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首页> 外文期刊>International journal of oncology >Target-specific cytotoxic effects on HER2-expressing cells by the tripartite fusion toxin ZHER2:2891-ABD-PE38X8, including a targeting affibody molecule and a half-life extension domain
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Target-specific cytotoxic effects on HER2-expressing cells by the tripartite fusion toxin ZHER2:2891-ABD-PE38X8, including a targeting affibody molecule and a half-life extension domain

机译:三方融合毒素ZHER2:2891-ABD-PE38X8对表达HER2的细胞的靶标特异性细胞毒性作用,包括靶标亲和分子和半衰期延伸域

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Development of cancer treatment regimens including immunotoxins is partly hampered by their immunogenicity. Recently, deimmunized versions of toxins have been described, potentially being better suited for translation to the clinic. In this study, a recombinant tripartite fusion toxin consisting of a deimmunized version of exotoxin?A from Pseudomonas aeruginosa (PE38) genetically fused to an affibody molecule specifically interacting with the human epidermal growth factor receptor?2 (HER2), and also an albumin binding domain (ABD) for half-life extension, has been produced and characterized in terms of functionality of the three moieties. Biosensor based assays showed that the fusion toxin was able to interact with human and mouse serum albumin, but not with bovine serum albumin and that it interacted with HER2 (KD=5?nM). Interestingly, a complex of the fusion toxin and human serum albumin also interacted with HER2 but with a somewhat weaker affinity (KD=12?nM). The IC50-values of the fusion toxin ranged from 6 to 300?pM on SKOV-3, SKBR-3 and A549 cells and was lower for cells with higher surface densities of HER2. The fusion toxin was found specific for HER2 as shown by blocking available HER2 receptors with free affibody molecule before subjecting the cells to the toxin. Analysis of contact time showed that 10?min was sufficient to kill 50% of the cells. In conclusion, all three regions of the fusion toxin were found to be functional.
机译:包括免疫毒素在内的癌症治疗方案的发展部分受到其免疫原性的阻碍。最近,已经描述了脱免疫形式的毒素,可能更适合于临床翻译。在这项研究中,重组的三方融合毒素由去免疫形式的铜绿假单胞菌(PE38)的外毒素αA组成,该毒素与与人表皮生长因子受体2(HER2)特异性相互作用的亲和分子遗传融合,并且与白蛋白结合已经制备了用于半衰期延长的结构域(ABD),并根据这三个部分的功能对其进行了表征。基于生物传感器的分析表明,融合毒素能够与人和小鼠血清白蛋白相互作用,但不能与牛血清白蛋白相互作用,并且与HER2相互作用(KD = 5?nM)。有趣的是,融合毒素和人血清白蛋白的复合物也与HER2相互作用,但亲和力稍弱(KD = 12?nM)。在SKOV-3,SKBR-3和A549细胞上,融合毒素的IC50值为6至300µpM,对于具有较高表面密度的HER2的细胞,IC50值较低。发现融合毒素对HER2具有特异性,这是通过在使细胞受到毒素作用之前用游离亲和分子阻断可用的HER2受体来表明的。接触时间的分析表明,10分钟的时间足以杀死50%的细胞。总之,发现融合毒素的所有三个区域都起作用。

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