Takayama I, Seto E, Zai H, Ohno S, Tezuka H, Daigo Y, Fujino M A
Department of Internal Medicine, Animal Research Centre, Yamanashi Medical University, Japan.
Dig Dis Sci. 2000 Oct;45(10):1901-6. doi: 10.1023/a:1005612109863.
In vitro studies on pacemaker-deficient W-mutants have revealed a disappearance of rhythmic contraction in their gastrointestinal tracts. Their contractile force has not been diminished, however. In contrast, W-mutants often present dysmoility-like symptoms with distension of the gastrointestinal tract in vivo. Gastrointestinal motility of W-mutant rats was examined in vivo by an extraluminal strain-gauge force transducer method. We examined a normal gastrointestinal motor pattern in the rats with two distinct motor phases, digestive and interdigestive. Moreover, we detected a failure to form an interdigestive contractile complex in pacemaker-deficient rats. The interdigestive motor activity of the gastrointestinal tract is important for cleaning gastrointestinal tract in preparation for the next meal. The impairment of the interdigestive contractile complex may be related to the dysmoility-like symptoms of W-mutant rats in vivo.
对缺乏起搏器的W突变体进行的体外研究显示,它们的胃肠道出现节律性收缩消失的情况。然而,其收缩力并未减弱。相比之下,W突变体在体内常表现出类似运动障碍的症状,伴有胃肠道扩张。通过腔外应变片式力传感器方法在体内检测了W突变大鼠的胃肠动力。我们研究了大鼠正常的胃肠运动模式,该模式有两个不同的运动阶段,即消化期和消化间期。此外,我们发现起搏器缺陷大鼠未能形成消化间期收缩复合体。胃肠道的消化间期运动活动对于清洁胃肠道以准备下一餐很重要。消化间期收缩复合体的受损可能与W突变大鼠在体内的类似运动障碍症状有关。