首页> 外文期刊>Journal of the American Society of Nephrology: JASN >An inadvertent but explicable error in calculating number needed to treat for reporting survival data.
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An inadvertent but explicable error in calculating number needed to treat for reporting survival data.

机译:在计算报告生存数据时,计算数量的无意中但可解析错误。

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The endothelin system has emerged as a novel target for the treatment of diabetic nephropathy. Endothelin-1 promotes mesangial cell proliferation and sclerosis. However, no direct pathogenic effect of endothelin-1 on podocytes has been shown in vivo and endothelin-1 signaling in podocytes has not been investigated. This study investigated endothelin effects in podocytes during experimental diabetic nephropathy. Stimulation of primary mouse podocytes with endothelin-1 elicited rapid calcium transients mediated by endothelin type A receptors (ETARs) and endothelin type B receptors (ETBRs). We then generated mice with a podocyte-specific double deletion of ETAR and ETBR (NPHS2-Cre×Ednra(lox/lox)×Ednrb(lox/lox) [Pod-ETRKO]). In vitro, treatment with endothelin-1 increased total β-catenin and phospho-NF-κB expression in wild-type glomeruli, but this effect was attenuated in Pod-ETRKO glomeruli. After streptozotocin injection to induce diabetes, wild-type mice developed mild diabetic nephropathy with microalbuminuria, mesangial matrix expansion, glomerular basement membrane thickening, and podocyte loss, whereas Pod-ETRKO mice presented less albuminuria and were completely protected from glomerulosclerosis and podocyte loss, even when uninephrectomized. Moreover, glomeruli from normal and diabetic Pod-ETRKO mice expressed substantially less total β-catenin and phospho-NF-κB compared with glomeruli from counterpart wild-type mice. This evidence suggests that endothelin-1 drives development of glomerulosclerosis and podocyte loss through direct activation of endothelin receptors and NF-κB and β-catenin pathways in podocytes. Notably, both the expression and function of the ETBR subtype were found to be important. Furthermore, these results indicate that activation of the endothelin-1 pathways selectively in podocytes mediates pathophysiologic crosstalk that influences mesangial architecture and sclerosis.
机译:内皮素系统已成为治疗糖尿病肾病的新靶标。内皮素-1促进髓鞘细胞增殖和硬化症。然而,没有研究体内内皮蛋白-1对孔细胞的直接致病作用,并且尚未研究在足细胞中的内皮素-1信号传导。该研究在实验糖尿病肾病期间研究了龟核细胞的内皮素作用。用内皮蛋白介导的内皮素-1引起的内皮素-1引起的初级小鼠孔细胞的刺激型受体(ETARS)和内皮素型B受体(ETBRS)。然后我们用足细胞特异性双缺失生成小鼠的遗留和EtBR(NPHS2-CRE×EDNA(LOX / LOX)×EDNRB(LOX / LOX)[POD-etrko])。在体外,用内皮素-1治疗在野生型肾小球中增加了总β-连环蛋白和磷酸磷酸磷酸酯和磷酸盐-NF-κB表达,但在Pod-etrko glomeruli中衰减了这种效果。在链脲佐菌素注射液滴诱导糖尿病后,野生型小鼠与微突出突尿的轻度糖尿病肾病发育,梭菌基质膨胀,肾小球基底膜增厚和泛骨细胞损失,而Pod-etrko小鼠呈现较少的白蛋白尿,甚至完全保护肾小球粥样硬化,甚至完全保护。当杂志化时。此外,与来自对应于野生型小鼠的肾小球相比,来自正常和糖尿病Pod-etrko小鼠的肾小球与肾小球表达了大致更少的β-连环蛋白和磷酸-NF-κB。该证据表明,内皮素-1通过直接激活内皮素受体和NF-κB和β-连环蛋白途径在足细胞中的直接激活来驱动肾小球粥样硬化和泛骨细胞丧失的发展。值得注意的是,发现ETBR亚型的表达和功能都是重要的。此外,这些结果表明,在足细胞中选择性地激活内皮素-1途径介导病理物理学串扰,这些串扰影响梭菌结构和硬化症。

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