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In article number 1904619, Maurizio Prato, Önder Metin, Açelya Yilmazer, and co‐workers show that light exposure of g‐C3N4 results in the formation of reactive oxygen species, causing death of cancer cells in vitro and in vivo, as evident by classical methods as well as omics approaches. They suggest that photo‐excitation of g‐C3N4 could be used effectively in a photodynamic therapy protocol for cancer...
Thanks to its photocatalytic property, graphitic carbon nitride (g‐C3N4) is a promising candidate in various applications including nanomedicine. However, studies focusing on the suitability of g‐C3N4 for cancer therapy are very limited and possible underlying molecular mechanisms are unknown. Here, it is demonstrated that photoexcitation of g‐C3N4 can be used effectively in photodynamic therapy,...
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