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二甲双胍作为乳腺癌中的免疫代谢调节剂:整合 NK 和 NKT 细胞反应

英文原题:Metformin as an immunometabolic modulator in breast cancer: integrating NK and NKT cell responses.

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Metformin as an immunometabolic modulator in breast cancer: integrating NK and NKT cell responses.

PubMed 2026/02/25(内容时间) 3 Biotech Q3 · IF 3.1(JCR 2025)

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中文摘要

乳腺癌进展日益被认为是一种免疫代谢紊乱,其中肿瘤内在的代谢重编程与微环境应激汇聚,损害先天免疫监视。除其在血糖控制中的既定作用外,二甲双胍已成为一种具有抗癌潜力的有前景的免疫代谢调节剂。不断积累的证据表明,二甲双胍通过靶向关键代谢脆弱性,包括失调的糖酵解、脂质代谢和线粒体能量代谢,抑制乳腺肿瘤生长,同时恢复先天免疫效应细胞的功能能力,尤其是自然杀伤(NK)细胞和自然杀伤T(NKT)细胞。在分子水平上,二甲双胍参与以AMP活化蛋白激酶(AMPK)为中心的信号传导和线粒体复合物I相关的能量应激,从而导致mTOR活性、氧化还原平衡、自噬和RNA介导的调控网络的下游调节。这些协同效应降低肿瘤细胞可塑性并增强免疫允许性。在肿瘤微环境中,二甲双胍减弱激素依赖性基质支持,破坏免疫抑制性髓系网络,使趋化因子和细胞因子谱正常化,并促进抗原呈递和先天免疫细胞募集。临床前研究一致表明,二甲双胍治疗后肿瘤发生延迟、侵袭性乳腺癌亚型受到抑制、癌症干细胞维持受损,以及NK/NKT介导的抗肿瘤监视得到增强。

然而,新兴的临床和转化证据表明,治疗效果具有情境依赖性,受肿瘤分子亚型、宿主代谢状态、免疫组成以及通路特异性生物标志物参与的影响。本综述批判性地综合了机制、临床前和临床研究发现,将二甲双胍定位为乳腺癌中靶向宿主的免疫代谢佐剂。通过整合代谢、先天免疫学、药理学和生物技术领域的见解,本工作强调了生物标志物引导分层和合理联合策略的机会,旨在增强乳腺癌治疗中NK/NKT细胞驱动的抗肿瘤免疫。

展开英文摘要原文

Breast cancer progression is increasingly recognized as an immunometabolic disorder in which tumor-intrinsic metabolic reprogramming and microenvironmental stress converge to impair innate immune surveillance. Beyond its established role in glycemic control, metformin has emerged as a promising immunometabolic modulator with anticancer potential. Accumulating evidence indicates that metformin suppresses breast tumor growth by targeting key metabolic vulnerabilities, including dysregulated glycolysis, lipid metabolism, and mitochondrial energetics, while simultaneously restoring the functional competence of innate immune effectors, particularly natural killer (NK) and natural killer T (NKT) cells.

At the molecular level, metformin engages AMP-activated protein kinase (AMPK)-centered signaling and mitochondrial complex I-associated energetic stress, leading to downstream modulation of mTOR activity, redox balance, autophagy, and RNA-mediated regulatory networks. These coordinated effects reduce tumor cell plasticity and enhance immune permissiveness.

Within the tumor microenvironment, metformin attenuates hormone-dependent stromal support, disrupts immunosuppressive myeloid networks, normalizes chemokine and cytokine profiles, and promotes antigen presentation and innate immune cell recruitment. Preclinical studies consistently demonstrate delayed tumor onset, suppression of aggressive breast cancer subtypes, impairment of cancer stem cell maintenance, and reinforcement of NK/NKT-mediated antitumor surveillance following metformin treatment.

However, emerging clinical and translational evidence suggests that therapeutic efficacy is context dependent, influenced by tumor molecular subtype, host metabolic status, immune composition, and pathway-specific biomarker engagement. This review critically synthesizes mechanistic, preclinical, and clinical findings to position metformin as a host-directed immunometabolic adjuvant in breast cancer.

Integrating insights from metabolism, innate immunology, pharmacology, and biotechnology, this work highlights opportunities for biomarker-guided stratification and rational combination strategies aimed at enhancing NK/NKT-cell-driven antitumor immunity in breast cancer therapy.

论文信息

作者
Jeyavelkumaran R、Harikrishnan S、Ravishankar S、Panneerselvam S
单位
Department of Pharmaceutics, Saveetha College of Pharmacy, Saveetha Institute of Medical and Technical Sciences (SIMATS), Chennai, 602105 India.India
文献类型
综述
期刊
3 Biotech2026 Mar
原文标识
PubMed 41768419 · DOI 10.1007/s13205-026-04744-9