CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Cell membrane-anchored and tumor-targeted IL-12 T-cell therapy destroys cancer-associated fibroblasts and disrupts extracellular matrix in heterogenous osteosarcoma xenograft models.
Cell membrane-anchored and tumor-targeted IL-12 T-cell therapy destroys cancer-associated fibroblasts and disrupts extracellular matrix in heterogenous osteosarcoma xenograft models.
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本研究揭示了一种靶向 CAFs/ECM 的新型疗法——attIL12-T 细胞。这些发现与人类高度相关,因为 CAFs 在人类骨肉瘤中大量存在。
细胞外基质(ECM)和肿瘤相关成纤维细胞(CAFs)在肿瘤进展、转移以及许多实体瘤对免疫治疗反应不佳中发挥主要作用。靶向CAF的CAR-T 细胞疗法无法浸润如骨肉瘤等ECM丰富的肿瘤。
在本研究中,我们使用RNA测序来评估最近发明的膜锚定和肿瘤靶向的IL-12武装(attIL12)T细胞,这些细胞结合肿瘤细胞表面的vimentin(CSV),是否能够破坏CAFs以破坏ECM。我们建立了骨肉瘤CAFs与attIL12-T细胞相互作用的体外模型,以揭示attIL12-T细胞穿透富含基质的骨肉瘤肿瘤的潜在机制。
RNA测序显示,attIL12-T细胞治疗改变了ECM相关基因的表达。免疫组化染色显示,attIL12-T细胞治疗后,骨肉瘤异种移植瘤中高密度CAF和ECM被破坏或消除,且CAF/ECM密度与T细胞浸润呈负相关。其他IL12武装的T细胞,如野生型IL-12靶向或肿瘤靶向IL-12-T细胞,并未破坏ECM,因为这一效应依赖于肿瘤细胞上的CSV与其在attIL12-T细胞上的配体之间的结合。机制研究发现,attIL12-T细胞治疗在与CSV+肿瘤细胞相互作用时提高了IFNγ的产生,抑制了转化生长因子β的分泌,进而上调了FAS介导的CAF凋亡。CAF的破坏重塑了肿瘤基质,有利于T细胞浸润和肿瘤抑制。
The extracellular matrix (ECM) and cancer-associated fibroblasts (CAFs) play major roles in tumor progression, metastasis, and the poor response of many solid tumors to immunotherapy. CAF-targeted chimeric antigen receptor-T cell therapy cannot infiltrate ECM-rich tumors such as osteosarcoma. METHOD: In this study, we used RNA sequencing to assess whether the recently invented membrane-anchored and tumor-targeted IL-12-armed (attIL12) T cells, which bind cell-surface vimentin (CSV) on tumor cells, could destroy CAFs to disrupt the ECM. We established an in vitro model of the interaction between osteosarcoma CAFs and attIL12-T cells to uncover the underlying mechanism by which attIL12-T cells penetrate stroma-enriched osteosarcoma tumors.
RNA sequencing demonstrated that attIL12-T cell treatment altered ECM-related gene expression. Immunohistochemistry staining revealed disruption or elimination of high-density CAFs and ECM in osteosarcoma xenograft tumors following attIL12-T cell treatment, and CAF/ECM density was inversely correlated with T-cell infiltration. Other IL12-armed T cells, such as wild-type IL-12-targeted or tumor-targeted IL-12-T cells, did not disrupt the ECM because this effect depended on the engagement between CSV on the tumor cell and its ligand on the attIL12-T cells. Mechanistic studies found that attIL12-T cell treatment elevated IFNγ production on interacting with CSV + tumor cells, suppressing transforming growth factor beta secretion and in turn upregulating FAS-mediated CAF apoptosis. CAF destruction reshaped the tumor stroma to favor T-cell infiltration and tumor inhibition.
This study unveiled a novel therapy-attIL12-T cells-for targeting CAFs/ECM. These findings are highly relevant to humans because CAFs are abundant in human osteosarcoma.
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