Optical Fiber-Enabled in Situ Photocatalytic Hydrogen Generation for Infiltrating Tumor Therapy in Brain
ADVANCED HEALTHCARE MATERIALS(2024)
摘要
In addition to repressing proliferation, inhibiting the infiltration of tumor cells is an important strategy to improve the treatment of malignant tumors. Herein, a photocatalyst (pCNMC@Pt) is designed by sequentially assembling manganese dioxide, chlorin e6, and platinum (Pt) nanoparticles onto protonated graphitic carbon nitride. With the help of a Z-scheme structure and near-infrared (NIR) photosensitizer, pCNMC@Pt is capable of responding to NIR light to generate large amounts of hydrogen (H2). Taking lactic acid in the tumor microenvironment as a sacrificial reagent, H2 therapy initiated by the NIR photocatalyst remarkably impedes the growth of glioblastoma (GBM). More importantly, it is found that H2 can suppress the stemness of glioma stem cells, curbing both proliferation and infiltration of GBM. Furthermore, since pCNMC@Pt and light source are precisely co-localized through a self-built loading and illumination system, GBM in mouse brains can be efficiently treated, providing an alternative gas therapy approach to cure infiltrating tumors. A near-infrared light-responsive photocatalyst is formed to generate hydrogen (H2) in the tumor microenvironment, which is capable of inhibiting the proliferation and infiltration of glioblastoma cells. With the assistance of a self-built loading and illumination system, the photocatalyst is further used to treat glioblastoma orthotopic xenograft mice, demonstrating the desirable effect of in situ H2 therapy. image
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关键词
anti-infiltration,cancer stem cells,hydrogen,optical fiber,photocatalysis
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