Takahashi T, Nakamura K, Itoh H, Sima A A, Owyang C
Department of Internal Medicine, University of Michigan Medical Center, Ann Arbor 48109-0362, USA.
Gastroenterology. 1997 Nov;113(5):1535-44. doi: 10.1053/gast.1997.v113.pm9352855.
BACKGROUND & AIMS: The mechanism responsible for defective gastric accommodation in diabetes is unknown. The aim of this study was to investigate if this abnormality is due to a defective nitric oxide pathway secondary to impaired nitric oxide synthase (NOS) expression in the gastric myenteric plexus.
To test this hypothesis, we studied nonadrenergic, noncholinergic (NANC) relaxation, NOS activity, NADPH diaphorase histochemistry, NOS immunohistochemistry, NOS immunoblotting, and NOS messenger RNA expression in the gastric myenteric plexus of spontaneously diabetic biobreeding/Worcester (BB/W) rats. Age-matched nondiabetic Wistar rats were used as controls.
Gastric neuromuscular preparations from control rats showed a frequency-dependent NANC relaxation in response to transmural stimulation. This relaxation was markedly antagonized by N(G)-nitro-L-arginine-methyl ester, indicating mediation by the neuronal release of NO. The NANC relaxation in gastric muscle preparations obtained from diabetic BB/W rats was significantly impaired. The number of NOS-immunoreactive cells in the gastric myenteric plexus and the NOS activity were significantly reduced in diabetic BB/W rats, suggesting that NOS synthesis is impaired in diabetes. Northern blot analysis showed that the density of NOS messenger RNA bands at 9.5 kilobases was significantly reduced in the gastric tissues of diabetic BB/W rats.
These results indicate that gastric relaxation in diabetics is hampered mainly by impaired NOS expression in the gastric myenteric plexus.
糖尿病患者胃容纳功能缺陷的机制尚不清楚。本研究旨在探讨这种异常是否是由于胃肌间神经丛中一氧化氮合酶(NOS)表达受损继发一氧化氮途径缺陷所致。
为验证这一假设,我们研究了自发性糖尿病生物繁殖/伍斯特(BB/W)大鼠胃肌间神经丛中的非肾上腺素能、非胆碱能(NANC)舒张、NOS活性、NADPH黄递酶组织化学、NOS免疫组织化学、NOS免疫印迹以及NOS信使核糖核酸表达。年龄匹配的非糖尿病Wistar大鼠作为对照。
对照大鼠的胃神经肌肉标本对跨壁刺激呈现频率依赖性NANC舒张。这种舒张被N(G)-硝基-L-精氨酸甲酯显著拮抗,表明由神经元释放的一氧化氮介导。从糖尿病BB/W大鼠获得的胃肌标本中的NANC舒张明显受损。糖尿病BB/W大鼠胃肌间神经丛中NOS免疫反应性细胞数量和NOS活性显著降低,提示糖尿病中NOS合成受损。Northern印迹分析显示,糖尿病BB/W大鼠胃组织中9.5千碱基处的NOS信使核糖核酸条带密度显著降低。
这些结果表明,糖尿病患者的胃舒张主要因胃肌间神经丛中NOS表达受损而受到阻碍。