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pH-responsive sparfloxacin/Fe3+ nanoparticles eradicate intratumoral bacteria and activate ferroptosis for enhanced antitumor immunotherapy in breast cancer

Zhiting Sun, Ming Xu, Lu Nie, Changrong Wang, Jing Wu, Weiwei Wang, Shengbin Shi, Huijuan Song

2025Biomaterials5 citationsDOI

Topics & Concepts

Cancer researchBreast cancerTumor microenvironmentImmunotherapyChemistryMetastasisImmune systemCancer immunotherapyCancer cellCancerCytotoxic T cellPancreatic cancerGlutathioneCytotoxicityMedicineLipid peroxidationMicrovesiclesApoptosisTumor-associated macrophageBacteriaImmunogenic cell deathTumor progressionImmunityLung cancerCellImmunologyMammary tumorFerroptosis and cancer prognosisNanoplatforms for cancer theranosticsImmune cells in cancer
pH-responsive sparfloxacin/Fe3+ nanoparticles eradicate intratumoral bacteria and activate ferroptosis for enhanced antitumor immunotherapy in breast cancer | Litcius