下一代肿瘤不可知靶点即将出现
Next-generation tumor-agnostic targets on the horizon.
肿瘤不可知药物开发将肿瘤学重新聚焦于共享的分子依赖性而非组织来源,从而能够针对跨肿瘤的罕见可操作驱动因素进行高效开发。
英文原题:Restoring STING expression in soft tissue sarcoma increases activation and function of tumor-infiltrating lymphocytes.
我们的研究结果表明,在STS中控制性表观遗传激活STING可增强免疫细胞浸润和肿瘤细胞杀伤。
肉瘤是罕见的、高度异质性的恶性肿瘤,其中软组织肉瘤(STS)包含近80种组织学亚型。局限性STS通常采用手术和放疗治疗,而转移性疾病主要依赖化疗,但获益有限。尽管炎症影响肿瘤发生、治疗反应和预后,免疫检查点抑制剂在肉瘤中显示出极小的疗效。环GMP-AMP合成酶(cGAS)-干扰素基因刺激因子(STING)通路与多种癌症类型的突变负荷、基因组不稳定性、免疫细胞浸润和治疗反应相关。然而,其在肉瘤中的作用仍不清楚。在一个新建立的STS患者队列中,我们发现原发肿瘤中STING表达与免疫细胞浸润相关。利用脂质纳米颗粒(LNP)介导的CRISPR激活mRNA组分递送,我们在STS细胞中恢复了STING表达,从而重新激活cGAS-STING信号传导。这在2D和3D患者来源模型中促进了T细胞识别和肿瘤细胞杀伤,并增强了对anti-PD-1治疗的反应。总之,我们的结果表明,在STS中受控的表观遗传激活STING可增强免疫浸润和肿瘤细胞杀伤。因此,通过CRISPR激活靶向STING可能代表一种有前景的STS治疗策略。
Sarcomas are rare, highly heterogeneous malignancies, with soft tissue sarcomas (STS) comprising nearly 80 histological subtypes. Localized STS is generally treated with surgery and radiotherapy, whereas metastatic disease relies largely on chemotherapy, which offers limited benefit. Although inflammation influences tumor development, treatment response, and prognosis, immune checkpoint inhibitors have shown minimal efficacy in sarcoma. The cyclic GMP-AMP synthase (cGAS)-stimulator of interferon genes (STING) pathway is linked to mutational burden, genomic instability, immune cell infiltration, and therapeutic response across multiple cancer types. However, its role in sarcoma remains unclear. In a newly established cohort of STS patients, we found that STING expression in primary tumors correlates with immune cell infiltration. Using a lipid nanoparticle (LNP)-mediated delivery of CRISPR activation mRNA components, we restored STING expression in STS cells, thereby reactivating cGAS-STING signaling. This promoted T‑cell recognition and tumor cell killing in both 2D and 3D patient-derived models and enhanced responses to anti-PD-1 treatment. Together, our results show that controlled epigenetic activation of STING in STS enhances immune infiltration and tumor cell killing. Targeting STING through CRISPR activation may therefore represent a promising therapeutic strategy for STS.
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