Powell A K, O'brien S D, Fida R, Bywater R A R
Department of Physiology, Monash University, Victoria, Australia.
Neurogastroenterol Motil. 2002 Oct;14(5):495-504. doi: 10.1046/j.1365-2982.2002.00350.x.
The mechanisms that underlie the propagation of contractions along the colon are uncertain. We have examined whether spontaneous colonic migrating motor complexes (CMMCs) migrate through a region of muscle paralysis, or through a region where neural transmission was disrupted in the isolated mouse colon. Mouse colon was mounted in a separately perfused three-compartment organ bath and recordings of circular muscle tension were made. Drug application was restricted to the middle compartment. Application of nifedipine (1 micromol L(-1)), an l-type calcium channel antagonist, reduced the contraction amplitude by approximately 94%, without affecting the form of contractions in the proximal and distal compartments. Moreover, CMMCs appeared to remain temporally related in all compartments. In contrast, interruption of neural transmission in the middle compartment by either tetrodotoxin (1.6 micromol L(-1)), hexamethonium (500 micromol L(-1)) or a low-calcium, high-magnesium solution abolished CMMCs in this compartment; contractions recorded in the proximal and distal compartments became slower in frequency and were no longer synchronized. The experiments suggest that there may be more than one 'pacemaker' generating spontaneous CMMCs and that CMMCs can migrate through a region where there is minimal tension generation, but not through a region where neural integrity has been compromised.
沿结肠传播收缩的潜在机制尚不清楚。我们研究了自发性结肠移行性运动复合波(CMMCs)是否通过肌肉麻痹区域或通过分离的小鼠结肠中神经传递被破坏的区域迁移。将小鼠结肠安装在单独灌注的三室器官浴中,并记录环形肌张力。药物应用仅限于中间隔室。应用硝苯地平(1 μmol L⁻¹),一种L型钙通道拮抗剂,可使收缩幅度降低约94%,而不影响近端和远端隔室的收缩形式。此外,CMMCs在所有隔室中似乎在时间上保持相关。相反,用河豚毒素(1.6 μmol L⁻¹)、六甲铵(500 μmol L⁻¹)或低钙、高镁溶液中断中间隔室的神经传递,可消除该隔室中的CMMCs;在近端和远端隔室中记录的收缩频率变慢且不再同步。这些实验表明,可能有不止一个“起搏器”产生自发性CMMCs,并且CMMCs可以通过产生最小张力的区域迁移,但不能通过神经完整性受损的区域迁移。