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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:A(2B) adenosine receptor antagonists rescue lymphocyte activity in adenosine-producing patient-derived cancer models.
A(2B) adenosine receptor antagonists rescue lymphocyte activity in adenosine-producing patient-derived cancer models.
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我们的结果表明,A 2B AR 是免疫治疗中一个有前景的靶点,确定 ISAM-R56A 是 A 2B AR 阻断最有效的候选物。抑制 A 2B AR 信号可恢复 T 细胞功能和增殖。此外,A 2B AR 和双重 A 2A AR/A 2B AR 拮抗剂显示出与 A 2A AR 拮抗剂 AZD-4635 相似或更好的结果,这强化了 A 2B AR 在免疫系统调节中起主导作用的观点。
腺苷是一种代谢物,通过细胞外结合腺苷-2受体的两种亚型A2ARs,抑制T细胞和NK细胞的抗肿瘤免疫反应。虽然阻断A2AARs亚型能有效恢复淋巴细胞活性,目前已有四种A2AAR拮抗剂进入抗癌临床试验,但对于另一种A2BAR阻断在癌症免疫治疗中的治疗潜力了解较少。近期研究表明,在共表达这两种受体亚型的组织中会形成A2AAR/A2BAR二聚体,其中A2BAR发挥主导作用,提示其作为癌症免疫治疗的有前景靶点。
我们报道了五种强效A 2B AR拮抗剂和一种双重A 2A AR/A 2B AR拮抗剂的合成及功能评价。这些化合物是利用先前的药理学数据并借助建模研究设计而成的。合成采用多组分方法进行。使用流式细胞术评估A 2B AR拮抗剂处理下T细胞和NK细胞的表型。在患者来源的肿瘤球状体模型中测试了T细胞和NK细胞的功能活性。
我们提供了六种新型小分子的数据:五种A 2B AR选择性拮抗剂和一种双重A 2A AR/A 2B AR拮抗剂。用A 2B AR拮抗剂治疗时,患者来源的乳腺癌球体生长受到抑制。为了阐明这是否依赖于淋巴细胞活性增加、免疫细胞增殖和细胞因子产生,我们评估了淋巴细胞浸润,并与强效A 2A AR拮抗剂AZD-4635进行了比较。我们发现,A 2B AR拮抗剂可挽救T细胞和NK细胞增殖、IFN和穿孔素产生,并增加TIL(肿瘤浸润淋巴细胞)向肿瘤球体的浸润,而不改变黏附分子的表达。
Adenosine is a metabolite that suppresses antitumor immune response of T and NK cells via extracellular binding to the two subtypes of adenosine-2 receptors, A 2 ARs. While blockade of the A 2A ARs subtype effectively rescues lymphocyte activity, with four A 2A AR antagonists currently in anticancer clinical trials, less is known for the therapeutic potential of the other A 2B AR blockade within cancer immunotherapy. Recent studies suggest the formation of A 2A AR/A 2B AR dimers in tissues that coexpress the two receptor subtypes, where the A 2B AR plays a dominant role, suggesting it as a promising target for cancer immunotherapy.
We report the synthesis and functional evaluation of five potent A 2B AR antagonists and a dual A 2A AR/A 2B AR antagonist. The compounds were designed using previous pharmacological data assisted by modeling studies. Synthesis was developed using multicomponent approaches. Flow cytometry was used to evaluate the phenotype of T and NK cells on A 2B AR antagonist treatment. Functional activity of T and NK cells was tested in patient-derived tumor spheroid models.
We provide data for six novel small molecules: five A 2B AR selective antagonists and a dual A 2A AR/A 2B AR antagonist. The growth of patient-derived breast cancer spheroids is prevented when treated with A 2B AR antagonists. To elucidate if this depends on increased lymphocyte activity, immune cells proliferation, and cytokine production, lymphocyte infiltration was evaluated and compared with the potent A 2A AR antagonist AZD-4635. We find that A 2B AR antagonists rescue T and NK cell proliferation, IFN and perforin production, and increase tumor infiltrating lymphocytes infiltration into tumor spheroids without altering the expression of adhesion molecules.
Our results demonstrate that A 2B AR is a promising target in immunotherapy, identifying ISAM-R56A as the most potent candidate for A 2B AR blockade. Inhibition of A 2B AR signaling restores T cell function and proliferation. Furthermore, A 2B AR and dual A 2A AR/A 2B AR antagonists showed similar or better results than A 2A AR antagonist AZD-4635 reinforcing the idea of dominant role of the A 2B AR in the regulation of the immune system.
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