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骨骼肌变性的复杂性:营养不良性肌病的多系统病理生理学和器官串扰。

Complexity of skeletal muscle degeneration: multi-systems pathophysiology and organ crosstalk in dystrophinopathy.

机构信息

Department of Biology, Maynooth University, National University of Ireland, Co. Kildare, Maynooth, W23F2H6, Ireland.

Kathleen Lonsdale Institute for Human Health Research, Maynooth University, Co. Kildare, Maynooth, W23F2H6, Ireland.

出版信息

Pflugers Arch. 2021 Dec;473(12):1813-1839. doi: 10.1007/s00424-021-02623-1. Epub 2021 Sep 22.

Abstract

Duchenne muscular dystrophy is a highly progressive muscle wasting disorder due to primary abnormalities in one of the largest genes in the human genome, the DMD gene, which encodes various tissue-specific isoforms of the protein dystrophin. Although dystrophinopathies are classified as primary neuromuscular disorders, the body-wide abnormalities that are associated with this disorder and the occurrence of organ crosstalk suggest that a multi-systems pathophysiological view should be taken for a better overall understanding of the complex aetiology of X-linked muscular dystrophy. This article reviews the molecular and cellular effects of deficiency in dystrophin isoforms in relation to voluntary striated muscles, the cardio-respiratory system, the kidney, the liver, the gastrointestinal tract, the nervous system and the immune system. Based on the establishment of comprehensive biomarker signatures of X-linked muscular dystrophy using large-scale screening of both patient specimens and genetic animal models, this article also discusses the potential usefulness of novel disease markers for more inclusive approaches to differential diagnosis, prognosis and therapy monitoring that also take into account multi-systems aspects of dystrophinopathy. Current therapeutic approaches to combat muscular dystrophy are summarised.

摘要

杜氏肌营养不良症是一种高度进行性的肌肉消耗性疾病,主要是由于人类基因组中最大的基因之一 DMD 基因的主要异常,该基因编码肌营养不良蛋白的各种组织特异性同工型。尽管肌营养不良症被归类为原发性神经肌肉疾病,但与该疾病相关的全身性异常以及器官串扰的发生表明,为了更好地理解 X 连锁肌营养不良症复杂的病因,应该采取多系统病理生理学观点。本文综述了肌营养不良蛋白同工型缺乏与随意横纹肌、心肺系统、肾脏、肝脏、胃肠道、神经系统和免疫系统相关的分子和细胞效应。基于使用大规模筛选患者标本和遗传动物模型建立 X 连锁肌营养不良症的综合生物标志物特征,本文还讨论了新型疾病标志物的潜在用途,以便更全面地进行鉴别诊断、预后和治疗监测,同时考虑到肌营养不良症的多系统方面。本文还总结了目前治疗肌肉营养不良症的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0ef/8599371/a01873ef4c30/424_2021_2623_Fig1_HTML.jpg

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