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遗传与组织病理学数据在肾脏疾病解读中的整合。

Integration of genetic and histopathology data in interpretation of kidney disease.

机构信息

Department of Nephrology and Transplantation, Beaumont Hospital, Dublin, Ireland.

Department of Medicine, Royal College of Surgeons, Dublin, Ireland.

出版信息

Nephrol Dial Transplant. 2020 Jul 1;35(7):1113-1132. doi: 10.1093/ndt/gfaa176.

Abstract

For many years renal biopsy has been the gold standard for diagnosis in many forms of kidney disease. It provides rapid, accurate and clinically useful information in most individuals with kidney disease. However, in recent years, other diagnostic modalities have become available that may provide more detailed and specific diagnostic information in addition to, or instead of, renal biopsy. Genomics is one of these modalities. Previously prohibitively expensive and time consuming, it is now increasingly available and practical in a clinical setting for the diagnosis of inherited kidney disease. Inherited kidney disease is a significant cause of kidney disease, in both the adult and paediatric populations. While individual inherited kidney diseases are rare, together they represent a significant burden of disease. Because of the heterogenicity of inherited kidney disease, diagnosis and management can be a challenge and often multiple diagnostic modalities are needed to arrive at a diagnosis. We present updates in genomic medicine for renal disease, how genetic testing integrates with our knowledge of renal histopathology and how the two modalities may interact to enhance patient care.

摘要

多年来,肾活检一直是许多形式的肾脏疾病诊断的金标准。它为大多数肾脏病患者提供了快速、准确和临床有用的信息。然而,近年来,出现了其他诊断方法,除了肾活检之外,这些方法可能提供更详细和更具体的诊断信息。基因组学就是其中一种方法。以前由于费用昂贵和耗时,它在临床环境中用于遗传性肾脏疾病的诊断现在越来越可行和实用。遗传性肾脏疾病是成人和儿童人群中肾脏疾病的一个重要原因。虽然个别遗传性肾脏疾病很少见,但它们加在一起代表了很大的疾病负担。由于遗传性肾脏疾病的异质性,诊断和管理可能具有挑战性,通常需要多种诊断方法才能得出诊断。我们介绍了肾脏疾病的基因组医学最新进展,遗传检测如何与我们对肾脏组织病理学的了解相结合,以及这两种方法如何相互作用以增强患者护理。

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