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Local Delivery of Molecular Hydrogen by Fluorinated Zeolitic Imidazole Framework Nanosheets Boosts Cancer
Xiang Liu1, Weidong Wang1, Tianze Wu2
1Department of Chemistry Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Fudan University Shanghai 200433, China.
Abstract:
Identifying strategies to improve the efficacy of the immune checkpoint blockade (ICB) remains a major clinical need. Based on the high tissue penetration capability of hydrogen molecules (H2) and their immunomodulatory effects, this work proposes a local gas delivery strategy targeting the tumor microenvironment for high-efficacy hydrogen immunotherapy. We synthesized hepta-fluorinated zeolitic imidazolate frameworks nanosheet (F7-ZIF) with high H2 payload, sustained acid-responsive gas release property, and biodegradation. H2-loaded F7-ZIF (F7-ZIF/H2) effectively released H2 and Zn2+ to induce significant mitochondrial damage and cell apoptosis. More importantly, F7-ZIF/H2 considerably upregulated the expression of CD47 ("do not eat me" signal) on tumor cells, which increases target accessibility for anti-CD47 antibody, thereby enhancing their binding efficiency. RNA-seq suggests that the CD47 antibody not only blocks the "do not eat me" signal (mediated by CD47-SIRPα interactions) but also engages Fc receptors on macrophages through its Fc region to trigger antibody-dependent cellular phagocytosis. In melanoma tumor models with small (∼50 mm3) and large sized established tumors (∼200 mm3), the combination of F7-ZIF/H2 and anti-CD47 reaches 90% and 83% of tumor inhibition rate, respectively, compared to free anti-CD47. When further combined with anti-PD-L1, the therapeutic system triggers systemic T cell immunity that rejects the progression of both primary and distal tumors. This work provides insights into gas-assisted cancer immunotherapy.
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