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首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Nitric oxide and the pancreas: morphological base and role in the control of the exocrine pancreatic secretion.
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Nitric oxide and the pancreas: morphological base and role in the control of the exocrine pancreatic secretion.

机译:一氧化氮和胰腺:形态基础和控制外分泌胰腺分泌中的作用。

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摘要

The distribution of nitric oxide synthase in both neuronal and non-neuronal pancreatic tissues and the role of nitric oxide in the control of exocrine pancreatic secretion are reviewed in this article. Earlier reports based on in vivo studies suggested that nitric oxide can affect the secretory activity of the exocrine pancreas through changes in pancreatic blood flow. More recently, the employment of either nitric oxide synthase inhibitors or nitric oxide donors in in vitro preparations has provided evidence that nitric oxide can exert a direct action on this gland independently on its vascular effects. Most research in this area seems to indicate that modulation of exocrine pancreatic function by nitric oxide is exerted via activation of guanylate cyclase and generation of cGMP, although other pathways cannot be excluded. Experiments performed over the last year in our laboratory reveal a novel and interesting mechanism based on the ability of nitric oxide to control the release of endogenous neurotransmitter in the pancreas and, subsequently, the nerve-mediated enzyme secretion.
机译:本文综述了一氧化氮合酶在神经元和非神经元胰腺组织中的分布以及一氧化氮在控制外分泌胰腺分泌中的作用。根据体内研究的早期报道表明,一氧化氮可通过胰腺血流的变化影响外分泌胰腺的分泌活性。最近,在体外制剂中使用一氧化氮合酶抑制剂或一氧化氮供体已经提供了证据,一氧化氮可以独立于其腺体的血管作用而对该腺体直接起作用。该领域的大多数研究似乎表明,一氧化氮对外分泌胰腺功能的调节是通过鸟苷酸环化酶的激活和cGMP的产生来实现的,尽管不能排除其他途径。去年在我们实验室进行的实验揭示了一种新颖而有趣的机制,该机制基于一氧化氮控制胰腺内源性神经递质释放以及随后神经介导的酶分泌的能力。

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