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Progressive renal papillary calcification and ureteral stone formation in mice deficient for Tamm-Horsfall protein

机译:缺乏Tamm-Horsfall蛋白的小鼠进行性肾乳头钙化和输尿管结石形成

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摘要

Mammalian urine contains a range of macromolecule proteins that play critical roles in renal stone formation, among which Tamm-Horsfall protein (THP) is by far the most abundant. While THP is a potent inhibitor of crystal aggregation in vitro and its ablation in vivo predisposes one of the two existing mouse models to spontaneous intrarenal calcium crystallization, key controversies remain regarding the role of THP in nephrolithiasis. By carrying out a long-range follow-up of more than 250 THP-null mice and their wild-type controls, we demonstrate here that renal calcification is a highly consistent phenotype of the THP-null mice that is age and partially gene dosage dependent, but is gender and genetic background independent. Renal calcification in THP-null mice is progressive, and by 15 mo over 85% of all the THP-null mice develop spontaneous intrarenal crystals. The crystals consist primarily of calcium phosphate in the form of hydroxyapatite, are located more frequently in the interstitial space of the renal papillae than intratubularly, particularly in older animals, and lack accompanying inflammatory cell infiltration. The interstitial deposits of hydroxyapatite observed in THP-null mice bear strong resemblances to the renal crystals found in human kidneys bearing idiopathic calcium oxalate stones. Compared with 24-h urine from the wild-type mice, that of THP-null mice is supersaturated with brushite (calcium phosphate), a stone precursor, and has reduced urinary excretion of citrate, a stone inhibitor. While less frequent than renal calcinosis, renal pelvic and ureteral stones and hydronephrosis occur in the aged THP-null mice. These results provide direct in vivo evidence indicating that normal THP plays an important role in defending the urinary system against calcification and suggest that reduced expression and/or decreased function of THP could contribute to nephrolithiasis.
机译:哺乳动物尿液中包含一系列在肾结石形成中起关键作用的大分子蛋白质,其中Tamm-Horsfall蛋白(THP)迄今为止是最丰富的。尽管THP是一种有效的体外晶体聚集抑制剂,并且其在体内的消融使两种现有小鼠模型之一容易自发地发生肾内钙结晶,但关于THP在肾结石中的作用仍存在关键争议。通过对250多个THP空小鼠及其野生型对照进行长期随访,我们在此证明了肾钙化是THP空小鼠的高度一致的表型,该表型是年龄和部分基因剂量依赖性的,但性别和遗传背景无关。 THP无效小鼠的肾钙化是进行性的,到15个月时,所有THP无效小鼠中超过85%的肾脏会自发形成晶体。晶体主要由羟磷灰石形式的磷酸钙组成,比肾小管内更常位于肾乳头的间隙内,特别是在年长动物中,并且缺乏伴随的炎性细胞浸润。在无THP的小鼠中观察到的羟磷灰石的间隙沉积与携带特发性草酸钙结石的人肾脏中发现的肾晶体高度相似。与野生型小鼠的24小时尿液相比,无THP的小鼠尿液中的石子前体透钙磷矿(磷酸钙)过饱和,并且尿石中柠檬酸盐(石子抑制剂)的排泄减少。尽管不如肾钙质变常见,但在老年THP空小鼠中发生肾盂和输尿管结石以及肾积水。这些结果提供了直接的体内证据,表明正常的THP在防御泌尿系统钙化中起着重要作用,并暗示THP的表达降低和/或功能降低可能导致肾结石。

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