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Reduced Shedding of Surface Mesothelin Improves Efficacy of Mesothelin-Targeting Recombinant Immunotoxins

机译:减少间皮素的脱落提高了以间皮素为靶标的重组免疫毒素的功效

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Mesothelin (MSLN) is a differentiation antigen that is highly expressed in many epithelial cancers. MSLN is an important therapeutic target due to its high expression in cancers and limited expression in normal human tissues. Although it has been assumed that shed antigen is a barrier to immunotoxin action, a modeling study predicted that shed MSLN may enhance the action of MSLN-targeting recombinant immunotoxins such as SS1P and similar therapeutics by facilitating their redistribution within tumors. We aimed to determine whether shed MSLN enhances or reduces the antitumor effect of MSLN-targeting immunotoxins SS1P and RG7787. We engineered a cell line, A431/G9 (TACE mutant) that expresses a mutant form of MSLN in which the TNF-converting enzyme protease site is replaced with GGGS. We compared the response of the TACE-mutant cells with immunotoxins SS1P and RG7787 with that of the parental A431/H9 cell line. We show that TACE-mutant cells shed 80% less MSLN than A431/H9 cells, that TACE-mutant cells show a 2- to 3-fold increase in MSLN-targeted immunotoxin uptake, and that they are about 5-fold more sensitive to SS1P killing in cell culture. Tumors with reduced shedding respond significantly better to treatment with SS1P and RG7787. Our data show that MSLN shedding is an impediment to the antitumor activity of SS1P and RG7787. Approaches that decrease MSLN shedding could enhance the efficacy of immunotoxins and immunoconjugates targeting MSLN-expressing tumors. (C) 2016 AACR.
机译:间皮素(MSLN)是一种分化抗原,在许多上皮癌中高度表达。 MSLN是重要的治疗靶标,因为它在癌症中高表达而在正常人体组织中表达有限。尽管已经假定脱落的抗原是免疫毒素作用的障碍,但模型研究预测,脱落的MSLN可以通过促进靶向于MSLN的重组免疫毒素(例如SS1P和类似治疗剂)在肿瘤中的重新分布而增强其作用。我们旨在确定脱落的MSLN是否增强或降低靶向MSLN的免疫毒素SS1P和RG7787的抗肿瘤作用。我们设计了一种细胞系A431 / G9(TACE突变体),它表达MSLN的突变体形式,其中TNF转化酶蛋白酶位点被GGGS取代。我们比较了免疫毒素SS1P和RG7787与亲代A431 / H9细胞系对TACE突变细胞的反应。我们显示TACE突变细胞比A431 / H9细胞减少了80%的MSLN,TACE突变细胞显示了以MSLN为目标的免疫毒素摄取量的2到3倍增加,并且它们对敏感度提高了约5倍在细胞培养中杀死SS1P。脱落减少的肿瘤对SS1P和RG7787的治疗反应明显更好。我们的数据表明,MSLN脱落是SS1P和RG7787抗肿瘤活性的障碍。减少MSLN脱落的方法可以增强针对表达MSLN的肿瘤的免疫毒素和免疫缀合物的功效。 (C)2016 AACR。

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