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高活性骨髓治疗癌症。

Highly Active Myeloid Therapy for Cancer.

机构信息

Center for Systems Biology, Massachusetts General Hospital, 185 Cambridge Street, CPZN 5206, Boston, Massachusetts 02114, United States.

Department of Pathology, Massachusetts General Hospital, Boston, Massachusetts 02114, United States.

出版信息

ACS Nano. 2023 Oct 24;17(20):20666-20679. doi: 10.1021/acsnano.3c08034. Epub 2023 Oct 12.

Abstract

Tumor-associated macrophages (TAM) interact with cancer and stromal cells and are integral to sustaining many cancer-promoting features. Therapeutic manipulation of TAM could therefore improve clinical outcomes and synergize with immunotherapy and other cancer therapies. While different nanocarriers have been used to target TAM, a knowledge gap exists on which TAM pathways to target and what payloads to deliver for optimal antitumor effects. We hypothesized that a multipart combination involving the Janus tyrosine kinase (JAK), noncanonical nuclear factor kappa light chain enhancer of activated B cells (NF-κB), and toll-like receptor (TLR) pathways could lead to a highly active myeloid therapy (HAMT). Thus, we devised a screen to determine drug combinations that yield maximum IL-12 production from myeloid cells to treat the otherwise highly immunosuppressive myeloid environments in tumors. Here we show the extraordinary efficacy of a triple small-molecule combination in a TAM-targeted nanoparticle for eradicating murine tumors, jumpstarting a highly efficient antitumor response by adopting a distinctive antitumor TAM phenotype and synergizing with other immunotherapies. The HAMT therapy represents a recently developed approach in immunotherapy and leads to durable responses in murine cancer models.

摘要

肿瘤相关巨噬细胞(TAM)与癌症和基质细胞相互作用,是维持许多促进癌症特征的关键。因此,对 TAM 的治疗性操作可以改善临床结果,并与免疫疗法和其他癌症疗法协同作用。虽然已经使用了不同的纳米载体来靶向 TAM,但对于应该靶向哪些 TAM 途径以及应该传递哪些有效载荷以获得最佳的抗肿瘤效果,仍存在知识空白。我们假设涉及 Janus 酪氨酸激酶(JAK)、非典型核因子 kappa 轻链增强子激活 B 细胞(NF-κB)和 Toll 样受体(TLR)途径的多部分组合可能导致高度活跃的髓样细胞治疗(HAMT)。因此,我们设计了一个筛选,以确定从髓样细胞中产生最大 IL-12 产量的药物组合,以治疗肿瘤中原本高度免疫抑制的髓样环境。在这里,我们展示了一种三小分子组合在靶向 TAM 的纳米颗粒中的非凡疗效,该纳米颗粒可根除小鼠肿瘤,通过采用独特的抗肿瘤 TAM 表型和与其他免疫疗法协同作用,引发高效的抗肿瘤反应。HAMT 疗法代表了免疫疗法中的一种新方法,可导致小鼠癌症模型中的持久反应。

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