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首页> 外文期刊>BMC Cancer >Angiopoietin-1 deficiency increases tumor metastasis in mice
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Angiopoietin-1 deficiency increases tumor metastasis in mice

机译:血管生成素-1缺乏症增加了小鼠的肿瘤转移

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Background Angipoietin-1 activation of the tyrosine kinase receptor Tek expressed mainly on endothelial cells leads to survival and stabilization of endothelial cells. Studies have shown that Angiopoietin-1 counteracts permeability induced by a number of stimuli. Here, we test the hypothesis that loss of Angiopoietin-1/Tek signaling in the vasculature would increase metastasis. Methods Angiopoietin-1 was deleted in mice just before birth using floxed Angiopoietin-1 and Tek mice crossed to doxycycline-inducible bitransgenic ROSA-rtTA/tetO-Cre mice. By crossing Angiopoietin-1 knockout mice to the MMTV-PyMT autochthonous mouse breast cancer model, we investigated primary tumor growth and metastasis to the lung. Furthermore, we utilized B16F10 melanoma cells subcutaneous and experimental lung metastasis models in Angiopoietin-1 and Tek knockout mice. Results We found that primary tumor growth in MMTV-PyMT mice was unaffected, while metastasis to the lung was significantly increased in Angiopoietin-1 knockout MMTV-PyMT mice. In addition, angiopoietin-1 deficient mice exhibited a significant increase in lung metastasis of B16F10 melanoma cells, compared to wild type mice 3?weeks after injection. Additional experiments showed that this was likely an early event due to increased attachment or extravasation of tumor cells, since seeding of tumor cells was significantly increased 4 and 24?h post tail vein injection. Finally, using inducible Tek knockout mice, we showed a significant increase in tumor cell seeding to the lung, suggesting that Angiopoietin-1/Tek signaling is important for vascular integrity to limit metastasis. Conclusions This study show that loss of the Angiopoietin-1/Tek vascular growth factor system leads to increased metastasis without affecting primary tumor growth.
机译:背景技术主要在内皮细胞上表达的酪氨酸激酶受体Tek的Angipoietin-1激活导致内皮细胞的存活和稳定。研究表明,Angiopoietin-1抵消了许多刺激引起的通透性。在这里,我们测试的假设是血管系统中血管生成素-1 / Tek信号丢失会增加转移。方法使用浮生的Angiopoietin-1将小鼠刚出生前的Angiopoietin-1删除,并将Tek小鼠与强力霉素诱导的双转基因ROSA-rtTA / tetO-Cre小鼠杂交。通过将Angiopoietin-1基因敲除小鼠与MMTV-PyMT自体小鼠乳腺癌模型杂交,我们研究了原发性肿瘤的生长和向肺的转移。此外,我们在Angiopoietin-1和Tek基因敲除小鼠中利用B16F10黑色素瘤细胞皮下和实验性肺转移模型。结果我们发现,MMTV-PyMT小鼠的原发肿瘤生长未受影响,而Angiopoietin-1基因敲除的MMTV-PyMT小鼠的肺转移明显增加。此外,与注射后3周的野生型小鼠相比,血管生成素1缺陷型小鼠的B16F10黑色素瘤细胞的肺转移明显增加。另外的实验表明,这可能是由于肿瘤细胞附着或外渗增加而引起的早期事件,因为在尾静脉注射后第4和24小时,肿瘤细胞的播种明显增加。最后,使用诱导型Tek基因敲除小鼠,我们显示出向肺部播种的肿瘤细胞显着增加,表明Angiopoietin-1 / Tek信号传导对于限制血管完整性的血管完整性很重要。结论这项研究表明,Angiopoietin-1 / Tek血管生长因子系统的丧失会导致转移增加,而不影响原发性肿瘤的生长。

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