Wang Yuping, Zhao Shuang, Gu Yang, Lewis David F
Department of Obstetrics and Gynecology, Louisiana State University Health Sciences Center, Shreveport, Louisiana.
Physiol Rep. 2018 Jul;6(13):e13785. doi: 10.14814/phy2.13785.
Recent findings of podocyte shedding/podocyturia highlight the central significance of podocyte injury in preeclampsia, a hypertensive disorder unique to human pregnancy. To test the hypothesis that oxidative stress contributes to kidney podocyte injury in preeclampsia, we specifically examined expression and distribution of antioxidant CuZn-SOD with nephrin and podoplanin in shed podocytes from women with preeclampsia. Human podocyte AB 8/13 cells served as control. We found that CuZn-SOD was localized at the front/outreach region of nephrin at the cell periphery (foot process areas) in control podocytes and expression of CuZn-SOD, nephrin, and podoplanin were all dislocated or lost in shed podocytes from preeclamptic patients. We further tested oxidative stress-induced nephrin shedding in podocytes, in which AB 8/13 podocytes were cultured under lowered oxygen condition (2%O ) or treated with hypoxic mimicking agent cobalt chloride. Our results showed that reduced nephrin and podoplanin expression were associated with downregulation of CuZn-SOD expression in podocytes when cells were cultured under lowered oxygen or hypoxic conditions. Nephrin shed in urinary specimen from preeclamptic women was also determined by immunoprecipitation/immunoblotting. The molecular sizes of nephrin that corresponded to that were lost when cells were cultured under hypoxic conditions. We concluded that increased oxidative stress plays a significant role in inducing podocyte protein shedding in preeclampsia.
足细胞脱落/足细胞尿的最新研究结果凸显了足细胞损伤在子痫前期(一种人类妊娠特有的高血压疾病)中的核心重要性。为了验证氧化应激导致子痫前期肾足细胞损伤这一假说,我们特别检测了子痫前期患者脱落足细胞中抗氧化剂铜锌超氧化物歧化酶(CuZn-SOD)与nephrin和血小板内皮细胞黏附分子-1(podoplanin)的表达及分布。人足细胞AB 8/13细胞作为对照。我们发现,在对照足细胞中,CuZn-SOD定位于细胞周边(足突区域)nephrin的前端/延伸区域,而子痫前期患者脱落足细胞中CuZn-SOD、nephrin和podoplanin的表达均发生错位或缺失。我们进一步检测了氧化应激诱导的足细胞nephrin脱落,其中将AB 8/13足细胞在低氧条件(2%O₂)下培养或用低氧模拟剂氯化钴处理。我们的结果表明,当细胞在低氧或缺氧条件下培养时,足细胞中nephrin和podoplanin表达的降低与CuZn-SOD表达的下调相关。子痫前期女性尿液标本中脱落的nephrin也通过免疫沉淀/免疫印迹法进行了测定。其对应的nephrin分子大小在细胞缺氧培养时丢失。我们得出结论,氧化应激增加在子痫前期诱导足细胞蛋白脱落中起重要作用。