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Bone Genes in the Kidney of Stone Formers

机译:石材成型器肾脏中的骨基因

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Intraoperative papillary biopsies from kidneys of idiopathic-calcium oxalate stone formers (ICSF) have revealed a distinct pattern of mineral deposition in the interstitium of the renal papilla. The earliest sites of these deposits, termed Randall's plaque, are found in the basement membrane of thin loops of Henle and appear to spread into the surrounding interstitium down to the papillary epithelium. Recent studies show kidney stones of ICSF patients grow attached to the renal papilla and at sites of Randall's plaque. Together these observations suggest that plaque formation may be the critical step in stone formation. In order to control plaque formation and thereby reduce future kidney stone development, the mechanism of plaque deposition must be understood. Because the renal papilla has unique anatomical features similar to bone and the fact that the interstitial deposits of ICSF patients are formed of biological apatite, this paper tests the hypothesis that sites of interstitial plaque form as a result of cell-mediated osteoblast-like activity.
机译:来自原发力疗法 - 草酸钙的肾脏的术中乳头活组织检查(ICSF)揭示了肾乳头骨髓间隙中的矿物沉积的明显模式。这些存款的最早地点被称为Randall的牙菌斑,发现在Henle的薄环的地下室膜中,并且似乎将周围的插形口腔蔓延到乳头上皮。最近的研究表明,ICSF患者的肾结石在肾乳头和Randall斑块的斑点中呈现。这些观察结果表明,斑块形成可能是石材形成的关键步骤。为了控制斑块形成,从而降低未来的肾结石发展,必须理解斑块沉积机制。由于肾乳头具有类似于骨骼的独特解剖功能,并且ICSF患者的间质沉积是由生物磷灰石形成的,因此本文试验了由于细胞介导的成骨细胞样活性的间质斑块形式的假设。

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