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glutathione persister cell Redox signaling-governed drug-tolerant cancer cell: a key spark of treatment failure Low-GPX4 drives a sustained drug-tolerant

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doi:10.1177/0269881112444324 [DOI] [PubMed] [Google Scholar] 163.Amato L, Davoli M, Perucci CA, Ferri M, Faggiano F, Mattick RP

glutathione persister cell Redox signaling-governed drug-tolerant cancer cell: a key spark of treatment failure Low-GPX4 drives a sustained drug-tolerant

10.1039/C1DT10862J 10.1039/C1DT10862J [DOI] [PubMed] [Google Scholar] Sharma VK, Graham NJD (2010) Oxidation of amino acids, peptides and proteins by ozone: a review

glutathione persister cell Redox signaling-governed drug-tolerant cancer cell: a key spark of treatment failure Low-GPX4 drives a sustained drug-tolerant

The X-linked inhibitor of apoptosis protein (XIAP) is a key inhibitor and regulator of the last step of apoptosis signal transduction

glutathione persister cell Redox signaling-governed drug-tolerant cancer cell: a key spark of treatment failure Low-GPX4 drives a sustained drug-tolerant

Duplicated P5CS genes of Arabidopsis play distinct roles in stress regulation and developmental control of proline biosynthesis

glutathione persister cell Redox signaling-governed drug-tolerant cancer cell: a key spark of treatment failure Low-GPX4 drives a sustained drug-tolerant

Inflammation enhances myeloid-derived suppressor cell cross-talk by signaling through toll-like receptor 4

glutathione persister cell Redox signaling-governed drug-tolerant cancer cell: a key spark of treatment failure Low-GPX4 drives a sustained drug-tolerant

Copper has been observed to be capable of assisting in the maintenance of blood vessel tissues

glutathione persister cell Redox signaling-governed drug-tolerant cancer cell: a key spark of treatment failure Low-GPX4 drives a sustained drug-tolerant

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