RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
肿瘤细胞治疗研究
英文原题:TIM-3 in AML: pathogenic roles and therapeutic targetability.
TIM-3 in AML: pathogenic roles and therapeutic targetability.
分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。
急性髓系白血病(AML)由于免疫逃逸和复发,仍然是一个治疗难题。T细胞免疫球蛋白和黏蛋白结构域包含-3(TIM-3)是一种免疫检查点受体,在AML中的免疫细胞和白血病干细胞(LSCs)上异常表达。在生物学上,TIM-3主要介导有害效应,促进T细胞/NK功能障碍并支持LSC自我更新,但这种致病性表达也使TIM-3成为治疗上可操作的靶点。本叙述性综述综合了当前关于TIM-3在AML中作用的临床前和临床证据。
我们考察了其结构、信号通路以及在促进免疫抑制和LSC自我更新中的双重功能。对正在进行的治疗策略进行了全面分析,包括单克隆抗体和细胞疗法。通过检索PubMed、Scopus和Web of Science数据库识别相关文献,重点关注近期发表的研究。TIM-3通过诱导T细胞耗竭、损害NK细胞细胞毒性以及增强免疫抑制性髓系细胞,促进免疫失调。
同时,其在LSCs上的表达通过涉及Galectin-9和β-catenin通路的自分泌信号环路驱动白血病发生。临床前研究表明,TIM-3阻断可降低白血病干细胞频率并损害异种移植模型中的LSC重建,并可在实验系统中重振抗白血病免疫;然而,这些发现属于临床前研究,尚未转化为人类试验中一致的、随机临床获益,这凸显了在临床开发中采用生物标志物引导和联合方法的必要性(Kikushige et al. Cell Stem Cell 17(3):341–352, 2015; Kikushige et al.Cell Stem Cell7(6):708–717, 2010; Zeidan et al. Lancet Haematol11(1):e38–e50, 2024)。
在临床上,抗TIM-3抗体sabatolimab与去甲基化药物联合应用时显示出可耐受的安全性特征和初步的活性信号;然而,随机II期数据并未证明主要终点(完全缓解率和无进展生存期)具有统计学显著改善,此后基于这些结果对该开发项目进行了重新评估。TIM-3作为诊断和预后生物标志物也显示出前景。TIM-3在AML发病机制中发挥重要且多方面的作用,有证据支持其具有免疫调节功能以及在白血病干细胞生物学中的作用;然而,要确定TIM-3对所有AML亚型中LSC维持都是必不可少的,还需要额外的遗传学和功能学验证。靶向TIM-3仍然是解决AML中免疫抑制和LSC生物学问题的具有生物学吸引力的策略,但迄今为止在随机研究中尚未确立明确的临床获益;需要进一步研究,特别是在生物标志物富集、低肿瘤负荷的情况下以及合理的联合方案中,以明确其临床作用。
Acute Myeloid Leukemia (AML) remains a therapeutic challenge due to immune evasion and relapse. T-cell immunoglobulin and mucin domain-containing-3 (TIM-3) is an immune checkpoint receptor aberrantly expressed on immune cells and leukemic stem cells (LSCs) in AML.
Biologically, TIM-3 predominantly mediates deleterious effects, promoting T-cell/NK dysfunction and supporting LSC self-renewal, but this pathogenic expression also makes TIM-3 a therapeutically actionable target. This narrative review synthesizes current preclinical and clinical evidence on the role of TIM-3 in AML.
We examined its structure, signaling pathways, and dual functions in promoting immune suppression and LSC self-renewal. A comprehensive analysis of ongoing therapeutic strategies, including monoclonal antibodies and cellular therapies, was conducted. Relevant literature was identified through searches of PubMed, Scopus, and Web of Science databases, with a focus on recently published studies. TIM-3 contributes to immune dysregulation by inducing T-cell exhaustion, impairing NK cell cytotoxicity, and enhancing immunosuppressive myeloid cells. Concurrently, its expression on LSCs drives leukemogenesis through autocrine signaling loops involving Galectin-9 and the β-catenin pathway. Preclinical studies show that TIM-3 blockade reduces leukemic stem-cell frequency and impairs LSC reconstitution in xenograft models, and can reinvigorate anti-leukemic immunity in experimental systems; however, these findings are preclinical and have not yet translated into consistent, randomized clinical benefit in human trials, underscoring the need for biomarker-guided and combination approaches in clinical development (Kikushige et al. Cell Stem Cell 17(3):341–352, 2015; Kikushige et al. Cell Stem Cell7(6):708–717, 2010; Zeidan et al.
Lancet Haematol11(1):e38–e50, 2024). Clinically, the anti-TIM-3 antibody sabatolimab showed a tolerable safety profile and preliminary signals of activity when combined with hypomethylating agents; however, randomized phase II data did not demonstrate statistically significant improvements in the primary endpoints (complete response rate and progression-free survival), and the development program has since been re-evaluated in light of these results. TIM-3 also shows promise as a diagnostic and prognostic biomarker.
TIM-3 plays an important and multifaceted role in AML pathogenesis, with evidence supporting both immune-regulatory functions and roles in leukemic stem cell biology; however, definitive proof that TIM-3 is essential for LSC maintenance across all AML subtypes requires additional genetic and functional validation.
Targeting TIM-3 remains a biologically compelling strategy to address immune suppression and LSC biology in AML, but definitive clinical benefit has not been established in randomized studies to date; further investigation, especially in biomarker-enriched, low-tumor-burden settings and rational combinations, is required to define its clinical role.
MEMBER ACCOUNT
登录成功会直接打开下一页。