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Adenoviral vectors can impair adrenocortical steroidogenesis: Clinical implications for natural infections and gene therapy

机译:腺病毒载体可损害肾上腺皮质类固醇生成:对自然感染和基因治疗的临床意义

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摘要

Recombinant adenoviral vectors are effective in transferring foreign genes to a variety of cells and tissue types, both in vitro and in vivo. However, during the gene transfer, they may alter the principal function and local environment of transfected cells. Increasing evidence exists for a selective adrenotropism of adenovirus during infections and gene transfer. Therefore, using bovine adrenocortical cells in primary culture, we analyzed the influence of different adenoviral deletion mutants on cell morphology and physiology. Transfection of cells with an E1/E3-deleted adenoviral vector, engineered to express a modified form of the Aequorea victoria green fluorescent protein, was highly efficient, as documented by fluorescent microscopy. Ultrastructural analysis, however, demonstrated nuclear fragmentation and mitochondrial alterations in addition to intranuclear viral particles. Basal secretion of 17-OH-progesterone, 11-deoxycortisol, and cortisol was significantly increased by E1/E3-deleted vectors; yet, the corticotropin-stimulated release of these steroids was decreased. Interestingly, neither purified viral capsids nor E3/E4-deleted adenoviral mutants altered basal and stimulated steroidogenesis of adrenocortical cells. An intact adrenal response is crucial for adaptation to stress and survival. Therefore, the implications of our findings need to be considered in patients with adenoviral infections and those undergoing clinical studies using adenoviral gene transfer. At the same time, the high level of transfection in adrenocortical cells might make appropriately modified adenoviral vectors suitable for gene therapy of adrenocortical carcinomas with poor prognosis.
机译:重组腺病毒载体可有效地在体外和体内将外源基因转移到多种细胞和组织类型中。但是,在基因转移过程中,它们可能会改变转染细胞的主要功能和局部环境。越来越多的证据表明在感染和基因转移过程中腺病毒的选择性肾上腺功能减退。因此,在原代培养中使用牛肾上腺皮质细胞,我们分析了不同腺病毒缺失突变体对细胞形态和生理的影响。如荧光显微镜所证明的,用E1 / E3缺失的腺病毒载体转染细胞是高效的,该腺病毒载体经工程改造以表达维多利亚水母绿色荧光蛋白的修饰形式。然而,超微结构分析显示除了核内病毒颗粒外,核碎片和线粒体改变。缺失E1 / E3的载体显着增加了17-OH-孕酮,11-脱氧皮质醇和皮质醇的基础分泌。然而,促肾上腺皮质激素刺激的这些类固醇的释放减少了。有趣的是,纯化的病毒衣壳和E3 / E4缺失的腺病毒突变体都不会改变肾上腺皮质细胞的基础和刺激类固醇生成。完整的肾上腺反应对于适应压力和生存至关重要。因此,在腺病毒感染的患者和使用腺病毒基因转移进行临床研究的患者中,必须考虑我们发现的意义。同时,肾上腺皮质细胞中高水平的转染可能使腺病毒载体经过适当修饰,适用于预后不良的肾上腺皮质癌的基因治疗。

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