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:Dihydroartemisinin enhances NKG2D CAR-T cell therapy against solid tumors by inducing NKG2D ligands and remodeling the tumor microenvironment.
Dihydroartemisinin enhances NKG2D CAR-T cell therapy against solid tumors by inducing NKG2D ligands and remodeling the tumor microenvironment.
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尽管CAR-T 细胞疗法已获批用于治疗血液系统恶性肿瘤,但其在实体瘤中的成功仍受多种因素限制,包括抗原逃逸、免疫抑制性肿瘤微环境(TME)以及T细胞向肿瘤部位迁移不足。可识别多种应激诱导型NKG2D配体(NKG2DL)的NKG2D CAR-T 细胞颇具前景,但抗肿瘤获益有限。能够提高NKG2DL表达并重塑TME的药物可能有助于克服这些障碍。
本研究发现,临床已批准的抗疟药二氢青蒿素(DHA)是一种新的NKG2DL诱导剂:在非细胞毒性浓度下,DHA可诱导肿瘤细胞表达NKG2DL,且不影响原代人T细胞。转录组分析显示,这一作用涉及DNA损伤应答、p53和PI3K/Akt信号通路激活。
此外,DHA上调MHC-I并抑制B7-H3表达,促进招募T细胞的趋化因子CXCL9和CXCL10分泌,并使巨噬细胞向M1样表型极化,从而有助于形成免疫刺激性TME。在功能层面,DHA预处理肿瘤细胞可显著增强NKG2D CAR-T 细胞的激活、迁移和细胞毒性。在胰腺癌和前列腺癌异种移植模型中,DHA联合NKG2D CAR-T 细胞可增加肿瘤内T细胞浸润,显著控制肿瘤,且未见全身毒性。
本研究首次证明DHA可上调肿瘤NKG2DL,并通过调节肿瘤免疫轴重编程TME。研究结果确立DHA为一种临床可及、具有较强转化潜力的药理学辅助药物,有望改善NKG2D CAR-T 对实体瘤的治疗效果。
Despite the clinical approval of CAR-T cell therapies for hematological malignancies, their success in solid tumors remains limited due to several factors including antigen escape, immunosuppressive tumor microenvironment (TME), and poor T-cell trafficking to the tumor site. NKG2D CAR-T cells, recognizing multiple stress-inducible NKG2D ligands (NKG2DLs), offer a promising but modest antitumor benefit. Pharmacological agents capable of enhancing NKG2DLs expression and remodeling the TME may overcome these barriers.
Here, we identified dihydroartemisinin (DHA), a clinically approved antimalarial compound as a novel inducer of NKG2DLs in tumor cells at non-cytotoxic concentrations without affecting primary human T cells. Transcriptomic analysis revealed that this effect involves activation of DNA damage response, p53, and PI3K/Akt signaling pathways.
In addition, DHA upregulated MHC-I and suppressed B7-H3 expression, promoted secretion of T-cell-recruiting chemokines (CXCL9, CXCL10), and polarized macrophages toward an M1-like phenotype, thus contributes to an immunostimulatory TME. Functionally, DHA pretreatment of tumor cells significantly enhanced NKG2D CAR-T cell activation, trafficking, and cytotoxicity. In pancreatic and prostate xenograft models, DHA combined with NKG2D CAR-T cells increased intratumoral T-cell infiltration which led to significant tumor control without any systemic toxicity.
This study provides the first evidence that DHA upregulates tumor NKG2DLs and reprograms the TME through modulation of tumor immune axis.
Our findings establish DHA as a clinically accessible pharmacological adjuvant with strong translational potential to improve NKG2D CAR-T therapy against solid tumors.
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