一种用于克服非小细胞肺癌治疗中抗原异质性的多靶向 CAR-T 细胞平台
A Multi-Targeting Chimeric Antigen Receptor-T Cell Platform to Overcome Antigen Heterogeneity in the Treatment of Non-Small Cell Lung Cancer.
这些发现支持采用多靶点CAR-T 策略来应对NSCLC及可能其他实体瘤中的抗原异质性。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Combined IL-2, agonistic CD3 and 4-1BB stimulation preserve clonotype hierarchy in propagated non-small cell lung cancer tumor-infiltrating lymphocytes.
Combined IL-2, agonistic CD3 and 4-1BB stimulation preserve clonotype hierarchy in propagated non-small cell lung cancer tumor-infiltrating lymphocytes.
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我们报告了使用 TIL 3.0 方法稳健扩增 T 细胞库的可行性,该 T 细胞库重现了 NSCLC 肿瘤中 T 细胞的克隆层级,包括大量推定的肿瘤特异性 TIL 克隆。如果扩大规模并作为唯一的扩增平台使用,TIL 3.0 的稳健性和速度可能有助于在 NSCLC 中测试 TIL-ACT 方法。
TIL(肿瘤浸润淋巴细胞)的过继细胞转移(ACT)在检查点阻断免疫治疗难治性非小细胞肺癌(NSCLC)患者中产生了临床获益,这重新激发了人们对TIL-ACT的兴趣。这项临床前研究探讨了使用改进的培养方法生产具有足够数量和增强特性的NSCLC TIL产品的可行性。
从切除的NSCLC肿瘤中提取的TIL最初采用以下方法培养:(1)传统方法,即在24孔板中单独使用白细胞介素(IL)-2(TIL 1.0),或(2)在G-Rex培养瓶中联合使用IL-2和针对CD3及4-1BB(Urelumab)的激动性抗体(TIL 3.0)。随后,TIL接受使用抗CD3的快速扩增方案(REP)。在REP前后,对扩增的TIL进行表型分析,并对T细胞受体(TCR)的互补决定区3可变区进行测序,以评估T细胞库。
与传统 TIL 1.0 方法相比,TIL 3.0 在更短的制备时间内稳健地扩增了 NSCLC TIL,同时富集了 CD8+ TIL,实现了更高的成功率,并且每次成功扩增产生的 TIL 多 5.3 倍。在 REP 之后也观察到 TIL 3.0 具有更高的增殖能力和 CD8 含量。两个扩增步骤均未使 TIL 终末分化/耗竭,但在第一步之后观察到一个分化程度较低的群体。最初使用 3.0 方法扩增的 TIL 表现出比 TIL 1.0 更高的克隆型广度,对应于与原始肿瘤更高的 repertoire 同源性,包括来自肿瘤的前 10 个最普遍克隆的比例更高。与 TIL 1.0 相比,TIL 3.0 还保留了更高比例的推定肿瘤特异性 TCR。发现 REP 中 TIL 的数值扩增扰乱了克隆层级,并降低了来自 TIL 3.0 过程的推定肿瘤特异性 TIL 的比例。
Adoptive cell transfer (ACT) of tumor-infiltrating lymphocytes (TIL) yielded clinical benefit in patients with checkpoint blockade immunotherapy-refractory non-small cell lung cancer (NSCLC) prompting a renewed interest in TIL-ACT. This preclinical study explores the feasibility of producing a NSCLC TIL product with sufficient numbers and enhanced attributes using an improved culture method.
TIL from resected NSCLC tumors were initially cultured using (1) the traditional method using interleukin (IL)-2 alone in 24-well plates (TIL 1.0) or (2) IL-2 in combination with agonistic antibodies against CD3 and 4-1BB (Urelumab) in a G-Rex flask (TIL 3.0). TIL subsequently underwent a rapid expansion protocol (REP) with anti-CD3. Before and after the REP, expanded TIL were phenotyped and the complementarity-determining region 3 variable region of the T-cell receptor (TCR) was sequenced to assess the T-cell repertoire.
TIL 3.0 robustly expanded NSCLC TIL while enriching for CD8 + TIL in a shorter manufacturing time when compared with the traditional TIL 1.0 method, achieving a higher success rate and producing 5.3-fold more TIL per successful expansion. The higher proliferative capacity and CD8 content of TIL 3.0 was also observed after the REP. Both steps of expansion did not terminally differentiate/exhaust the TIL but a lesser differentiated population was observed after the first step. TIL initially expanded with the 3.0 method exhibited higher breadth of clonotypes than TIL 1.0 corresponding to a higher repertoire homology with the original tumor, including a higher proportion of the top 10 most prevalent clones from the tumor. TIL 3.0 also retained a higher proportion of putative tumor-specific TCR when compared with TIL 1.0. Numerical expansion of TIL in a REP was found to perturb the clonal hierarchy and lessen the proportion of putative tumor-specific TIL from the TIL 3.0 process.
We report the feasibility of robustly expanding a T-cell repertoire recapitulating the clonal hierarchy of the T cells in the NSCLC tumor, including a large number of putative tumor-specific TIL clones, using the TIL 3.0 methodology. If scaled up and employed as a sole expansion platform, the robustness and speed of TIL 3.0 may facilitate the testing of TIL-ACT approaches in NSCLC.
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