Osteosarcoma (OS), the most common primary bone malignancy in adolescents, faces limited treatment options and high chemoresistance rates. Hydrogen sulfide (H2S), an endogenously produced gaseous signaling molecule that regulates cellular redox homeostasis, promotes chemoresistance in multiple cancers, but its role in osteosarcoma remains unclear. Here, we identify endogenous H2S as a key driver of cisplatin resistance in osteosarcoma and develop a novel H2S-targeting theranostic platform named bismuth-based metal-organic nanocapsule network (Bi-MONC). The nanocapsule exhibits excellent drug-loading capacity. During circulation, Bi-MONC undergoes gradual size reduction and disassembly into smaller particles while remaining as discrete nanoparticles until it reaches the osteosarcoma site. Furthermore, Bi-MONC binds intracellular H2S to form Bi2S3, enabling in situ photoacoustic imaging of tumors while triggering ferroptosis via endoplasmic reticulum stress and ubiquitin-mediated proteasomal degradation of GPX4, enhancing cisplatin efficacy. This dual-action material overcomes enzymatic redundancy in H2S production, offering a universal approach to scavenge intracellular H2S. Collectively, our study presents an innovative strategy that simultaneously addresses the challenges of precise diagnosis and chemoresistance in osteosarcoma.
山东省济南市章丘区文博路2号
齐鲁师范学院 genelibs生信实验室
山东省济南市高新区舜华路750号
大学科技园北区F座4单元2楼
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