工程化益生菌用于肿瘤靶向联合化学免疫治疗
Engineered probiotics for tumor-targeted combination chemoimmunotherapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:One CD4+TCR and One CD8+TCR Targeting Autochthonous Neoantigens Are Essential and Sufficient for Tumor Eradication.
One CD4+TCR and One CD8+TCR Targeting Autochthonous Neoantigens Are Essential and Sufficient for Tumor Eradication.
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两种癌症特异性 TCR 可能是根除表达未操纵、自体靶点的异质性实体瘤所必需且足够的。我们证明,在不影响疗效的情况下,简化过继性 TCR 疗法是可能的。
为了实现实体瘤的根除,我们研究了需要针对多少个新抗原,使用多少种T细胞受体(TCR),以及通过哪种类型的T细胞来实现。
未经改造、自然表达(自体)的新抗原通过过继转移的TCR工程化自体T细胞(TCR疗法)进行靶向。TCR疗法使用经TCR工程化的CD8+ T细胞亚群(CD8+TCR疗法)、经TCR工程化的CD4+ T细胞亚群(CD4+TCR疗法),或两者的组合。所靶向的肿瘤已建立至少3周,来源于原发性自体癌细胞培养物,类似于人类中发现的天然实体瘤及其异质性。
即使靶向异质性实体瘤上的多个不同自体新抗原,CD8+TCR 疗法仍常见复发。CD8+TCR 疗法仅对由癌细胞克隆人工构建的同质性肿瘤有效。相比之下,CD8+TCR 疗法与 CD4+TCR 疗法联合,各自靶向一个新抗原,可清除具有天然异质性的大体积已形成实体瘤。CD4+TCR 疗法靶向肿瘤间质上的突变新抗原,而 CD8+TCR 疗法对癌细胞的直接识别是治愈所必需的。体外数据与以下结果一致:清除癌细胞需要由 TCR 工程化 CD4+ 和 CD8+ T 细胞以及抗原呈递细胞和癌细胞组成的四细胞簇。
To achieve eradication of solid tumors, we examined how many neoantigens need to be targeted with how many T-cell receptors (TCR) by which type of T cells. EXPERIMENTAL DESIGN: Unmanipulated, naturally expressed (autochthonous) neoantigens were targeted with adoptively transferred TCR-engineered autologous T cells (TCR-therapy). TCR-therapy used CD8+ T-cell subsets engineered with TCRs isolated from CD8+ T cells (CD8+TCR-therapy), CD4+ T-cell subsets engineered with TCRs isolated from CD4+ T cells (CD4+TCR-therapy), or combinations of both. The targeted tumors were established for at least 3 weeks and derived from primary autochthonous cancer cell cultures, resembling natural solid tumors and their heterogeneity as found in humans.
Relapse was common with CD8+TCR-therapy even when targeting multiple different autochthonous neoantigens on heterogeneous solid tumors. CD8+TCR-therapy was only effective against homogenous tumors artificially derived from a cancer cell clone. In contrast, a combination of CD8+TCR-therapy with CD4+TCR-therapy, each targeting one neoantigen, eradicated large and established solid tumors of natural heterogeneity. CD4+TCR-therapy targeted a mutant neoantigen on tumor stroma while direct cancer cell recognition by CD8+TCR-therapy was essential for cure. In vitro data were consistent with elimination of cancer cells requiring a four-cell cluster composed of TCR-engineered CD4+ and CD8+ T cells together with antigen-presenting cells and cancer cells.
Two cancer-specific TCRs can be essential and sufficient to eradicate heterogeneous solid tumors expressing unmanipulated, autochthonous targets. We demonstrate that simplifications to adoptive TCR-therapy are possible without compromising efficacy.
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