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Progress in Understanding the Genetics of Calcium-Containing Nephrolithiasis

机译:含钙肾结石的遗传学研究进展

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Renal stone disease is a frequent condition, causing a huge burden on health care systems globally. Calcium-based calculi account for around 75% of renal stone disease and the incidence of these calculi is increasing, suggesting environmental and dietary factors are acting upon a preexisting genetic background. The familial nature and significant heritability of stone disease is known, and recent genetic studies have successfully identified genes that may be involved in renal stone formation. The detection of monogenic causes of renal stone disease has been made more feasible by the use of high-throughput sequencing technologies and has also facilitated the discovery of novel monogenic causes of stone disease. However, the majority of calcium stone formers remain of undetermined genotype. Genome-wide association studies and candidate gene studies implicate a series of genes involved in renal tubular handling of lithogenic substrates, such as calcium, oxalate, and phosphate, and of inhibitors of crystallization, such as citrate and magnesium. Additionally, expression profiling of renal tissues from stone formers provides a novel way to explore disease pathways. New animal models to explore these recently-identified mechanisms and therapeutic interventions are being tested, which hopefully will provide translational insights to stop the growing incidence of nephrolithiasis.
机译:肾结石疾病是一种常见病,在全球范围内给医疗系统造成沉重负担。钙基结石约占肾结石疾病的75%,并且这些结石的发生率正在增加,这表明环境因素和饮食因素正在影响现有的遗传背景。已知结石疾病的家族性质和显着遗传力 n,并且最近的遗传研究已成功鉴定出可能与肾结石形成有关的基因。 n通过使用该方法,更容易检测出肾结石病的单基因病因高通量测序技术的发展,也促进了结石病的新型单基因病因的发现。然而,大多数钙 n结石形成者仍是不确定的基因型。全基因组关联研究和候选基因研究暗示了一系列涉及肾结石基质(例如钙,草酸盐和磷酸盐)的肾小管处理的基因,以及诸如柠檬酸盐和镁的结晶抑制剂。此外,来自结石形成者的肾组织表达谱提供了一种探索疾病途径的新颖方法。正在研究探索这些最近发现的机制和治疗干预措施的新动物模型,希望它们将提供转化见解,以阻止肾结石病发病率的增长。 n

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