Literature DB >> 32820914

Endogenous Labile Iron Pool-Mediated Free Radical Generation for Cancer Chemodynamic Therapy.

Lisen Lin1,2,3, Sheng Wang4, Hongzhang Deng3, Weijing Yang3, Lang Rao3, Rui Tian3, Yuan Liu3, Guocan Yu3, Zijian Zhou3, Jibin Song2, Huang-Hao Yang2, Zhi-Yi Chen1, Xiaoyuan Chen3.   

Abstract

Current chemodynamic therapy (CDT) primarily relies on the delivery of transition metal ions with Fenton activity to trigger hydroxyl radical production from hydrogen peroxide. However, administration of an excess amount of exogenous Fenton-type heavy metals may cause potential adverse effects to human health, including acute and chronic damages. Here, we present a new CDT strategy that uses intracellular labile iron pool (LIP) as the endogenous source of Fenton-reactive metals for eliciting free radical generation, and the discovery of hydroperoxides (R'OOH) as an optimal LIP-mediated chemodynamic agent against cancer. By simulating the metabolic fates of peroxo compounds within cells, R'OOH was found to have excellent free radical-producing ability in the presence of labile iron(II) and to suffer only moderate elimination by glutathione/glutathione peroxidase, which contributes to its superior chemodynamic efficacy. The LIP-initiated nontoxic-to-toxic transition of R'OOH, together with increased LIP levels in tumor cells, enabled efficient and specific CDT of cancer. Moreover, pH/labile iron(II) cascade-responsive nanomedicines comprising encapsulated methyl linoleate hydroperoxide and LIP-increasing agent in pH-sensitive polymer particles were fabricated to realize enhanced CDT. This work not only paves the way to using endogenous Fenton-type metals for cancer therapy but also offers a paradigm for the exploration of high-performance chemodynamic agents activated by intracellular LIP.

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Year:  2020        PMID: 32820914     DOI: 10.1021/jacs.0c05604

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  19 in total

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3.  Cascade Drug-Release Strategy for Enhanced Anticancer Therapy.

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4.  Photodynamic-Chemodynamic Cascade Reactions for Efficient Drug Delivery and Enhanced Combination Therapy.

Authors:  Sheng Wang; Guocan Yu; Weijing Yang; Zhantong Wang; Orit Jacobson; Rui Tian; Hongzhang Deng; Lisen Lin; Xiaoyuan Chen
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5.  Tumor-specific activatable biopolymer nanoparticles stabilized by hydroxyethyl starch prodrug for self-amplified cooperative cancer therapy.

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Journal:  Theranostics       Date:  2022-01-01       Impact factor: 11.600

Review 6.  Recent advances in multifunctional nanomaterials for photothermal-enhanced Fenton-based chemodynamic tumor therapy.

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Review 7.  Recent advances of cancer chemodynamic therapy based on Fenton/Fenton-like chemistry.

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Review 8.  Targeting ferroptosis-based cancer therapy using nanomaterials: strategies and applications.

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9.  A tumor microenvironment responsive nanosystem for chemodynamic/chemical synergistic theranostics of colorectal cancer.

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Journal:  Theranostics       Date:  2021-08-18       Impact factor: 11.556

10.  The Labile Iron Pool Reacts Rapidly and Catalytically with Peroxynitrite.

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Journal:  Biomolecules       Date:  2021-09-09
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