Miller Steven M, Szurszewski J H
Department of Physiology and Biophysics, Mayo Clinic, Rochester, Minnesota 55905, USA.
Am J Physiol Gastrointest Liver Physiol. 2003 Dec;285(6):G1129-38. doi: 10.1152/ajpgi.00292.2003. Epub 2003 Aug 14.
The relationship between longitudinal and circular muscle tension in the mouse colon and mechanosensory excitatory synaptic input to neurons in the superior mesenteric ganglion (SMG) was investigated in vitro. Electrical activity was recorded intracellularly from SMG neurons, and muscle tension was simultaneously monitored in the longitudinal, circumferential, or both axes. Colonic intraluminal pressure and volume changes were also monitored simultaneously with muscle tension changes. The results showed that the frequency of fast excitatory postsynaptic potentials (fEPSPs) in SMG neurons increased when colonic muscle tension decreased, when the colon relaxed and refilled with fluid after contraction, and during receptive relaxation preceding spontaneous colonic contractions. In contrast, fEPSP frequency decreased when colonic muscle tension increased during spontaneous colonic contraction and emptying. Manual stretch of the colon wall to 10-15% beyond resting length in the circumferential axis of flat sheet preparations increased fEPSP frequency in SMG neurons, but stretch in the longitudinal axis to 15% beyond resting length in the same preparations did not. There was no increase in synaptic input when tubular colon segments were stretched in their long axes up to 20% beyond their resting length. The circumferential stretch-sensitive increase in the frequency of synaptic input to SMG neurons persisted when the colonic muscles were relaxed pharmacologically by nifedipine (2 microM) or nicardipine (3 microM). These results suggest that colonic mechanosensory afferent nerves projecting to the SMG function as length or stretch detectors in parallel to the circular muscle layer.
在体外研究了小鼠结肠纵向和环行肌张力与肠系膜上神经节(SMG)神经元机械感觉兴奋性突触输入之间的关系。通过细胞内记录SMG神经元的电活动,并同时监测纵向、圆周或两个轴向上的肌肉张力。还同时监测结肠腔内压力和容积变化与肌肉张力变化。结果表明,当结肠肌肉张力降低时、结肠在收缩后松弛并重新充满液体时以及在自发性结肠收缩之前的感受性松弛期间,SMG神经元中快速兴奋性突触后电位(fEPSP)的频率增加。相反,在自发性结肠收缩和排空期间结肠肌肉张力增加时,fEPSP频率降低。在平板制剂的圆周轴上将结肠壁手动拉伸至超过静息长度10 - 15%会增加SMG神经元中的fEPSP频率,但在相同制剂中在纵向轴上拉伸至超过静息长度15%则不会。当管状结肠段在其长轴上拉伸至超过其静息长度20%时,突触输入没有增加。当用硝苯地平(2 microM)或尼卡地平(3 microM)使结肠肌肉药理学松弛时,对SMG神经元突触输入频率的圆周拉伸敏感性增加仍然存在。这些结果表明,投射到SMG的结肠机械感觉传入神经作为与环行肌层平行的长度或拉伸探测器发挥作用。