Santiago-Mejia J, Ventura-Martinez R, Gomez C, Parra-Gamez L, Gonzales-Rios J, Rodriguez R
Department of Pharmacology, School of Medicine, National University of Mexico, Mexico City, Mexico.
J Physiol Pharmacol. 2007 Jun;58(2):275-85.
This study deals with the polyviewed expression of the altered contractility of the isolated ileum of the guinea-pig after ischemia/superfusion (I/S). Intestinal ischemia was produced by clamping the superior mesenteric artery for 40, 80 or 160 min. Ischemic and non-ischemic segments taken from the same guinea-pig were mounted for tension recording in organ baths and superfused (120 min) with an oxygenated Krebs-bicarbonate solution. Data were analyzed by means of the Polyview System software, which allows detecting simultaneously several events of one response. Histopathological changes in myenteric neurons were also examined. We found that ischemia in situ followed by superfusion in vitro (reoxygenation) severely reduces the spontaneous intestine contractile activity, and significantly decreases the maximal contractile response to ACh and to electrical field stimulation (EFS), the maximal rate of tension, and the sensitivity of the tissue to EFS. In addition, these ischemic intestines respond with a long-lasting contracture when electrical stimulation was started at supramaximal voltage. Functional alterations were time dependent. Neurons exhibited features of necrosis. These results provide clear evidence of detrimental effects of I/S on intestine contractile function. Digital analysis allows quantification of additional parameters important for evaluation of functional changes after I/S and of the degree of neuroprotection.
本研究探讨了豚鼠离体回肠在缺血/再灌注(I/S)后收缩性改变的多视角表达。通过夹闭肠系膜上动脉40、80或160分钟来造成肠道缺血。从同一只豚鼠获取的缺血段和非缺血段被安装在器官浴槽中用于张力记录,并用含氧的 Krebs - 碳酸氢盐溶液进行灌流(120分钟)。数据通过Polyview系统软件进行分析,该软件允许同时检测一个反应的多个事件。还检查了肌间神经元的组织病理学变化。我们发现,原位缺血后体外再灌注(复氧)会严重降低肠道的自发收缩活动,并显著降低对乙酰胆碱(ACh)和电场刺激(EFS)的最大收缩反应、最大张力变化率以及组织对EFS的敏感性。此外,当以超最大电压开始电刺激时,这些缺血肠道会出现持久的挛缩。功能改变具有时间依赖性。神经元呈现出坏死的特征。这些结果清楚地证明了I/S对肠道收缩功能的有害影响。数字分析能够对评估I/S后功能变化以及神经保护程度重要的其他参数进行量化。