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Antitumor effects of EMAP II against pancreatic cancer through inhibition of fibronectin-dependent proliferation.

机译:EMAP II通过抑制纤连蛋白依赖性增殖来抗胰腺癌。

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摘要

Pancreatic ductal adenocarcinoma (PDAC) is highly resistant to conventional chemotherapy. The presence of both cellular and stromal fibronectin (FN) and its interaction with integrins is necessary for PDAC progression. We tested the efficacy of endothelial monocyte-activating polypeptide II (EMAP II) to inhibit PDAC progression and its ability to interfere with FN-integrin angiogenesis signaling. In heterotopic PDAC tumors EMAP II caused a significant reduction (>65%) in tumor growth, accompanied by a >50 and 44% decrease in microvessel density and proliferative activity, respectively. EMAP II therapy caused a 62 and 56% reduction in host and tumor cell FN expression. Cultured PDAC cells expressed alphaVbeta3 and alpha5beta1 integrins. In vitro EMAP II had limited antiproliferative effects on ASPC-1, but a pronounced antiproliferative effect on endothellial cells. 3D FN matrices increased ASPC-1 cell proliferation by >50%, and this induction was significantly blocked by alpha3, alpha5, alpha6 and alphaV integrin funtional blocking antibodies, while alpha1, alpha2 and alpha4 antibodies had no effect. EMAP II also inhibited 3D FN-matrix induced ASPC-1 proliferation by >43% at 20 microM. These findings suggest that EMAP II demonstrates significant antitumor activity against PDAC cells, and that this effect may be in part mediated through targeted interference with stromal FN-integrin dependent PDAC cell proliferation.
机译:胰腺导管腺癌(PDAC)对常规化疗具有高度耐药性。细胞和基质纤连蛋白(FN)的存在及其与整联蛋白的相互作用对于PDAC进展是必需的。我们测试了内皮单核细胞激活多肽II(EMAP II)抑制PDAC进程的功效及其干扰FN整合素血管生成信号的能力。在异位PDAC肿瘤中,EMAP II导致肿瘤生长显着降低(> 65%),同时微血管密度和增殖活性分别降低> 50和44%。 EMAP II治疗导致宿主和肿瘤细胞FN表达减少62%和56%。培养的PDAC细胞表达alphaVbeta3和alpha5beta1整合素。体外EMAP II对ASPC-1的抗增殖作用有限,但对内皮细胞有明显的抗增殖作用。 3D FN基质使ASPC-1细胞增殖增加了> 50%,并且该诱导被alpha3,alpha5,alpha6和alphaV整联蛋白功能性阻断抗体显着阻断,而alpha1,alpha2和alpha4抗体则无作用。 EMAP II在20 microM时也抑制3D FN基质诱导的ASPC-1增殖> 43%。这些发现表明,EMAP II对PDAC细胞显示出显着的抗肿瘤活性,并且这种作用可能部分是通过靶向干扰基质FN整合素依赖性PDAC细胞增殖而介导的。

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