Daniel E E, Willis A, Cho W J, Boddy G
Department of Pharmacology, University of Alberta, Edmonton, Canada.
Neurogastroenterol Motil. 2005 Jun;17(3):355-65. doi: 10.1111/j.1365-2982.2005.00639.x.
We studied pacing and neurotransmission in longitudinal (LM) and circular muscle (CM) in intestine of W/W++ and W/W(V) mice. Electrical field-stimulation (EFS) of nerves in LM segments was more inhibitory in W/W(V) mice than in W/W++ mice. No inhibitory input to CM segments of W/W(V) mice was found. The EFS, after nerve block, entrained segments of both W/W++ and mutant mice with 10 ms pulses, and entrained those of mutant mice more readily at 1 and 3 ms pulses. Pacing with external electrodes did not depend on interstitial cells of Cajal in the myenteric plexus (ICC-MP). 2-Aminoethoxydiphenyl borate (2-APB), putative antagonist at IP3 receptors, store-operated channels and the Sacro-endoplasmic reticulum Ca2+ ATPase pump, reduced frequency and amplitudes of pacing of LM segments from W/W(V) mice as it did in BALB/c mice. Thus, its actions may not require ICC-MP. SKF 96365, a putative inhibitor of store-operated channels, reduced frequencies and amplitudes of intestinal segments in W/W++ mice at 10 or 30 micromol L-1. This resulted from blocking L-Ca2+-channels. Thus, no evidence was found that store-operated channels play a role in pacing. In LM segments of W/W(V), SKF 96365 had no effects on frequency of contractions. We conclude, results from models of severely reduced systems may not be applicable to intact ICC networks.
我们研究了W/W++和W/W(V)小鼠肠道纵行肌(LM)和环行肌(CM)中的起搏和神经传递。LM段神经的电场刺激(EFS)在W/W(V)小鼠中比在W/W++小鼠中更具抑制性。未发现W/W(V)小鼠CM段有抑制性输入。神经阻断后,EFS用10 ms脉冲使W/W++和突变小鼠的肠段同步,并用1和3 ms脉冲更易使突变小鼠的肠段同步。用外部电极起搏不依赖于肌间神经丛中的Cajal间质细胞(ICC-MP)。2-氨基乙氧基二苯基硼酸盐(2-APB)是IP3受体、储存-操作性通道和肌浆网Ca2+ ATP酶泵的假定拮抗剂,它降低了W/W(V)小鼠LM段起搏的频率和幅度,就像在BALB/c小鼠中一样。因此,其作用可能不需要ICC-MP。SKF 96365是一种假定的储存-操作性通道抑制剂,在10或30 μmol L-1时降低了W/W++小鼠肠段的频率和幅度。这是由于阻断了L型Ca2+通道。因此,未发现有证据表明储存-操作性通道在起搏中起作用。在W/W(V)的LM段中,SKF 96365对收缩频率没有影响。我们得出结论,严重简化系统模型的结果可能不适用于完整的ICC网络。