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AMPK 激动作用优化了 CAR-T 细胞的体内持久性和抗白血病疗效

英文原题:AMPK agonism optimizes the in vivo persistence and anti-leukemia efficacy of chimeric antigen receptor T cells.

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AMPK agonism optimizes the in vivo persistence and anti-leukemia efficacy of chimeric antigen receptor T cells.

PubMed 2024/09/29(内容时间) bioRxiv

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研究概要

体外扩增过程对于生成足够数量的细胞是必要的,但往往会促进持续活化和分化,对体内持久性和功能产生负面影响。在此,我们证明在 CAR-T 扩增期间促进 AMPK 活性可在不限制 T 细胞产量的情况下对细胞进行代谢重编程,增强体内抗白血病疗效,并改善 CD4+ 体内持久性。重要的是,AMPK 激动无需进一步修改扩增培养基、改变 CAR-T 构建体或对细胞进行基因改造即可实现这些结果。总之,这些数据突出表明 AMPK 激动是一种有效且易于转化的方法,可改善靶向癌症 T 细胞的代谢特征和整体疗效。

研究思路结论见上方概要

CAR-T 细胞疗法已在临床上取得巨大成功。然而,高达50%的白血病患者会复发,长期生存者数据表明CAR-T 细胞持久性是实现无复发生存的关键。遗憾的是,体外扩增方案往往导致代谢和功能性耗竭,从而降低体内疗效。临床前模型已证明,在体外重定向代谢可改善体内T细胞功能,我们据此假设,暴露于靶向代谢调节因子AMP活化蛋白激酶(AMPK)的激动剂,将产生既能高效清除白血病又能增加体内持久性的CAR-T。

CAR-T 细胞通过慢病毒转导从健康人外周血中生成。激活后,细胞分别暴露于Compound 991或DMSO中96小时,随后进行48小时的洗脱。在激动剂处理期间及之后,收集T细胞进行代谢和功能评估。为测试体内疗效,将荧光素酶+ NALM6白血病细胞注射到免疫缺陷小鼠体内,一周后分别注射991或DMSO扩增的CAR-T 细胞。通过辐射成像和总生存期评估白血病负荷和抗白血病疗效。

在Compound 991中扩增的人T细胞激活了AMPK,且未限制细胞扩增,同时获得了线粒体密度增加和改善的活性氧(ROS)处理能力。重要的是,接受经991处理的CAR-Ts显著改善了体内白血病清除,延长了受体存活时间,并在注射后早期增加了CD4+ T细胞产量。在体外,991激动剂处理模拟了营养饥饿,增加了自噬流,并促进了线粒体保护性代谢物的生成。

展开英文摘要原文

Chimeric antigen receptor T cell (CART) therapy has seen great clinical success. However, up to 50% of leukemia patients relapse and long-term survivor data indicate that CART cell persistence is key to enforcing relapse-free survival. Unfortunately, ex vivo expansion protocols often drive metabolic and functional exhaustion, reducing in vivo efficacy. Preclinical models have demonstrated that redirecting metabolism ex vivo can improve in vivo T cell function and we hypothesized that exposure to an agonist targeting the metabolic regulator AMP-activated protein kinase (AMPK), would create CARTs capable of both efficient leukemia clearance and increased in vivo persistence.

CART cells were generated from healthy human via lentiviral transduction. Following activation, cells were exposed to either Compound 991 or DMSO for 96 hours, followed by a 48-hour washout. During and after agonist treatment, T cells were harvested for metabolic and functional assessments. To test in vivo efficacy, immunodeficient mice were injected with luciferase+ NALM6 leukemia cells, followed one week later by either 991- or DMSO-expanded CARTs. Leukemia burden and anti-leukemia efficacy was assessed via radiance imaging and overall survival.

Human T cells expanded in Compound 991 activated AMPK without limiting cellular expansion and gained both mitochondrial density and improved handling of reactive oxygen species (ROS). Importantly, receipt of 991-exposed CARTs significantly improved in vivo leukemia clearance, prolonged recipient survival, and increased CD4+ T cell yields at early times post-injection. Ex vivo, 991 agonist treatment mimicked nutrient starvation, increased autophagic flux, and promoted generation of mitochondrially-protective metabolites. DISCUSSION: Ex vivo expansion processes are necessary to generate sufficient cell numbers, but often promote sustained activation and differentiation, negatively impacting in vivo persistence and function. Here, we demonstrate that promoting AMPK activity during CART expansion metabolically reprograms cells without limiting T cell yield, enhances in vivo anti-leukemia efficacy, and improves CD4+ in vivo persistence. Importantly, AMPK agonism achieves these results without further modifying the expansion media, changing the CART construct, or genetically altering the cells. Altogether, these data highlight AMPK agonism as a potent and readily translatable approach to improve the metabolic profile and overall efficacy of cancer-targeting T cells.

论文信息

作者
Braverman EL、Qin M、Schuler H、Brown H、Wittmann C、Ramgopal A、Kemp F、Mullet SJ
单位
Department of Pediatrics, Division of Blood and Marrow Transplant and Cellular Therapies, University of Pittsburgh School of Medicine, Pittsburgh PA 15224.United States
文献类型
预印本
期刊
bioRxiv : the preprint server for biology2024 Sep 29
原文标识
PubMed 39386600 · DOI 10.1101/2024.09.26.615290