combination therapy in cancer
title_full_unstemmed Liposomes embedded with PEGylated iron oxide nanoparticles enable ferroptosis and combination therapy in cancer
title_short Liposomes embedded with PEGylated iron oxide nanoparticles enable ferroptosis and combination therapy in cancer
title_sort liposomes embedded with pegylated iron oxide nanoparticles enable ferroptosis and combination therapy in cancer
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9843134/
https://www.ncbi.nlm.nih.gov/pubmed/36684514
http://dx.doi.org/10.1093/nsr/nwac167
work_keys_str_mv AT liuyang liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT quanxuebo liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT lijie liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT huojiawei liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT lixing liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT zhaozhongpu liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT lishumu liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT wanjing liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT lijiao liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT liushuai liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT wangtao liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT zhangxing liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT guanbo liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT wenrui liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT zhaozhenwen liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT wangchunru liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer
AT baichunli liposomesembeddedwithpegylatedironoxidenanoparticlesenableferroptosisandcombinationtherapyincancer