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DIMATE 抑制 ALDH1 可维持免疫反应并促进 AML 中的免疫原性重塑

英文原题:ALDH1 inhibition by DIMATE maintains immune responses and promotes immunogenic remodeling in AML.

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ALDH1 inhibition by DIMATE maintains immune responses and promotes immunogenic remodeling in AML.

PubMed 2026/08/12(内容时间) Front Immunol Q1 · IF 7(JCR 2025)

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中文摘要

急性髓系白血病(AML)的治疗常导致严重免疫抑制,限制了免疫介导的残留病控制。DIMATE是一种正在临床评估中的ALDH1抑制剂,可诱导白血病细胞产生醛类和氧化还原应激,但其对免疫效应功能和肿瘤免疫原性的影响尚不明确。在此,我们评估了DIMATE对人免疫细胞和AML模型的影响,包括外周血单个核细胞、AML细胞系和原代AML样本。在药理学相关浓度下,DIMATE基本保留了选定的免疫效应功能,包括T细胞活化、NK 细胞细胞毒性和吞噬细胞氧化爆发。与此同时,DIMATE在AML细胞中诱导促炎性和内质网应激通路,上调共刺激分子,并促进ICD兼容特征,包括外露钙网蛋白。这些发现表明,DIMATE可能将免疫保护与增强的白血病免疫原性相结合,支持其与免疫参与疗法联合使用以及与靶向AML可测量残留病策略联合使用的潜力,同时也支持其作为单药能够营造更具免疫刺激性的抗白血病环境的潜力。

展开英文摘要原文

Acute myeloid leukemia (AML) treatments often cause profound immunosuppression, limiting immune-mediated control of residual disease. DIMATE, an ALDH1 inhibitor under clinical evaluation, induces aldehyde and redox stress in leukemic cells, but its impact on immune effector functions and tumor immunogenicity remains insufficiently defined.

Here, we assessed the effects of DIMATE on human immune cells and AML models, including peripheral blood mononuclear cells, AML cell lines, and primary AML samples. DIMATE largely preserved selected immune effector functions at pharmacologically relevant concentrations, including T-cell activation, natural killer cell cytotoxicity, and phagocyte oxidative burst.

In parallel, DIMATE induced pro-inflammatory and endoplasmic reticulum stress pathways in AML cells, upregulated co-stimulatory molecules, and promoted ICD-compatible features, including ecto-calreticulin exposure.

These findings suggest that DIMATE may couple immune preservation with enhanced leukemic immunogenicity, supporting its potential for combination with immune-engaging therapies and strategies targeting measurable residual disease in AML, but also as a single agent capable of fostering a more immunostimulatory anti-leukemic context.

论文信息

作者
Baier C、Colle J、Labiad Y、Rihet P、Pérez-Alea M、Loriod B、Ceylan I、Venton G
单位
Aix Marseille Univ, Theories and Approaches of Genomic Complexity (TAGC), INSERM UMR1090, Parc Scientifique de Luminy, Marseille, France.France
期刊
Frontiers in immunology2026
原文标识
PubMed 42656470 · DOI 10.3389/fimmu.2026.1876637