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Oxidative stress and dysregulation of the taurine transporter in high-glucose-exposed human Schwann cells: implications for pathogenesis of diabetic neuropathy

机译:高糖暴露的人类雪旺细胞中牛磺酸转运蛋白的氧化应激和失调:对糖尿病性神经病发病机制的影响。

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摘要

In human Schwann cells, the role of taurine in regulating glucose-induced changes in antioxidant defense systems has been examined. Treatment with high glucose for 7 days induced reactive oxygen species, increased 4-hydroxynoneal adducts (20 ± 5%, P < 0.05) and poly(ADP-ribosyl)ated proteins (40 ± 13%, P < 0.05). Increases in these markers of oxidative stress were reversed by simultaneous incubation in 0.25 mM taurine. Both high glucose and taurine independently increased superoxide dismutase and catalase activity and decreased glutathione levels, but their effects were not additive. Glucose reduced taurine transporter (TauT) mRNA and protein in a dose-dependent manner with maximal decreases of 66 ± 6 and 63 ± 12%, respectively (P < 0.05 both). The Vmax for taurine uptake was decreased in 30 mM glucose from 61 ± 5 to 42 ± 3 pmol·min−1·mg protein−1 (P < 0.001). Glucose-induced TauT downregulation could be reversed by inhibition of aldose reductase, a pathway that depletes NADPH and increases osmotic stress and protein glycation. TauT protein was increased more than threefold, and the Vmax for taurine uptake doubled (P < 0.05 both) by prooxidants. TauT downregulation was reversed both by treatment with the antioxidant α-lipoic acid, which increased TauT mRNA by 60% and Vmax by 50% (P < 0.05 both), and by the aldose reductase inhibitor sorbinil, which increased TauT mRNA 380% and Vmax by 98% (P < 0.01 both). These data highlight the potential therapeutic benefits of taurine supplementation in diabetic complications and provide mechanisms whereby taurine restoration could be achieved in order to prevent or reverse diabetic complications.
机译:在人类雪旺细胞中,牛磺酸在调节葡萄糖诱导的抗氧化防御系统变化中的作用已得到检验。用高葡萄糖处理7天会诱发活性氧,增加了4-羟基壬醛加合物(20±5%,P <0.05)和聚(ADP-核糖基)化的蛋白质(40±13%,P <0.05)。通过在0.25 mM牛磺酸中同时孵育,可以逆转这些氧化应激标志物的增加。高葡萄糖和牛磺酸都独立增加了超氧化物歧化酶和过氧化氢酶的活性并降低了谷胱甘肽水平,但它们的作用不是累加的。葡萄糖以剂量依赖的方式降低了牛磺酸转运蛋白(TauT)的mRNA和蛋白质,最大降低分别为66±6%和63±12%(P均<0.05)。 30 mM葡萄糖中牛磺酸摄取的Vmax从61±5降低至42±3 pmol·min -1 ·mg蛋白 -1 (P <0.001)。葡萄糖诱导的TauT下调可以通过抑制醛糖还原酶来逆转,醛糖还原酶是一种消耗NADPH并增加渗透压和蛋白质糖基化的途径。 TauT蛋白增加了三倍以上,并且前氧化剂吸收牛磺酸的Vmax增加了一倍(P均<0.05)。通过用抗氧化剂α-硫辛酸处理可逆转TauT的下调,抗氧化剂α-硫辛酸可使TauT mRNA升高60%,Vmax升高50%(两者均P <0.05),醛糖还原酶抑制剂山梨醇使TauT mRNA的380%和Vmax升高。降低了98%(两者均P <0.01)。这些数据突出了牛磺酸补充剂在糖尿病并发症中的潜在治疗益处,并提供了可以实现牛磺酸还原以预防或逆转糖尿病并发症的机制。

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