课题基金 / 基金详情

Kidney Tubular Damage and Dysfunction Identify a Novel Axis of Chronic Kidney

Kidney Tubular Damage and Dysfunction Identify a Novel Axis of Chronic Kidney
肾小管损伤和功能障碍确定了慢性肾病的新轴
批准号:
9012817
负责人:
Joachim H Ix
金额:
$60.74万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-01-01 至 2017-12-31

项目摘要

项目成果

Joachim H Ix的其他基金

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中文摘要
翻译
描述(由申请方提供):病理学研究表明,肾小管损伤、萎缩和纤维化是慢性肾病(CKD)的常见特征,并且高度预测进展至透析。确定的CKD危险因素包括高血压和高龄与活检中的肾小管损伤和纤维化相关。然而,目前CKD的临床评估仅评估肾小球功能(GFR)和肾小球损伤(蛋白尿),而不是肾小管功能障碍或损伤。本申请的总体假设是肾小管功能障碍和损伤是CKD发病机制和预后的可测量贡献因素。肾小管功能障碍将通过三个指标评估:(1)肾小管对FGF 23和PTH的激素作用的抗性;(2)酸/碱稳态;和(3)尿蛋白重吸收能力。FGF 23和PTH是通过对肾小管的作用诱导磷酸尿的激素。FGF 23可直接引起心脏毒性,但也可能标志着肾功能不全。在我们的初步工作中,我们已经证明了FGF-23或PTH水平升高与伴随尿磷排泄降低的人的不良结局更密切相关。这些发现表明,将FGF 23和PTH与尿磷进行索引可以识别出对这些激素信号具有抗性的肾小管个体。异常的酸/碱稳态和从尿液中过滤的蛋白质的不完全重吸收是肾小管功能障碍的另外标志物,其对于CKD患者的预后也可能是重要的。此外,我们还研究了几种新的尿蛋白,这是特定的肾小管损伤。在无急性肾损伤的社区生活个体中,我们观察到两种标志物(KIM-1和IL-18)的尿液浓度较高与CKD的发生以及死亡和心力衰竭的风险相关,与eGFR或白蛋白尿无关。总的来说,这些结果使我们假设,结合肾小管功能障碍和损伤评估的肾小管健康评估可能发展成为我们评估和管理CKD的重大进展。肾小管疾病将捕获CKD的非肾小球轴,并且可以帮助识别CKD进展和CVD事件风险最大的患者。为了解决这些目标,我们提出了一项SPRINT试验的辅助研究-一项大型的,NIH赞助的,多中心的随机临床试验,测试强化(<120 mmHg)与标准(<140 mmHg)收缩压目标是否会导致较低的CVD事件和CKD进展率。在基线时eGFR <60 ml/min/1.73 m2的2,566名SPRINT参与者中,我们将:(1)确定肾小管功能障碍和损伤与CVD事件风险的关联,(2)确定肾小管功能障碍和损伤与CKD进展的关联,以及(3)确定随机分配至试验的强化血压管理组是否随时间推移减缓肾小管功能障碍和损伤的进展,进行标准的血压管理
英文摘要
DESCRIPTION (provided by applicant): Pathologic studies demonstrate that kidney tubule injury, atrophy, and fibrosis are common features of chronic kidney disease (CKD) and are highly predictive of progression to dialysis. Established CKD risk factors including hypertension and advanced age are associated with tubular injury and fibrosis on biopsy. However, current clinical assessment of CKD evaluates only glomerular function (GFR) and glomerular injury (albuminuria), but not kidney tubular dysfunction or injury. The overall hypothesis of this application is that kidney tubular dysfunction and injury are measurable contributors to CKD pathogenesis and prognosis. Dysfunction of the kidney tubules will be assessed by three indices: (1) renal tubule resistance to hormone actions of FGF23 and PTH; (2) acid/base homeostasis; and (3) urine protein reabsorptive capacity. FGF23 and PTH are hormones that induce phosphaturia through effects on kidney tubules. FGF23 can directly cardiac toxicity, however it may also mark kidney dysfunction. In our preliminary work, we have demonstrated that elevated levels of FGF-23 or PTH are more strongly associated with adverse outcomes among persons with concomitantly lower urine phosphorus excretion. These findings suggest that indexing FGF23 and PTH to urine phosphorus identifies individuals with renal tubules that are resistant to these hormonal signals. Abnormal acid/base homeostasis and incomplete reabsorption of filtered proteins from the urine are additional markers of tubule dysfunction that may also be important for prognosis in persons with CKD. In addition, we have investigated several novel urinary proteins that are specific to renal tubular injury. Among community-living individuals without acute kidney injury, we have observed that higher urine concentrations of two markers (KIM-1 and IL-18) are associated with incident development of CKD and risk of death and heart failure, independent of eGFR or albuminuria. Collectively, these results have led us to hypothesize that an assessment of kidney tubular health that incorporates assessments of tubular dysfunction and injury could develop into a major advance in our assessment and management of CKD. Kidney tubular disease would capture a nonglomerular axis of CKD, and could help identify patients at greatest risk for CKD progression and CVD events. To address these objectives, we propose an ancillary study to the SPRINT trial - a large, NIH-sponsored, multi-center randomized clinical trial testing whether intensive (<120 mmHg) vs. standard (<140 mmHg) systolic blood pressure targets result in lower CVD events and rates of CKD progression. Among 2,566 SPRINT participants with eGFR <60ml/min/1.73m2 at baseline, we will: (1) determine the association of kidney tubular dysfunction and injury with risk of CVD events, (2) determine the association of kidney tubular dysfunction and injury with CKD progression, and (3) determine whether randomization to intensive blood pressure management arm of the trial slows progression of kidney tubular dysfunction and injury over time compared with standard blood pressure management.
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