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KMUP-1, a xanthine derivative, induces relaxation of guinea-pig isolated trachea: the role of the epithelium, cyclic nucleotides and K+ channels

机译:黄嘌呤衍生物KMUP-1诱导豚鼠分离的气管舒张:上皮,环状核苷酸和K +通道的作用

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摘要

7-[2-[4-(2-chlorophenyl)piperazinyl]ethyl]-1,3-dimethylxanthine (KMUP-1) produces tracheal relaxation, intracellular accumulation of cyclic nucleotides, inhibition of phosphodiesterases (PDEs) and activation of K+ channels.KMUP-1 (0.01–100 μM) induced concentration-dependent relaxation responses in guinea-pig epithelium-intact trachea precontracted with carbachol. Relaxation responses were also elicited by the PDE inhibitors theophylline, 3-isobutyl-1-methylxanthine (IBMX), milrinone, rolipram and zaprinast (100 μM), and a KATP channel opener, levcromakalim.Tracheal relaxation induced by KMUP-1 was attenuated by epithelium removal and by pretreatment with inhibitors of soluble guanylate cyclase (sGC) (1H-[1,2,4]oxadiazolo[4,3-a]quinoxalin-1-one (ODQ), 1 μM), nitric oxide synthase (Nω-nitro-L-arginine methyl ester, 100 μM), K+ channels (tetraethylammonium, 10 mM), KATP channels (glibenclamide, 1 μM), voltage-dependent K+ channels (4-aminopyridine, 100 μM) and Ca2+-dependent K+ channels (charybdotoxin, 0.1 μM or apamin, 1 μM).Both KMUP-1 (10 μM) and theophylline nonselectively and slightly inhibited the enzyme activity of PDE3, 4 and 5, suggesting that they are able to inhibit the metabolism of adenosine 3′,5′-cyclic monophosphate (cyclic AMP) and guanosine 3′,5′-cyclic monophosphate (cyclic GMP). Likewise, the effects of IBMX were also measured and its IC50 values for PDE3, 4 and 5 were 6.5±1.2, 26.3±3.9 and 31.7±5.3 μM, respectively.KMUP-1 (0.01–10 μM) augmented intracellular cyclic AMP and cyclic GMP levels in guinea-pig cultured tracheal smooth muscle cells. These increases in cyclic AMP and cyclic GMP were abolished in the presence of an adenylate cyclase inhibitor SQ 22536 (100 μM) and an sGC inhibitor ODQ (10 μM), respectively.KMUP-1 (10 μM) increased the expression of protein kinase A (PKARI) and protein kinase G (PKG1α1β) in a time-dependent manner, but this was only significant for PKG after 9 h.Intratracheal administration of tumour necrosis factor-α (TNF-α, 0.01 mg kg−1) induced bronchoconstriction and exhibited a time-dependent increase in lung resistance (RL) and decrease in dynamic lung compliance (Cdyn). KMUP-1 (1.0 mg kg−1), injected intravenously for 10 min before the intratracheal TNF-α, reversed these changes in RL and Cdyn.These data indicate that KMUP-1 activates sGC, produces relaxation that was partly dependent on an intact epithelium, inhibits PDEs and increases intracellular cyclic AMP and cyclic GMP, which then increases PKA and PKG, leading to the opening of K+ channels and resulting tracheal relaxation.
机译:7- [2- [2-(4-(2-氯苯基)哌嗪基]乙基] -1,3-二甲基黄嘌呤(KMUP-1)产生气管松弛,环状核苷酸在细胞内积累,抑制磷酸二酯酶(PDE)和激活K +通道。 KMUP-1(0.01–100μM)在与卡巴胆碱预包装的豚鼠上皮完整气管中诱导浓度依赖性松弛反应。 PDE抑制剂茶碱,3-异丁基-1-甲基黄嘌呤(IBMX),米力农,咯利普兰和扎普利斯特(100μM)以及KATP通道开放剂levcromakalim也引起了舒张反应.KMUP-1引起的气管舒张被衰减去除上皮并用可溶性鸟苷酸环化酶(sGC)(1H- [1,2,4]恶二唑并[4,3-a]喹喔啉-1-酮(ODQ),1μM),一氧化氮合酶(Nω -硝基-L-精氨酸甲酯,100μM),K +通道(四乙铵,10 mM),KATP通道(格列苯脲,1μM),电压依赖性K +通道(4-氨基吡啶,100μM)和Ca2 +依赖性K +通道(软骨毒素0.1μM或apapamin,1μM)。KMUP-1(10μM)和茶碱均非选择性地并略微抑制PDE3、4和5的酶活性,表明它们能够抑制腺苷3'的代谢, 5'-环一磷酸(环AMP)和鸟苷3',5'-环一磷酸(环GMP)。同样,还测量了IBMX的作用,PDE3、4和5的IC50值分别为6.5±1.2、26.3±3.9和31.7±5.3μM。KMUP-1(0.01–10μM)增强了细胞内环状AMP和环状豚鼠培养的气管平滑肌细胞中的GMP水平。在存在腺苷酸环化酶抑制剂SQ 22536(100μM)和sGC抑制剂ODQ(10μM)的情况下,消除了环状AMP和环状GMP的这些增加.KMUP-1(10μM)增加了蛋白激酶A的表达。 (PKARI)和蛋白激酶G(PKG1α1β)呈时间依赖性,但这仅对PKG有显着影响9小时。气管内给予肿瘤坏死因子-α(TNF-α,0.01 mg kg-1)会引起支气管收缩和表现出时间依赖性的肺阻力(RL)和动态肺顺应性(Cdyn)下降。在气管内TNF-α之前静脉内注射KMUP-1(1.0 mg kg-1)10分钟,逆转了RL和Cdyn的这些变化。这些数据表明KMUP-1激活sGC,产生松弛,部分取决于完整上皮抑制PDEs并增加细胞内环状AMP和环状GMP,然后增加PKA和PKG,导致K +通道打开并导致气管舒张。

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