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首页> 外文期刊>Life sciences >The high glucose-induced stimulation of B1R and B2R expression via CB 1R activation is involved in rat podocyte apoptosis
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The high glucose-induced stimulation of B1R and B2R expression via CB 1R activation is involved in rat podocyte apoptosis

机译:高糖诱导的CB 1R激活刺激B1R和B2R表达与大鼠足细胞凋亡有关

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Aims: We examined renal kallikrein-kinin system (KKS) apoptosis and its related signaling pathway in rat podocytes. In addition, we studied the relationship of cannabinoid receptor 1 (CB 1R) with high glucose and BK receptors. Main methods: Cell viability was determined by an MTT assay and apoptosis by DNA fragmentation assay, while gene expression was investigated by RT-PCR. Protein expression was analyzed by Western blot analysis. A chemical inhibitor or siRNA transfection was used to inhibit B1R, B2R, and CB 1R signaling. Key findings: High glucose (25 mM) treatment decreased cell viability and increased DNA fragmentation. High glucose-induced DNA fragmentation and PARP and caspase-3 activations were blocked by both [des-Arg 10]-HOE 140 (a B1R antagonist) and HOE 140 (a B2R antagonist). High glucose also increased Akt phosphorylation, ER stress-related protein expression, and NF-κB/I-κB phosphorylation in podocytes, which was blocked by both [des-Arg 10]-HOE 140 and HOE 140. In addition, B1R and B2R siRNA transfections prevented high glucose-induced Akt and NF-κB activations in rat podocytes. Moreover, AM251 (a CB 1R antagonist) treatment and CB 1R siRNA transfection blocked the high glucose-induced stimulation of BK receptor expression, Akt activation, and NF-κB activation. Significance: Our study suggests that hyperglycemia induces apoptosis via the stimulation of B1R and B2R expression through CB 1R activation in rat podocytes in vitro, which is associated with the development of diabetic nephropathy.
机译:目的:我们检查了大鼠足细胞中的肾激肽激肽-激肽系统(KKS)凋亡及其相关信号通路。此外,我们研究了大麻素受体1(CB 1R)与高血糖和BK受体的关系。主要方法:MTT法测定细胞活力,DNA断裂法测定细胞凋亡,RT-PCR研究基因表达。通过蛋白质印迹分析来分析蛋白质表达。使用化学抑制剂或siRNA转染来抑制B1R,B2R和CB 1R信号传导。主要发现:高葡萄糖(25 mM)处理降低细胞活力并增加DNA片段化。 [des-Arg 10] -HOE 140(一种B1R拮抗剂)和HOE 140(一种B2R拮抗剂)都阻断了高葡萄糖诱导的DNA片段化以及PARP和caspase-3活化。高葡萄糖还增加了足细胞中Akt的磷酸化,ER应激相关蛋白的表达以及NF-κB/I-κB的磷酸化,这被[des-Arg 10] -HOE 140和HOE 140所阻断。此外,B1R和B2R siRNA转染阻止了大鼠足细胞中高葡萄糖诱导的Akt和NF-κB活化。此外,AM251(一种CB 1R拮抗剂)治疗和CB 1R siRNA转染可阻断高糖诱导的BK受体表达刺激,Akt激活和NF-κB激活。意义:我们的研究表明,高血糖通过体外刺激大鼠足细胞中CB 1R的活化来刺激B1R和B2R表达,从而诱导凋亡,这与糖尿病性肾病的发展有关。

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