Linhui Wang, Xiaomeng Liu, Tao Zhu, Zirun Su, Ruiping Liu, Zhe Li, Kaixuan Du, Kaipeng Jia, Chong Fu, Yuda Lin, Zihan Xue, Zhe Zhang, Chong Shen, Yunkai Qie, Zhouliang Wu, Zhiheng Liu, Kangkang Liu, Jingyuan Xu, Hailong Hu
Cisplatin (CDDP) chemosensitivity and severe toxicity severely limit its clinical application in muscle-invasive bladder cancer (MIBC) and non-muscle-invasive bladder cancer (NMIBC). To address these unmet clinical needs, we synthesized a series of melatonin-conjugated platinum(IV) prodrugs functionalized with isocyanate chains (compounds 5‒12), and identified MP-12C (compound 11) as the lead candidate with optimal potency and safety. In vitro assays showed that MP-12C exhibited far stronger antiproliferative activity than CDDP and mitomycin C in parental and CDDP-resistant bladder cancer cells. Multiple in vivo models, including subcutaneous xenograft, orthotopic, and chemically induced spontaneous bladder cancer models, were adopted. Both intravenous injection and intravesical instillation of MP-12C achieved robust tumor suppression while reducing toxicity compared to conventional chemotherapeutics. Mechanistically, MP-12C downregulated the TCF4/COL6A3 axis to suppress collagen VI secretion by bladder cancer cells, thereby remodeling the extracellular matrix (ECM) and enhancing the sensitivity of bladder cancer cells to CDDP. MP-12C triggered immunogenic cell death and persistently activated the cGAS-STING pathway, promoting dendritic cell maturation and CD8+ T cell infiltration to remodel the antitumor immune microenvironment. Collectively, MP-12C integrates ECM modulation and immune activation to exert superior anti-bladder cancer efficacy with favorable safety, thus providing a promising platinum(IV) prodrug strategy for NMIBC and MIBC.