1. Academic Validation
  2. Smart biomimetic metal organic frameworks based on ROS-ferroptosis-glycolysis regulation for enhanced tumor chemo-immunotherapy

Smart biomimetic metal organic frameworks based on ROS-ferroptosis-glycolysis regulation for enhanced tumor chemo-immunotherapy

  • J Control Release. 2021 Jun 10;334:21-33. doi: 10.1016/j.jconrel.2021.04.013.
Jie Yang 1 Siyu Ma 1 Rui Xu 1 Yawen Wei 1 Jun Zhang 1 Tiantian Zuo 1 Zhihua Wang 1 Huizi Deng 1 Ning Yang 1 Qi Shen 2
Affiliations

Affiliations

  • 1 School of Pharmacy, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China.
  • 2 School of Pharmacy, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China. Electronic address: [email protected].
Abstract

Antitumor immunotherapy is limited by low tumor immunogenicity and immunosuppressive microenvironment (TIME), which could be improved by "ROS-ferroptosis-glycolysis regulation" strategy. Herein, a Cancer cell membrane coated metal organic framework (MOF) loading with glucose oxidase (GOx) and doxorubicin (DOX) was constructed (denoted as mFe(SS)/DG). Benefiting from the homotypic targeting of Cancer cell membrane, the nanoplatform effectively accumulated in tumors. mFe(SS)/DG based on coordination between Fe3+ and disulfide-bearing ligand scavenged GSH and downregulated glutathione peroxide 4 (GPX4) to trigger Ferroptosis. GOx catalyzed glucose to generate abundant H2O2 for enhancing Fenton reaction, resulting in excessive ROS in tumors. The ROS burst simultaneously promoted Ferroptosis and inhibited glycolysis. Ferroptosis combined with DOX induced immunogenic cell death (ICD) and released tumor antigens to initiate antitumor immunity. Glycolysis repression remodeled TIME by decreasing lactate to solidify and boost the antitumor immunity. The smart biomimetic nanoplatform integrates tumor metabolism and immunity based on ROS-ferroptosis-glycolysis regulation, providing a potential anti-tumor strategy.

Keywords

Ferroptosis; Glycolysis; Immunogenic cell death (ICD); Immunosuppressive microenvironment (TIME); Metal organic framework (MOF); Reactive oxygen species (ROS).

Figures
Products
  • Cat. No.
    Product Name
    Description
    Target
    Research Area
  • HY-P1001
    99.94%, Caspase-3 Inhibitor