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首页> 外文期刊>Critical reviews in clinical laboratory sciences >Laboratory evaluation of the IFN-y circuit for the molecular diagnosis of Mendelian susceptibility to mycobacterial disease
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Laboratory evaluation of the IFN-y circuit for the molecular diagnosis of Mendelian susceptibility to mycobacterial disease

机译:IFN-Y电路的实验室评价,用于分枝脑膜疾病的孟德尔敏感性分子诊断

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摘要

The integrity of the interferon (IFN)-gamma circuit is necessary to mount an effective immune response to intra-macrophagic pathogens, especially Mycobacteria. Inherited monogenic defects in this circuit that disrupt the production of, or response to, IFN-gamma underlie a primary immunodeficiency known as Mendelian susceptibility to mycobacterial disease (MSMD). Otherwise healthy patients display a selective susceptibility to clinical disease caused by poorly virulent mycobacteria such as BCG (bacille Calmette-Guerin) vaccines and environmental mycobacteria, and more rarely by other intra-macrophagic pathogens, particularly Salmonella and M. tuberculosis. There is high genetic and allelic heterogeneity, with 19 genetic etiologies due to mutations in 10 genes that account for only about half of the patients reported. An efficient laboratory diagnostic approach to suspected MSMD patients is important, because it enables the establishment of specific therapeutic measures that will improve the patient's prognosis and quality of life. Moreover, it is essential to offer genetic counseling to affected families. Herein, we review the various genetic and immunological diagnostic approaches that can be used in concert to reach a molecular and cellular diagnosis in patients with MSMD.
机译:干扰素(IFN)-Gamma电路的完整性是为了将有效的免疫应答为肠内肠内病原体,尤其是分枝杆菌来安装有效的免疫应答。在该电路中遗传的单一缺陷破坏了IFN-Gamma基础的产生或反应的初级免疫缺陷,称为孟德尔对分枝杆菌病的敏感性(MSMD)。否则健康的患者表现出对由BCG(Bacille Calmette-guerin)疫苗和环境分枝杆菌等疾病患者造成的临床疾病的选择性易感性,并且越来越少数由其他急迫病原体,特别是沙门氏菌和M.Tuberculosis。遗传和等位基因异质性高,由于10个基因中的突变引起了19个遗传学遗传学,该突变占据了报道的患者的一半。一种有效的疑似MSMD患者的实验室诊断方法很重要,因为它使得能够建立特定的治疗措施,从而提高患者的预后和生活质量。此外,必须为受影响的家庭提供遗传咨询。在此,我们审查了各种遗传和免疫诊断方法,可以在音乐会中用于达到MSMD患者的分子和细胞诊断。

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