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首页> 外文期刊>Biochemical Pharmacology >Inhibitory mechanisms of YC-1 and PMC in the induction of iNOS expression by lipoteichoic acid in RAW 264.7 macrophages.
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Inhibitory mechanisms of YC-1 and PMC in the induction of iNOS expression by lipoteichoic acid in RAW 264.7 macrophages.

机译:YC-1和PMC在脂蛋白脂酸诱导RAW 264.7巨噬细胞诱导iNOS表达中的抑制机制。

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In the present study, the signal pathways involved in NO formation and iNOS expression in RAW 264.7 macrophages stimulated by LTA were investigated. We also compared the relative inhibitory activities and mechanisms of PMC, a novel potent antioxidant of alpha-tocopherol derivatives, with those of YC-1, an sGC activator, on the induction of iNOS expression by LTA in cultured macrophages in vitro and LTA-induced hypotension in vivo. LTA induced concentration (0.1-50 microg/mL)- and time (4-24 hr)-dependent increases in nitrite (an indicator of NO biosynthesis) in macrophages. Both PMC (50 microM) and YC-1 (10 microM) inhibited NO production, iNOS protein, mRNA expression, and IkappaBalpha degradation upon stimulation by LTA (20 microg/mL) in macrophages. On the other hand, PMC (50 microM) almost completely suppressed JNK/SAPK activation, whereas YC-1 (10 microM) only partially inhibited its activation in LTA-stimulated macrophages. Moreover, PMC (10 mg/kg, i.v.) and YC-1 (5 mg/kg, i.v.) significantly inhibited the fall in MAP stimulated by LTA (10 mg/kg, i.v.) in rats. In conclusion, we demonstrate that YC-1 shows more-potent activity than PMC at abrogating the expression of iNOS in macrophages in vitro and reversing delayed hypotension in rats with endotoxic shock stimulated by LTA. The inhibitory mechanisms of PMC may be due to its antioxidative properties, with a resulting influence on JNK/SAPK and NF-kappaB activations. YC-1 may be mediated by increasing cyclic GMP, followed by, at least partly, inhibition of JNK/SAPK and NF-kappaB activations, thereby leading to inhibition of iNOS expression.
机译:在本研究中,调查了由LTA刺激的RAW 264.7巨噬细胞中NO形成和iNOS表达所涉及的信号途径。我们还比较了PMC(一种新型的α-生育酚衍生物的有效抗氧化剂)与YC-1(一种sGC激活剂)在体外培养的巨噬细胞中和经LTA诱导的LTA诱导iNOS表达的相对抑制活性和机理。体内低血压。 LTA诱导巨噬细胞中亚硝酸盐(NO生物合成的指标)的浓度(0.1-50微克/毫升)和时间(4-24小时)依赖性增加。 LTC(20 microg / mL)刺激巨噬细胞时,PMC(50 microM)和YC-1(10 microM)均抑制NO产生,iNOS蛋白,mRNA表达和IkappaBalpha降解。另一方面,PMC(50 microM)几乎完全抑制了JNK / SAPK激活,而YC-1(10 microM)仅部分抑制了LTA刺激的巨噬细胞的激活。而且,PMC(10mg / kg,静脉内)和YC-1(5mg / kg,静脉内)显着抑制了LTA(10mg / kg,静脉内)刺激的大鼠MAP的下降。总之,我们证明了YC-1在废除巨噬细胞中iNOS的表达并逆转LTA刺激的内毒素性休克大鼠中延迟性低血压方面表现出比PMC更有效的活性。 PMC的抑制机制可能是由于其抗氧化特性,从而影响了JNK / SAPK和NF-κB的活化。 YC-1可以通过增加环状GMP介导,然后至少部分抑制JNK / SAPK和NF-κB活化,从而导致iNOS表达受到抑制。

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