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摘要

Asthma is a common heterogeneous disease with both genetic and environmental factors that affects millions of individuals worldwide. Activated type 2 helper T cells secrete a panel of cytokines, including IL-13, a central immune regulator of many of the hallmark type 2 disease characteristics found in asthma. IL-13 has been directly implicated as a potent stimulator of asthma induced airway remodeling. Although IL-13 is known to play a major role in the development and persistence of asthma, the complex combination of environmental and genetic origin of the disease obfuscate the solitary role of IL-13 in the disease. We therefore, used a genetically modified mouse model which conditionally overexpresses IL-13 in the lungs to study the independent role of IL-13 in the progression of asthma. Our results demonstrate IL-13 is associated with a systemic induction of genotoxic parameters such as oxidative DNA damage, single and double DNA strand breaks, micronucleus formation, and protein nitration. Furthermore we show that inflammation induced genotoxicity found in asthma extends beyond the primary site of the lung to circulating leukocytes and erythroblasts in the bone marrow eliciting systemic effects driven by IL-13 over-expression.
机译:哮喘是一种常见的疾病与异构遗传和环境因素的影响全世界数以百万计的人。2辅助T细胞分泌的细胞因子,包括IL-13,中央的免疫调节2型疾病的许多特点特征中发现哮喘。直接涉及的有力刺激器诱导哮喘气道重塑。众所周知,在发展中发挥重要作用哮喘和持久性,复杂环境和遗传起源的组合的疾病混淆的单独作用IL-13的疾病。转基因小鼠模型有条件地过度表现IL-13在肺部IL-13的独立作用的研究进展的哮喘。IL-13与系统性归纳的基因毒性参数如氧化DNA损伤,单引号和双DNA链断裂,微核形成,和蛋白质硝化。此外我们发现,炎症引起的基因毒性中发现哮喘延伸超出了肺的原发部位循环白细胞和成红血球细胞在骨髓中由IL-13诱发系统性影响过表达。

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