线粒体疾病的双基因组描述:临床表现回顾

Jude M. Abadie
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引用次数: 0

摘要

线粒体功能紊乱是许多遗传性神经肌肉和代谢疾病的罪魁祸首。它们具有高死亡率、多系统参与和经济负担等特点,对患者及其家庭造成了毁灭性的影响。分子诊断工具在为线粒体疾病患者提供早期诊断和指导更精确的治疗方面正变得越来越重要。本综述探讨了与线粒体功能障碍和疾病的发病机制有关的基本分子概念。一系列简短的病例重点介绍了导致线粒体疾病的各种临床表现、遗传模式以及核基因和线粒体基因的致病突变。研究结果以图形和表格的形式呈现,引导读者理解与线粒体分子遗传学和病理学相关的重要概念。新兴技术正在结合植入前基因检测来检测 mtDNA 疾病,而线粒体置换则有望显著减少患病线粒体 DNA(mtDNA)向胚胎的转移。医务人员必须深入了解线粒体疾病的基因突变和分子机制。线粒体疾病诊断的不断进步和对患者的综合管理对于全面基因组检测产生强大的临床影响至关重要。在生化分析、组织化学染色和成像研究等非基因检测的支持下,这一点尤为重要。这种多管齐下的调查应能提供准确及时的诊断,从而改善线粒体疾病的管理,减轻疾病负担,改善患者及其家属的生活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Two-Genome Portrayal of Mitochondrial Disorders: A Review with Clinical Presentations
Disorders of mitochondrial function are responsible for many inherited neuromuscular and metabolic diseases. Their combination of high mortality, multi-systemic involvement, and economic burden cause devastating effects on patients and their families. Molecular diagnostic tools are becoming increasingly important in providing earlier diagnoses and guiding more precise therapeutic treatments for patients suffering from mitochondrial disorders. This review addresses fundamental molecular concepts relating to the pathogenesis of mitochondrial dysfunction and disorders. A series of short cases highlights the various clinical presentations, inheritance patterns, and pathogenic mutations in nuclear and mitochondrial genes that cause mitochondrial diseases. Graphical and tabular representations of the results are presented to guide the understanding of the important concepts related to mitochondrial molecular genetics and pathology. Emerging technology is incorporating preimplantation genetic testing for mtDNA disorders, while mitochondrial replacement shows promise in significantly decreasing the transfer of diseased mitochondrial DNA (mtDNA) to embryos. Medical professionals must maintain an in-depth understanding of the gene mutations and molecular mechanisms underlying mitochondrial disorders. Continued diagnostic advances and comprehensive management of patients with mitochondrial disorders are essential to achieve robust clinical impacts from comprehensive genomic testing. This is especially true when supported by non-genetic tests such as biochemical analysis, histochemical stains, and imaging studies. Such a multi-pronged investigation should improve the management of mitochondrial disorders by providing accurate and timely diagnoses to reduce disease burden and improve the lives of patients and their families
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