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Specific Activation of A3 A2A and A1 Adenosine Receptors in CD73-Knockout Mice Affects B16F10 Melanoma Growth Neovascularization Angiogenesis and Macrophage Infiltration

机译:CD73基因敲除小鼠中的A3A2A和A1腺苷受体的特异性激活影响B16F10黑色素瘤的生长新血管形成血管生成和巨噬细胞浸润

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摘要

CD73 (ecto-5'-nucleotidase), a cell surface enzyme hydrolyzing AMP to adenosine, was lately demonstrated to play a direct role in tumor progression including regulation of tumor vascularization. It was also shown to stimulate tumor macrophage infiltration. Interstitial adenosine, accumulating in solid tumors due to CD73 enzymatic activity, is recognized as a main mediator regulating the production of pro- and anti-angiogenic factors, but the engagement of specific adenosine receptors in tumor progression in vivo is still poorly researched. We have analyzed the role of high affinity adenosine receptors A1, A2A, and A3 in B16F10 melanoma progression using specific agonists (CCPA, CGS-21680 and IB-MECA, respectively). We limited endogenous extracellular adenosine background using CD73 knockout mice treated with CD73 chemical inhibitor, AOPCP (adenosine α,β-methylene 5’-diphosphate). Activation of any adenosine receptor significantly inhibited B16F10 melanoma growth but only at its early stage. At 14th day of growth, the decrease in tumor neovascularization and MAPK pathway activation induced by CD73 depletion was reversed by all agonists. Activation of A1AR primarily increased angiogenic activation measured by expression of VEGF-R2 on tumor blood vessels. However, mainly A3AR activation increased both the microvessel density and expression of pro-angiogenic factors. All agonists induced significant increase in macrophage tumor infiltration, with IB-MECA being most effective. This effect was accompanied by substantial changes in cytokines regulating macrophage polarization between pro-inflammatory and pro-angiogenic phenotype. Our results demonstrate an evidence that each of the analyzed receptors has a specific role in the stimulation of tumor angiogenesis and confirm significantly more multifaceted role of adenosine in its regulation than was already observed. They also reveal previously unexplored consequences to extracellular adenosine signaling depletion in recently proposed anti-CD73 cancer therapy.
机译:CD73(ecto-5'-nucleotidase),一种将AMP水解为腺苷的细胞表面酶,最近被证明在肿瘤进展包括调节肿瘤血管形成中起直接作用。它也显示出刺激肿瘤巨噬细胞浸润。由于CD73的酶促活性,在实体瘤中积累的间质腺苷被公认为是调节促血管生成因子和抗血管生成因子产生的主要介质,但是在体内肿瘤进展过程中特定腺苷受体的参与仍很缺乏研究。我们已经使用特定的激动剂(分别为CCPA,CGS-21680和IB-MECA)分析了高亲和力腺苷受体A1,A2A和A3在B16F10黑色素瘤进展中的作用。我们使用经CD73化学抑制剂AOPCP(腺苷α,β-亚甲基5′-二磷酸)处理的CD73基因敲除小鼠来限制内源性细胞外腺苷背景。任何腺苷受体的激活都显着抑制了B16F10黑色素瘤的生长,但仅在其早期阶段。在生长的第14天,所有激动剂均逆转了CD73耗竭诱导的肿瘤新血管形成和MAPK途径激活的减少。通过肿瘤血管上VEGF-R2的表达测量,A1AR的激活主要增加血管生成的激活。然而,主要是A3AR激活增加了微血管密度和促血管生成因子的表达。所有激动剂均诱导巨噬细胞肿瘤浸润的明显增加,其中IB-MECA最有效。这种作用伴随着促炎和促血管生成表型之间调节巨噬细胞极化的细胞因子的实质性变化。我们的结果表明,每种被分析的受体在刺激肿瘤血管生成中均具有特定作用,并且证实腺苷在其调节中的作用远比已经观察到的多。他们还揭示了最近提出的抗CD73癌症疗法对细胞外腺苷信号传导耗竭的未曾探索的结果。

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