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The elementome of calcium-based urinary stones and its role in urolithiasis

机译:钙基尿路结石的元素组及其在尿石症中的作用

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摘要

Urolithiasis affects around 10% of the US population with an increasing rate of prevalence, recurrence and penetrance. The causes for the formation of most urinary calculi remain poorly understood, but obtaining the chemical composition of these stones might help identify key aspects of this process and new targets for treatment. The majority of urinary stones are composed of calcium that is complexed in a crystalline matrix with organic and inorganic components. Surprisingly, mitigation of urolithiasis risk by altering calcium homeostasis has not been very effective. Thus, studies to identify other therapeutic stone-specific targets, using proteomics, metabolomics and microscopy techniques, have been conducted, revealing a high level of complexity. The data suggest that numerous metals other than calcium and many nonmetals are present within calculi at measurable levels and several have distinct distribution patterns. Manipulation of the levels of some of these elemental components of calcium-based stones has resulted in clinically beneficial changes in stone chemistry and rate of stone formation. The elementome—the full spectrum of elemental content—of calcium-based urinary calculi is emerging as a new concept in stone research that continues to provide important insights for improved understanding and prevention of urinary stone disease.
机译:尿石症影响着约10%的美国人口,其患病率,复发率和渗透率都有所上升。多数结石的形成原因尚不清楚,但是获得这些结石的化学成分可能有助于确定该过程的关键方面和新的治疗靶标。多数泌尿系结石由钙组成,钙在晶体基质中与有机和无机成分复合。令人惊讶的是,通过改变钙稳态来减轻尿路结石的风险不是很有效。因此,已经进行了使用蛋白质组学,代谢组学和显微镜技术鉴定其他治疗结石特异性靶标的研究,揭示了高度复杂性。数据表明,除了钙和许多非金属外,结石内存在可测量水平的多种金属,并且几种具有独特的分布模式。操纵钙基结石的某些这些元素成分的水平已导致结石化学和结石形成速率的临床有益变化。钙基尿路结石的元素组(元素含量的全部范围)正在作为结石研究中的一个新概念出现,并继续为改善对尿结石疾病的认识和预防提供重要见解。

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