CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Transgenic Expression of IL15 Retains CD123-Redirected T Cells in a Less Differentiated State Resulting in Improved Anti-AML Activity in Autologous AML PDX Models.
Transgenic Expression of IL15 Retains CD123-Redirected T Cells in a Less Differentiated State Resulting in Improved Anti-AML Activity in Autologous AML PDX Models.
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表达双特异性T细胞接合器(ENG T-cells)的T细胞免疫疗法是改善复发/难治性急性髓系白血病(AML)患者预后的一种有前景的方法。
然而,与表达嵌合抗原受体(CAR)的T细胞类似,在慢性抗原刺激条件下其抗肿瘤活性受限。因此,我们旨在探索IL15的转基因表达是否能改善靶向CD123阳性AML的ENG T-cells的效应功能。通过逆转录病毒转导,利用健康供者或AML患者的外周血T细胞生成表达CD123特异性ENG(CD123-ENG)± IL15的T细胞。
在本研究中,我们在体外和体内详细表征了ENG T细胞群的表型和效应功能。与效应功能迅速衰退的CD123-ENG T-cells不同,表达IL15的CD123-ENG(CD123-ENG.IL15)T-cells在与AML原始细胞共培养超过30天的慢性抗原暴露条件下仍保持其抗原特异性和效应功能。
此外,CD123-ENG.IL15 T-cells保持较低的分化状态,表现为高频率的初始/记忆干细胞样T细胞(CD45RA + CCR7 + /CD45RO - CD62L + 细胞),且无T细胞耗竭的证据。利用IsoPlexis进行的单细胞细胞因子分析显示,CD123-ENG.IL15 T-cells的T细胞多功能性增强,表现为效应细胞因子产生增加,包括颗粒酶B、IFN-γ、MIP-1α、穿孔素、TNF-α和TNF-β。在体内,CD123-ENG.IL15 T 细胞在外周血和组织(BM、脾脏和肝脏)中均表现出更优的抗原特异性抗 AML 活性和 T 细胞持久性,在一个 AML 异种移植模型和两个自体 AML PDX 模型中产生了显著的生存优势。
总之,我们在此证明,CD123-ENG T 细胞的扩增、持久性和抗 AML 活性可通过 IL15 的转基因表达显著改善,后者促进了一种 naïve/TSCM 样表型。
然而,我们也强调,靶向单一肿瘤抗原(CD123)可导致免疫逃逸,这进一步说明需要开发靶向多种抗原的方法。同样,我们的研究表明,在 AML PDX 模型中评估自体 T 细胞是可行的,这对于未来下一代 AML 重定向 T 细胞疗法的临床前评估至关重要。
Immunotherapy with T-cells expressing bispecific T-cell engagers (ENG T-cells) is a promising approach to improve the outcomes for patients with recurrent/refractory acute myeloid leukemia (AML).
However, similar to T-cells expressing chimeric antigen receptors (CARs), their antitumor activity is limited in the setting of chronic antigen stimulation.
We therefore set out to explore whether transgenic expression of IL15 improves the effector function of ENG T-cells targeting CD123-positive AML. T-cells expressing CD123-specific ENG (CD123-ENG) ± IL15 were generated by retroviral transduction from peripheral blood T cells from healthy donors or patients with AML.
In this study, we characterized in detail the phenotype and effector functions of ENG T-cell populations in vitro and in vivo . IL15-expressing CD123-ENG (CD123-ENG. IL15) T-cells retained their antigen-specificity and effector function in the setting of chronic antigen exposure for more 30 days of coculture with AML blasts in contrast to CD123-ENG T-cells, whose effector function rapidly eroded.
Furthermore, CD123-ENG. IL15 T-cells remained in a less differentiated state as judged by a high frequency of naïve/memory stem T-cell-like cells (CD45RA + CCR7 + /CD45RO - CD62L + cells) without evidence of T-cell exhaustion. Single cell cytokine profiling using IsoPlexis revealed enhanced T-cell polyfunctionality of CD123-ENG.
IL15 T-cells as judged by effector cytokine production, including, granzyme B, IFN-γ, MIP-1α, perforin, TNF-α, and TNF-β. In vivo , CD123-ENG. IL15 T-cells exhibited superior antigen-specific anti-AML activity and T-cell persistence in both peripheral blood and tissues (BM, spleens, and livers), resulting in a significant survival advantage in one AML xenograft model and two autologous AML PDX models.
In conclusion, we demonstrate here that the expansion, persistence, and anti-AML activity of CD123-ENG T-cells can be significantly improved by transgenic expression of IL15, which promotes a naïve/TSCM-like phenotype.
However, we also highlight that targeting a single tumor antigen (CD123) can lead to immune escape, reinforcing the need to develop approaches to target multiple antigens. Likewise, our study demonstrates that it is feasible to evaluate autologous T cells in AML PDX models, which will be critical for future preclinical evaluations of next generation AML-redirected T-cell therapies.
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