研究概要
三阴性乳腺癌(TNBC)已被公认为乳腺癌中最具侵袭性的亚型之一。
中文摘要
三阴性乳腺癌(TNBC)被公认为乳腺癌中侵袭性最强的亚型之一。TNBC不表达雌激素受体(ER)、孕激素受体(PR)或人表皮生长因子受体2(HER2),因此无法采用其他乳腺癌亚型的传统疗法。目前TNBC治疗仍高度依赖细胞毒性化疗,近年也采用免疫检查点抑制剂,但后者仅使少数患者获得持久应答。新兴研究强调,肿瘤免疫代谢参与免疫逃逸和治疗难治性行为。其中一个最有前景的机制是由胞外核苷酸酶CD39/CD73作用形成的胞外腺苷(eADO)轴,并通过腺苷A2A受体(A2AR)传递信号。eADO浓度升高会刺激A2AR,使免疫细胞代谢由促炎、糖酵解状态转向免疫抑制、抗炎的氧化代谢状态。这种代谢改变会抑制T淋巴细胞和自然杀伤(NK)细胞依赖的细胞毒性,并促使髓系细胞,尤其巨噬细胞,呈现M2样促肿瘤表型。在TNBC中,缺氧和氧化应激均会上调腺苷能信号,从而进一步加剧免疫功能障碍。本综述聚焦A2AR的机制作用,并结合肿瘤生物学阐释其功能,旨在解释A2AR在肿瘤微环境(TME)不同区室中的调节作用,并重点分析其与糖酵解代谢检查点(包括缺氧诱导因子1α[HIF-1α]及AMP活化蛋白激酶[AMPK])的相互作用,为评估其治疗靶向潜力提供依据。
展开英文摘要原文
Triple-negative breast cancer (TNBC) has been well-recognized as one of the most aggressive subtypes of breast cancer. TNBC lacks the expression of the estrogen receptor (ER), progesterone receptor (PR), or human epidermal growth factor receptor 2 (HER2), due to which TNBC cannot be treated using traditional therapies available for other subtypes of breast cancer. As a result, TNBC remains heavily dependent on cytotoxic chemotherapy and, more recently, immune-checkpoint inhibitors, although the latter provide durable responses in a limited number of patients. Emerging research has underscored the role of tumor immunometabolism in immune evasion and therapy-refractive behavior. One of the most promising mechanisms involves the extracellular adenosine (eADO) axis created by the action of ectonucleotidases CD39/CD73 and gets transduced by the adenosine A 2A receptor (A 2A R). Because the A 2A R is stimulated by an increase in eADO concentration, the metabolism of the immune cells is shifted from a pro-inflammatory, glycolytic state to a more immunosuppressive, anti-inflammatory, oxidative state. This change in the immune cell metabolism represses T-lymphocyte and natural killer (NK)-cell-dependent cytotoxicity and drives myeloid cells, particularly macrophages, to adopt an M 2 -like protumorigenic phenotype. In TNBC, hypoxia as well as oxidative stress upregulates adenosinergic signaling and, as a result, further propagates immune system dysfunction. This review focuses on the mechanistic roles of the A 2A R, while contextualizing its function within tumor biology. It aims to explain A 2A R regulation across distinct tumor microenvironment (TME) compartments, and a critical analysis of its crosstalk with glycolytic metabolic checkpoints, which include hypoxia-inducible factor 1-alpha (HIF-1 ) and AMP-activated protein kinase (AMPK). This provides insight into its potential for therapeutic targeting.
论文信息
- 作者
- Sharma D、Sisodiya S、Hussain S、Vaidya A、Spickett CM、Sanchez-Aranguren L、Mishra N
- 第一作者单位
- Symbiosis School of Biological Sciences (SSBS), Symbiosis International (Deemed University), Gram Lavale, Taluka Mulshi, Pune, Maharashtra, 412115, India.India
- 通讯作者单位
- Symbiosis School of Biological Sciences (SSBS), Symbiosis International (Deemed University), Gram Lavale, Taluka Mulshi, Pune, Maharashtra, 412115, India. neetu.mishra@ssbs.edu.in.India
- 文献类型
- 综述
- 期刊
- Discover oncology2026 Jun 16