Biselective remodeling of the melanoma tumor microenvironment prevents metastasis and enhances immune activation in mouse models

肿瘤微环境 免疫系统 癌症研究 细胞外基质 转移 黑色素瘤 医学 肿瘤进展 癌症免疫疗法 癌症 生物 细胞 T细胞 免疫学 实验病理学 细胞迁移 热休克蛋白 免疫疗法 化学 炎症
作者
Nikolaos A. Afratis,Shivang Parikh,Idan Adir,Roma Parikh,Inna Solomonov,Órit Kollet,Sivan Gelb,Yuval Sade,Hananya Vaknine,Valentina Zemser‐Werner,Ronen Brenner,Eran Nizri‏,Dov Hershkovitz,Sylvie Ricard‐Blum,Carmit Levy,Irit Sagi
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:17 (820): eadp3236-eadp3236 被引量:8
标识
DOI:10.1126/scitranslmed.adp3236
摘要

The extracellular matrix (ECM) plays a crucial role in supporting metastasis in solid malignancies, yet effective ECM-targeted therapies remain scarce. Here, we introduce a dual-targeting strategy to combat melanoma by leveraging bispecific agents that disrupt key ECM and tumor-associated pathways. Building on the inhibitory properties of lysyl oxidase–propeptide (LOX-PP), we engineered biselective decoys that simultaneously target the collagen cross-linking enzyme LOX and heat shock protein 70 (HSP70), both of which are up-regulated during melanoma progression in both human and mouse models. This dual-targeting strategy offers a new avenue for disrupting ECM-driven tumor progression and enhancing therapeutic efficacy. Administered to mouse models of melanoma, the decoys reduced tumor burden and circulating melanoma cells by inhibiting proliferation and lung metastasis. Mechanistically, the decoys suppressed cancer-supporting ECM organization, inhibited ECM-remodeling pathways and associated enzymes, and reshaped the tumor immune microenvironment. The treatment modulated immune responses by enhancing neutrophil, B cell, and CD8 + T cell infiltration. In combination with immune check point inhibitor, the decoys further promoted melanoma killing by CD8 + T cells. The decoys efficiently bound multiple human tumors expressing LOX + /HSP70 + ex vivo. These findings highlight the potential of dual inhibition as a potential strategy for remodeling melanoma and other tumor microenvironments and enhancing immunotherapy efficacy.
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