CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Mechanism of inert inflammation in an immune checkpoint blockade-resistant tumor subtype bearing transcription elongation defects.
Mechanism of inert inflammation in an immune checkpoint blockade-resistant tumor subtype bearing transcription elongation defects.
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免疫检查点阻断(ICB)的临床应答与治疗前肿瘤浸润细胞毒性T淋巴细胞(CTL)相关,但不少炎症型肿瘤仍通过未知机制抵抗ICB。研究显示,转录延伸缺陷(TE缺陷)肿瘤在基线时CTL较高;此前已在小鼠模型和临床观察到此类肿瘤对ICB耐药。基线CTL升高源于核酸感知-TBK1-CCL5/CXCL9信号级联异常激活,形成Treg增多、CTL耗竭的免疫抑制性微环境。无论实验还是临床,ICB均未能增加TE缺陷肿瘤的CTL浸润或抑制肿瘤生长。结果提示,在决定是否采用免疫治疗时,应考虑TE缺陷状态,并结合肿瘤突变负荷、CTL等肿瘤免疫原性替代指标。
The clinical response to immune checkpoint blockade (ICB) correlates with tumor-infiltrating cytolytic T lymphocytes (CTLs) prior to treatment.
However, many of these inflamed tumors resist ICB through unknown mechanisms.
We show that tumors with transcription elongation deficiencies (TE def+ ), which we previously reported as being resistant to ICB in mouse models and the clinic, have high baseline CTLs.
We show that high baseline CTLs in TE def+ tumors result from aberrant activation of the nucleic acid sensing-TBK1-CCL5/CXCL9 signaling cascade, which results in an immunosuppressive microenvironment with elevated regulatory T cells and exhausted CTLs.
ICB therapy of TE def+ tumors fail to increase CTL infiltration and suppress tumor growth in both experimental and clinical settings, suggesting that TE def+ , along with surrogate markers of tumor immunogenicity such as tumor mutational burden and CTLs, should be considered in the decision process for patient immunotherapy indication.
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