Myeloid-targeting immunotherapies overcome inhibitory barriers in immune-evasive neuroblastoma.

针对髓系细胞的免疫疗法可以克服免疫逃逸性神经母细胞瘤的抑制屏障

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作者:Ménard Marie, Yoda Hiroyuki, Nasholm Nicole, Barata Megumi J, Wang Linyu, Simonds Erin F, Lu Edbert D, Wong-Michalak Shannon, McHenry Lauren, Farrel Alvin, Kaufman Rebecca, Lopez Vanessa, Kennedy Rebekah J, Fernandez G Esteban, Shimada Hiroyuki, Grossmann Liron D, Asgharzadeh Shahab, Maris John M, Gustafson W Clay, Weiss William A
Neuroblastomas are highly heterogeneous tumors originating from neural crest-derived cells destined to form the sympathetic nervous system. Nearly half of high-risk tumors present with amplification of the MYCN proto-oncogene. Here, we describe a Mycn-driven, transplantable, non-germline, genetically engineered mouse model (Mycn-nGEMM). Mycn-nGEMM tumors recapitulate the immune-evasive, macrophage-rich tumor microenvironment of high-risk, MYCN-amplified human neuroblastoma. Treatment of tumor-bearing mice with anti-PD-L1, but not anti-PD-1 or anti-CTLA-4, inhibited tumor growth, profoundly remodeling the tumor microenvironment by depleting anti-inflammatory macrophages and increasing T cell infiltration. Surprisingly, while tumor cells showed low expression of PD-L1, anti-inflammatory macrophages from both murine and human neuroblastoma expressed PD-L1. We identified cytokines, including macrophage migration inhibitory factor, secreted by the Mycn-nGEMM cancer cells that drive expression of PD-L1 on macrophages. Combining anti-PD-L1 with CD40 agonist antibodies further improved survival in Mycn-nGEMM mice, demonstrating the potential for myeloid-targeting immunotherapies to overcome inhibitory barriers in immune-evasive neuroblastoma.

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