Department of Anatomy and Cell Biology, University Medicine Greifswald, Greifswald, Germany.
Clinic for Diabetes and Metabolic Diseases, Karlsburg Hospital Dr. Guth GmbH & Co KG, Karlsburg, Germany.
J Cell Mol Med. 2018 Nov;22(11):5265-5277. doi: 10.1111/jcmm.13762. Epub 2018 Aug 21.
Podocyte loss and changes to the complex morphology are major causes of chronic kidney disease (CKD). As the incidence is continuously increasing over the last decades without sufficient treatment, it is important to find predicting biomarkers. Therefore, we measured urinary mRNA levels of podocyte genes NPHS1, NPHS2, PODXL and BDNF, KIM-1, CTSL by qRT-PCR of 120 CKD patients. We showed a strong correlation between BDNF and the kidney injury marker KIM-1, which were also correlated with NPHS1, suggesting podocytes as a contributing source. In human biopsies, BDNF was localized in the cell body and major processes of podocytes. In glomeruli of diabetic nephropathy patients, we found a strong BDNF signal in the remaining podocytes. An inhibition of the BDNF receptor TrkB resulted in enhanced podocyte dedifferentiation. The knockdown of the orthologue resulted in pericardial oedema formation and lowered viability of zebrafish larvae. We found an enlarged Bowman's space, dilated glomerular capillaries, podocyte loss and an impaired glomerular filtration. We demonstrated that BDNF is essential for glomerular development, morphology and function and the expression of BDNF and KIM-1 is highly correlated in urine cells of CKD patients. Therefore, BDNF mRNA in urine cells could serve as a potential CKD biomarker.
足细胞丧失和复杂形态改变是慢性肾脏病(CKD)的主要原因。近几十年来,CKD 的发病率不断上升,但治疗方法却不足,因此寻找预测生物标志物非常重要。为此,我们通过 qRT-PCR 检测了 120 名 CKD 患者尿液中足细胞基因 NPHS1、NPHS2、PODXL 和 BDNF、KIM-1、CTSL 的 mRNA 水平。我们发现 BDNF 与肾损伤标志物 KIM-1 之间存在强烈相关性,而 KIM-1 与 NPHS1 也呈相关性,这表明足细胞是其来源之一。在人类活检中,BDNF 定位于足细胞的胞体和主要突起中。在糖尿病肾病患者的肾小球中,我们发现剩余的足细胞中有强烈的 BDNF 信号。BDNF 受体 TrkB 的抑制导致足细胞去分化增强。其同源物的敲低导致斑马鱼幼虫的心包水肿形成和存活率降低。我们发现,肾小球的 Bowman 腔增大、肾小球毛细血管扩张、足细胞丧失以及肾小球滤过功能受损。我们证明 BDNF 对肾小球的发育、形态和功能至关重要,并且在 CKD 患者尿液细胞中 BDNF 和 KIM-1 的表达高度相关。因此,尿液细胞中的 BDNF mRNA 可以作为潜在的 CKD 生物标志物。