Lupo Kyle B, Panjwani M Kazim, Shahid Sanam, Sottile Rosa, Lawry Clara, Kolk Gabryelle, Kontopolous Theodota, Daniyan Anthony F, Chandran Smita S, Klebanoff Christopher A, Hsu Katharine C
bioRxiv. 2024 Aug 1:2024.07.16.603785. doi: 10.1101/2024.07.16.603785.
Engineered T and NK cell therapies have widely been used to treat hematologic malignancies and solid tumors, with promising clinical results. Current chimeric antigen receptor (CAR) T cell therapeutics have, however, been associated with treatment-related adverse events such as cytokine release syndrome (CRS) and are prone to immunologic exhaustion. CAR-NK therapeutics, while not associated with CRS, have limited in vivo persistence. We now demonstrate that an NK-like TCRαβ CD8 T cell subset, identified and expanded ex vivo through its expression of the activating receptor NKG2C (NKG2C NK-like T cells), can be transduced to express a second-generation CD19 CAR (1928z), resulting in superior tumor clearance, longer persistence and decreased exhaustion compared to conventional 1928z CAR CD8 T cells and 1928z CAR+ NK cells. Moreover, CAR-modified NKG2C NK-like T cells resulted in significantly reduced CRS compared to conventional CAR CD8 T cells. Similarly, NKG2C NK-like T cells engineered with a TCR targeting the NY-ESO-1 antigen exhibit robust tumor control and minimal exhaustion compared to TCR-engineered conventional CD8 T cells. These data establish NKG2C NK-like T cells as a robust platform for cell engineering, and offer a safer, more durable alternative to conventional CAR-T and CAR-NK therapies.
工程化T细胞和NK细胞疗法已广泛用于治疗血液系统恶性肿瘤和实体瘤,临床结果令人鼓舞。然而,目前的嵌合抗原受体(CAR)T细胞疗法与细胞因子释放综合征(CRS)等治疗相关不良事件有关,并且容易出现免疫耗竭。CAR-NK疗法虽然与CRS无关,但在体内的持久性有限。我们现在证明,一种通过激活受体NKG2C的表达在体外鉴定和扩增的NK样TCRαβ CD8 T细胞亚群(NKG2C NK样T细胞)可以被转导以表达第二代CD19 CAR(1928z),与传统的1928z CAR CD8 T细胞和1928z CAR+ NK细胞相比,其具有更好的肿瘤清除效果、更长的持久性和更低的耗竭率。此外,与传统的CAR CD8 T细胞相比,CAR修饰的NKG2C NK样T细胞导致CRS显著降低。同样,与经TCR工程改造的传统CD8 T细胞相比,用靶向NY-ESO-1抗原的TCR工程改造的NKG2C NK样T细胞表现出强大的肿瘤控制能力和最小的耗竭。这些数据确立了NKG2C NK样T细胞作为细胞工程的强大平台,并为传统CAR-T和CAR-NK疗法提供了一种更安全、更持久的替代方案。