Anticancer treatment is largely affected by the hypoxic tumor microenvironment (TME), which causes the resistance of the tumor to radiotherapy. Combining radiosensitizer compounds and O self-enriched moieties is an emerging strategy in hypoxic-tumor treatments. Herein, we engineered GdW@PDA-CAT (KNaHGdWO·2HO, GdW, polydopamine, PDA, catalase, CAT) composites as a radiosensitizer for the TME-manipulated enhancement of radiotherapy. In the composites, Gd (Z = 64) and W (Z = 74), as the high Z elements, make X-ray gather in tumor cells, thereby enhancing DNA damage induced by radiation. CAT can convert HO to O and HO to enhance the X-ray effect under hypoxic TME. CAT and PDA modification enhances the biocompatibility of the composites. Our results showed that GdW@PDA-CAT composites increased the efficiency of radiotherapy in HT29 cells in culture. This polyoxometalates and O self-supplement composites provide a promising radiosensitizer for the radiotherapy field.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8746738PMC
http://dx.doi.org/10.3390/molecules27010128DOI Listing

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