Masuda M, Tomita H, Okubo K, Miyasaka K
Department of Clinical Physiology, Tokyo Metropolitan Institute of Gerontology, Japan.
J Auton Nerv Syst. 1994 Dec 15;50(2):131-8. doi: 10.1016/0165-1838(94)90003-5.
The release of pancreatic polypeptide (PP) and peptide YY (PYY) is regulated by the vagal nerve, and the inhibitory effect of these peptides on pancreatic exocrine secretion shows indirectly via a neural mechanism. To determine the role of the vagal nerve on the inhibitory action of these peptides on the pancreas, we compared the effect on the pancreatic response to bile and pancreatic juice diversion in conscious rats with and without vagotomy. We also studied this response in rats treated with capsaicin, because bile-pancreatic juice diversion is the most potent endogenous stimulation of pancreatic secretion in conscious rats. In addition, since somatostatin potently inhibits of pancreatic enzyme secretion, the effects of PP and PYY were compared with somatostatin. An intravenous infusion of 2.5 nmol/kg per h of PP and PYY significantly inhibited the pancreatic responses of bile and pancreatic juice diversion in animals with an intact vagal nerve and in those treated with capsaicin, whereas the same dose of peptides failed to inhibit pancreatic secretion in vagotomized rats. Somatostatin inhibited pancreatic secretion under all conditions tested. We concluded that the inhibitory action of PP and PYY on pancreatic secretion is fully mediated by the vagal efferent nerve although other multiple mechanisms are involved for the inhibitory action of somatostatin.
胰多肽(PP)和肽YY(PYY)的释放受迷走神经调节,这些肽对胰腺外分泌的抑制作用通过神经机制间接表现出来。为了确定迷走神经在这些肽对胰腺的抑制作用中的作用,我们比较了在有意识的大鼠中,切断迷走神经和未切断迷走神经时,胆汁和胰液引流对胰腺反应的影响。我们还研究了用辣椒素处理的大鼠的这种反应,因为胆汁-胰液引流是有意识大鼠胰腺分泌最有效的内源性刺激。此外,由于生长抑素能有效抑制胰腺酶分泌,将PP和PYY的作用与生长抑素进行了比较。以每小时2.5 nmol/kg的速度静脉输注PP和PYY,可显著抑制迷走神经完整的动物和用辣椒素处理的动物中胆汁和胰液引流引起的胰腺反应,而相同剂量的肽在迷走神经切断的大鼠中未能抑制胰腺分泌。在所有测试条件下,生长抑素均能抑制胰腺分泌。我们得出结论,PP和PYY对胰腺分泌的抑制作用完全由迷走神经传出神经介导,尽管生长抑素的抑制作用涉及其他多种机制。