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glutathione cell uptake Glutathione/pH-responsive copper-based nanoplatform for amplified chemodynamic therapy through synergistic cycling regeneration of reactive oxygen species and dual depletion Human cancer-associated fibroblasts enhance glutathione

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Herbert MR

glutathione cell uptake Glutathione/pH-responsive copper-based nanoplatform for amplified chemodynamic therapy through synergistic cycling regeneration of reactive oxygen species and dual depletion Human cancer-associated fibroblasts enhance glutathione

doi: 10.1038/s41564-025-02122-4 46 GanserC.StaplesM

glutathione cell uptake Glutathione/pH-responsive copper-based nanoplatform for amplified chemodynamic therapy through synergistic cycling regeneration of reactive oxygen species and dual depletion Human cancer-associated fibroblasts enhance glutathione

(57) found that zero-valent iron (ZVI), a nanoparticle capable of inducing ferroptosis in tumor cells, was able to convert M2 type TAM into M1 type, lifting the inhibition of anti-tumor immunity

glutathione cell uptake Glutathione/pH-responsive copper-based nanoplatform for amplified chemodynamic therapy through synergistic cycling regeneration of reactive oxygen species and dual depletion Human cancer-associated fibroblasts enhance glutathione

Signs might include itching, hives, or difficulty breathing

glutathione cell uptake Glutathione/pH-responsive copper-based nanoplatform for amplified chemodynamic therapy through synergistic cycling regeneration of reactive oxygen species and dual depletion Human cancer-associated fibroblasts enhance glutathione

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