CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Sequential treatment with PARPi and WEE1i enhances antitumor immune responses in preclinical models of ovarian cancer.
Sequential treatment with PARPi and WEE1i enhances antitumor immune responses in preclinical models of ovarian cancer.
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DNA 损伤应答抑制剂(DDRi)的抗肿瘤活性部分归因于其增强免疫应答的能力。然而,DDRi 对淋巴细胞的毒性,尤其是与其他靶向细胞周期检查点激酶的治疗联用时,提示需要开发不同的 DDRi 给药时序。
本研究系统评估了卵巢癌在不同治疗时间安排下,肿瘤免疫微环境(TIME)对 DDRi 的变化。通过单细胞分析,研究者发现,先给予聚(ADP-核糖)聚合酶抑制剂(PARPi),随后给予细胞周期检查点激酶 WEE1 抑制剂(WEE1i)的序贯治疗,与单药或同步治疗相比,可在体内更有效清除肿瘤并产生更强抗肿瘤免疫应答。序贯和同步治疗均可在癌细胞中诱导致死性 DNA 损伤并激活 cGAS-STING 通路,但序贯治疗下 T 细胞存活率更高。蛋白质组分析显示,DDRi 治疗后 T 细胞从 DNA 损伤中恢复的速度快于癌细胞。在同基因型高级别浆液性卵巢癌小鼠模型和治疗耐药卵巢癌患者来源异种移植模型中,免疫检查点治疗及 CAR-T 细胞与序贯方案联用时,疗效均优于其单药治疗。
本研究显示,PARPi 后序贯 WEE1i 可避免 T 细胞遭受严重 DNA 损伤,并激活癌细胞中的 cGAS-STING 通路,提示通过调整治疗时序可优化抗肿瘤免疫和肿瘤控制。
The antitumor activity demonstrated by DNA damage response inhibitors (DDRis) can be partially attributed to their capacity to enhance immune responses.
However, the toxicity of DDRis to lymphocytes, particularly when a DDRi is combined with other treatments targeting cell cycle checkpoint kinases, indicates a need for the development of different DDRi treatment schedules.
Here, we systematically assessed changes to the tumor immune microenvironment (TIME) in response to DDRis across various treatment timelines in ovarian cancer. Using single-cell analysis, we found that the sequential treatment with an inhibitor of poly(ADP-ribose) polymerase (PARPi), followed by an inhibitor of the cell cycle checkpoint kinase WEE1 (WEE1i), resulted in more effective cancer eradication and stronger antitumor immune responses in vivo, compared with mono- and concurrent therapy.
Both sequential and concurrent treatment schedules could induce lethal DNA damage and activate the cGAS-STING pathway in cancer cells, but T cell viability was greater under sequential treatment. Proteomic analysis showed that T cells more quickly recovered from DNA damage after DDRi treatment compared with cancer cells.
Both immune checkpoint therapy and CAR T cells were more effective when combined with sequential treatment compared with monotherapy treatment in a syngeneic high-grade serous ovarian cancer mouse model and in a treatment-resistant ovarian cancer patient-derived xenograft model.
Our study demonstrated that sequential treatment with PARPi and WEE1i spared T cells from severe DNA damage and activated the cGAS-STING pathway in cancer cells, suggesting that antitumor immunity and control of tumor growth can be optimized through changes in treatment schedules.
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