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TBK-1对肿瘤血管生成和微血管炎症的影响。

Influence of TBK-1 on tumor angiogenesis and microvascular inflammation.

作者信息

Czabanka Marcus, Korherr Christian, Brinkmann Ulrich, Vajkoczy Peter

机构信息

Department of Neurosurgery, Charite Universitaetsmedizin, Berlin, Germany.

出版信息

Front Biosci. 2008 May 1;13:7243-9. doi: 10.2741/3225.

Abstract

Tank-Binding-Kinase 1 (TBK-1) has been proposed as a putative mediator in tumor angiogenesis. It was the aim of our study to gain insight into TBK-1s role in tumor angiogenesis and tumor-associated microvascular inflammation. TBK-1 overexpressing KB 3-1 cells were generated and their growth characteristics were analyzed. Expression of TBK-1, VEGF, RANTES and Il-8 were quantified using qPCR and western blot analysis. Intravital microscopy using the dorsal skinfold chamber model in nude mice addressed total (TIVD) and functional intratumoral vascular density (FIVD), perfusion index, vessel diameter and leukocyte sticking. Transfection of KB-3 cells resulted in significantly increased TBK-1, RANTES and IL-8 expression without affecting cellular growth. Supernatants from TBK-1 overexpressing clones induced HUVEC proliferation. Intravital microscopy identified an increase in leukocyte sticking paralleled by significantly increased TIVD and FIVD as a result of increased VEGF expression. Therefore, TBK-1 represents a novel mediator of tumor angiogenesis and exerts proinflammatory effects via upregulation of inflammatory cytokines. The TBK-1 pathway might be an important cross-link between angiogenesis and inflammation representing a possible target for anti-tumor therapy.

摘要

Tank结合激酶1(TBK-1)被认为是肿瘤血管生成中的一种假定介质。我们研究的目的是深入了解TBK-1在肿瘤血管生成和肿瘤相关微血管炎症中的作用。构建了过表达TBK-1的KB 3-1细胞,并分析了它们的生长特性。使用qPCR和蛋白质印迹分析对TBK-1、血管内皮生长因子(VEGF)、调节激活正常T细胞表达和分泌因子(RANTES)及白细胞介素-8(Il-8)的表达进行定量。利用裸鼠背部皮褶腔室模型进行活体显微镜检查,测定肿瘤内总血管密度(TIVD)和功能性肿瘤内血管密度(FIVD)、灌注指数、血管直径和白细胞黏附情况。转染KB-3细胞导致TBK-1、RANTES和IL-8表达显著增加,而不影响细胞生长。过表达TBK-1的克隆的上清液可诱导人脐静脉内皮细胞(HUVEC)增殖。活体显微镜检查发现,由于VEGF表达增加,白细胞黏附增加,同时TIVD和FIVD显著增加。因此,TBK-1是肿瘤血管生成的一种新型介质,并通过上调炎性细胞因子发挥促炎作用。TBK-1途径可能是血管生成与炎症之间的重要交联点,代表了抗肿瘤治疗的一个可能靶点。

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