Different Influences of Extracellular and Intracellular Superoxide on Relaxation Through the NO/sGC/cGMP Pathway in Isolated Rat Iliac Arteries

被引:0
|
作者
Tawa, Masashi [1 ]
Shimosato, Takashi [1 ]
Iwasaki, Hirotaka [1 ]
Imamura, Takeshi [1 ]
Okamura, Tomio [1 ]
机构
[1] Shiga Univ Med Sci, Dept Pharmacol, Otsu, Shiga 5202192, Japan
关键词
cGMP; nitric oxide; soluble guanylate cyclase; superoxide; vasorelaxation; SOLUBLE GUANYLATE-CYCLASE; SMOOTH-MUSCLE RELAXATION; NITRIC-OXIDE; OXIDATIVE STRESS; ENDOTHELIAL DYSFUNCTION; VASCULAR-DISEASE; CORONARY-ARTERY; HEME; NO; INVOLVEMENT;
D O I
暂无
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Superoxide production is increased in diseased blood vessels, which is considered to lead to impairment of the nitric oxide (NO)/soluble guanylate cyclase (sGC)/cGMP pathway. To investigate the respective influence of extracellular and intracellular superoxide on vascular function through the NO/sGC/cGMP pathway, mechanical responses of rat external iliac arteries without endothelium were studied under exposure to a superoxide-generating agent, pyrogallol, or menadione. Exposure to pyrogallol impaired the relaxation induced by acidified NaNO2 (exogenous NO) but not that by nitroglycerin (organic nitrate), BAY 41-2272 (sGC stimulator), BAY 60-2770 (sGC activator), or 8-Br-cGMP (cGMP analog). Superoxide dismutase (SOD) and tempol restored the impaired relaxation by acidified NaNO2. Superoxide production in the bathing solution, but not in artery segments, was significantly increased by exposure to pyrogallol, which was abolished in the presence of SOD or tempol. However, exposure to menadione impaired the relaxant response to acidified NaNO2, nitroglycerin, or BAY 41-2272, whereas it augmented that to BAY 60-2770. Also, this exposure had no effect on the 8-Br-cGMP-induced vasorelxation. Superoxide production in artery segments was dramatically enhanced by exposure to menadione, whereas that in the bathing solution was not affected. This increase in vascular superoxide production was normalized by tempol but not by SOD. These findings suggest that extracellular superoxide reacts with NO only outside the cell, whereas intracellular superoxide not only scavenges NO inside the cell but also shifts the sGC redox equilibrium.
引用
收藏
页码:160 / 167
页数:8
相关论文
共 6 条
  • [1] Effects of Peroxynitrite on Relaxation through the NO/sGC/cGMP Pathway in Isolated Rat Iliac Arteries
    Tawa, Masashi
    Shimosato, Takashi
    Iwasaki, Hirotaka
    Imamura, Takeshi
    Okamura, Tomio
    JOURNAL OF VASCULAR RESEARCH, 2014, 51 (06) : 439 - 446
  • [2] Effects of hydrogen peroxide on relaxation through the NO/sGC/cGMP pathway in isolated rat iliac arteries
    Tawa, Masashi
    Shimosato, Takashi
    Iwasaki, Hirotaka
    Imamura, Takeshi
    Okamura, Tomio
    FREE RADICAL RESEARCH, 2015, 49 (12) : 1479 - 1487
  • [3] Apple Procyanidins Induced Vascular Relaxation in Isolated Rat Aorta through NO/cGMP Pathway in Combination with Hyperpolarization by Multiple K+ Channel Activations
    Matsui, Toshiro
    Korematsu, Sachiko
    Byun, Eui-Baek
    Nishizuka, Taichi
    Ohshima, Shunji
    Kanda, Tomomasa
    BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 2009, 73 (10) : 2246 - 2251
  • [4] ROLE OF EXTRACELLULAR AND INTRACELLULAR ACIDOSIS FOR HYPERCAPNIA-INDUCED INHIBITION OF TENSION OF ISOLATED RAT CEREBRAL-ARTERIES
    TIAN, R
    VOGEL, P
    LASSEN, NA
    MULVANY, MJ
    ANDREASEN, F
    AALKJAER, C
    CIRCULATION RESEARCH, 1995, 76 (02) : 269 - 275
  • [5] Quinazoline-based human phosphodiesterase 5 inhibitors exhibited a selective vasorelaxant effect on rat isolated pulmonary arteries involving NO-sGC-cGMP pathway and calcium inhibitory effects
    Chatturong, Usana
    Martin, Helene
    Totoson, Perle
    Ingkaninan, Kornkanok
    Temkitthawon, Prapapan
    Sermsenaphorn, Saharat
    Somarin, Thanachon
    Konsue, Adchatawut
    Gleeson, M. Paul
    Demougeot, Celine
    Chootip, Krongkarn
    VASCULAR PHARMACOLOGY, 2022, 147
  • [6] Physiological concentration of nitric oxide induces positive inotropic effects through cGMP pathway in isolated rat ventricular myocytes
    Hirota, Y
    Ishida, H
    Genka, C
    Obama, R
    Matsuyama, S
    Nakazawa, H
    JAPANESE JOURNAL OF PHYSIOLOGY, 2001, 51 (04) : 455 - 461