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首页> 外文期刊>Japanese Journal of Cancer Research >Preferential activity of wild-type and mutant tumor necrosis factor-alpha against tumor-derived endothelial-like cells.
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Preferential activity of wild-type and mutant tumor necrosis factor-alpha against tumor-derived endothelial-like cells.

机译:野生型和突变型肿瘤坏死因子-α对源自肿瘤的内皮样细胞的优先活性。

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Tumor-derived endothelial-like cells (tEC) were prepared by culturing human umbilical vein endothelial cells (HUVEC) in the presence of HT1080 human fibrosarcoma-conditioned medium. tEC showed higher permeability and less cell-adhesion activity than normal HUVEC (nEC). Tumor necrosis factor-alpha (TNF) is known to have tumor-vasculature disrupting activity. tEC showed higher cytotoxicity to recombinant human TNF (rhTNF) than nEC, and was not observed using HUVEC cultured with WI38 human diploid cell-conditioned medium as a medium-control. These results demonstrate that tEC acquire physiological properties of tumor-associated vasculature, and may be a useful model system for the study of the mechanisms of TNF antitumor action. The TNF-mutant RGD-V29 (code No. F4614), which has an inserted 4Arg-Gly-Asp sequence and an 29Arg-->Val replacement, was found to induce greater preferential destruction of tEC compared to rhTNF. When the preferential activities were evaluated in terms of 30% cytotoxicity (IC30) ratio (nEC/tEC), the ratio was 460 for RGD-V29 compared to 4.2 for rhTNF. RGD-V29 also exhibited cell-adhesive function and bound preferentially to the p55 TNF-receptor. Both these properties of RGD-V29 contributed to the tEC selective cytotoxicity, indicating that the RGD ligands and selective p55 receptor binding on the cells, although uncharacterized, are involved in tEC targeting. Therefore, the TNF mutant RGD-V29 may show greater selectivity toward tumor vasculature than wild-type TNF.
机译:通过在HT1080人纤维肉瘤条件培养基中培养人脐静脉内皮细胞(HUVEC),制备肿瘤来源的内皮样细胞(tEC)。与正常的HUVEC(nEC)相比,tEC显示出更高的通透性和更低的细胞粘附活性。已知肿瘤坏死因子-α(TNF)具有破坏肿瘤血管的活性。 tEC对重组人TNF(rhTNF)的毒性高于nEC,并且未将HUVEC与WI38人二倍体细胞条件培养基一起培养作为对照。这些结果表明tEC获得了肿瘤相关脉管系统的生理特性,可能是研究TNF抗肿瘤作用机制的有用模型系统。与rhTNF相比,发现具有TNF突变的RGD-V29(代码F4614)具有插入的4Arg-Gly-Asp序列和29Arg→Val置换,可诱导更大的tEC优先破坏。当根据30%细胞毒性(IC30)比率(nEC / tEC)评估优先活性时,RGD-V29的比率为460,rhTNF的比率为4.2。 RGD-V29还表现出细胞粘附功能,并优先与p55 TNF受体结合。 RGD-V29的这两个特性均导致tEC选择性细胞毒性,表明RGD配体和细胞上的选择性p55受体结合(尽管未表征)参与tEC靶向。因此,与野生型TNF相比,TNF突变体RGD-V29对肿瘤血管的选择性更高。

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