决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:pH-responsive activation of Tet-On inducible CAR-T cells enables spatially selective treatment of targeted solid tumors at reduced safety risk.
本研究强调,Doxy@CaCO 3 -PEG 诱导的 Tet-HER1-CAR-T 细胞 pH 响应性激活是一种高度空间选择性的策略,可有效清除靶向的实体瘤并提高安全性。
CAR-T(CAR-T)细胞疗法为实体瘤带来希望,但临床转化受到疗效不足和严重细胞因子释放综合征的阻碍。在此,我们工程化构建了四环素(Tet)On诱导型人表皮生长因子受体1(HER1)靶向CAR-T(Tet-HER1-CAR-T)细胞,并利用多西环素(Doxy)实现肿瘤部位的空间选择性激活;Doxy由pH响应型隐形碳酸钙脂质体纳米颗粒(Doxy@CaCO3-PEG)递送。与静脉注射常规HER1-CAR-T细胞或联合游离Doxy激活Tet-HER1-CAR-T细胞相比,同时静脉注射Tet-HER1-CAR-T细胞和Doxy@CaCO3-PEG,可使Tet-HER1-CAR-T细胞在肿瘤局部活化,并降低全身炎症性细胞因子分泌。Doxy@CaCO3-PEG还能中和肿瘤酸性,保护Tet-HER1-CAR-T细胞免受肿瘤酸性导致的功能障碍;与Tet-HER1-CAR-T细胞联合可有效抑制小鼠HER1过表达皮下三阴性乳腺癌(TNBC)、肺肿瘤及原位肺肿瘤生长。此外,Doxy@CaCO3-PEG激活的Tet-HER1-CAR-T细胞疗法可协同抑制对HER1抑制剂耐药的TNBC肿瘤,以及定植免疫抑制性具核梭杆菌(F.n.)的HER1过表达TNBC患者来源异种移植瘤。本研究表明,Doxy@CaCO3-PEG诱导的pH响应性Tet-HER1-CAR-T细胞激活,是一种空间选择性强、安全性更好的靶向实体瘤清除策略。
Chimeric antigen receptor T (CAR-T)-cell therapy is a promising resolution for solid tumors, but its corresponding clinical translation has been hindered by unsatisfactory therapeutic potency and severe cytokine release syndrome. Herein, tetracycline (Tet)-On inducible human epidermal growth factor receptor 1 (HER1)-targeted CAR-T (Tet-HER1-CAR-T) cells were engineered to enable spatially selective activation at tumor sites by doxycycline (Doxy), which is delivered by pH-responsive stealth liposomal calcium carbonate nanoparticles (Doxy@CaCO 3 -PEG). Compared with the intravenous administration of conventional HER1-CAR-T cells and Tet-HER1-CAR-T cells activated by free Doxy, concurrent intravenous administration of Tet-HER1-CAR-T cells and Doxy@CaCO 3 -PEG leads to the localized tumor activation of Tet-HER1-CAR-T cells and reduced systemic secretion of inflammatory cytokines. Together with its ability to protect Tet-HER1-CAR-T cells from tumor-acidity-induced dysfunction by neutralizing tumor acidity, Doxy@CaCO 3 -PEG injection synergized with Tet-HER1-CAR-T cells to effectively suppress the growth of HER1-overexpressing subcutaneous triple-negative breast cancer (TNBC) tumors, lung tumors and orthotopic lung tumors in mice. Furthermore, Doxy@CaCO 3 -PEG-activated Tet-HER1-CAR-T-cell therapy synergistically suppressed HER1 inhibitor-resistant TNBC tumors and immunosuppressive Fusobacterium nucleatum (F.n.) colonized HER1-overexpressing TNBC patient-derived tumor xenografts. This study highlights that the Doxy@CaCO 3 -PEG-induced pH-responsive activation of Tet-HER1-CAR-T cells is a highly spatially selective strategy for effectively eradicating targeted solid tumors with improved safety.
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