首页> 外文期刊>The Journal of Physiology >NO- and non-NO-, non-prostanoid-dependent vasodilatation in rat sciatic nerve during maturation and developing experimental diabetic neuropathy.
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NO- and non-NO-, non-prostanoid-dependent vasodilatation in rat sciatic nerve during maturation and developing experimental diabetic neuropathy.

机译:大鼠坐骨神经成熟和实验性糖尿病性神经病的过程中,NO和非NO,非前列腺素依赖性血管舒张功能。

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This study examined NO- and non-NO-, non-prostanoid-dependent pathways of agonist-induced vasodilatation in streptozotocin (STZ)-induced diabetic rats and their age-matched controls at 1-2, 8-10 and 18-20 weeks after induction of diabetes. Using laser Doppler flowmetry, vasodilatory responses to acetylcholine (ACh; 0.1 mM) and morpholino-sydnonimine (SIN-1) were determined in the presence of Ringer solution, during inhibition of NO synthase (NOS) and cyclo-oxygenase (COX) with N(omega)-nitro-L-arginine (L-NNA; 1 mM) + indomethacin (10(-5) M), and during inhibition of K(+) channels, NOS and COX with tetraethylammonium (TEA; 10 mM) + L-NNA + indomethacin. Basal NOS activity and nerve conduction velocity were also determined. In age-matched controls, SIN-1-induced vasodilatation in the presence of TEA + L-NNA + indomethacin, basal NOS activity and the initial vasodilatory response to ACh during NOS and COX inhibition all decreased with maturation. In STZ-induced diabetics, SIN-1-induced vasodilatation in the presence of TEA + L-NNA + indomethacin was impaired immediately after induction of diabetes, but not at 18-20 weeks. NOS activity in STZ-induced diabetics displayed a transient 2-fold increase at 8-10 weeks, decreasing to age-matched control levels at 18-20 weeks. At 18-20 weeks of STZ-induced diabetes, ACh-induced vasodilatation during NOS and COX inhibition was prolonged due to increased K(+) channel activity and experimental diabetic sensory neuropathy (EDN) had developed. Thus, in sciatic nerve microcirculation of STZ-induced diabetic rats: (1) diabetic impairment of vasodilatation in response to exogenous NO was transient; (2) non-NO-, non-prostanoid-dependent vasodilatation and K(+) channel activity were augmented in STZ-induced diabetes; and (3) alterations in NO bioactivity were not related to the development of EDN.
机译:这项研究在1-2、8-10和18-20周时检查了链脲佐菌素(STZ)诱导的糖尿病大鼠中激动剂诱导的血管舒张的NO和非NO,非前列腺素依赖性途径诱发糖尿病后。使用激光多普勒血流仪,在林格溶液存在下,在用N抑制NO合酶(NOS)和环加氧酶(COX)的过程中,确定了对乙酰胆碱(ACh; 0.1 mM)和吗啉代亚胺(SIN-1)的血管舒张反应(ω)-硝基-L-精氨酸(L-NNA; 1 mM)+消炎痛(10(-5)M),以及在抑制K(+)通道,四乙基铵(TEA; 10 mM)的NOS和COX期间+ L-NNA +消炎痛。还确定了基础NOS活性和神经传导速度。在年龄匹配的对照中,在TEA + L-NNA +消炎痛存在下,SIN-1诱导的血管舒张,基础NOS活性以及在NOS和COX抑制期间对ACh的初始血管舒张反应均随着成熟而降低。在STZ诱导的糖尿病患者中,在诱导糖尿病后立即但在TEA + L-NNA +消炎痛存在下SIN-1诱导的血管舒张受损,但在18至20周时并未受损。 STZ诱导的糖尿病患者的NOS活性在8-10周时显示出短暂的2倍增加,在18-20周时下降到与年龄匹配的对照水平。在STZ诱导的糖尿病的18-20周内,由于K(+)通道活性的增加,NOS和COX抑制过程中ACh诱导的血管舒张被延长,并且实验性糖尿病感觉神经病(EDN)出现。因此,在STZ诱导的糖尿病大鼠的坐骨神经微循环中:(1)糖尿病对外源性NO的血管舒张损害是短暂的; (2)在STZ诱导的糖尿病中,非NO,非前列腺素依赖性血管舒张和K(+)通道活性增加; (3)NO生物活性的改变与EDN的发展无关。

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