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副交感神经刺激期间循环儿茶酚胺对大鼠腮腺唾液中蛋白质分泌的影响。

Influence of circulating catecholamines on protein secretion into rat parotid saliva during parasympathetic stimulation.

作者信息

Anderson L C, Garrett J R, Johnson D A, Kauffman D L, Keller P J, Thulin A

出版信息

J Physiol. 1984 Jul;352:163-71. doi: 10.1113/jphysiol.1984.sp015284.

Abstract

Secretion of proteins by rat parotid glands in response to parasympathetic nerve stimulation was studied in vivo during pentobarbitone anaesthesia. Parasympathetic stimulation (3-10 Hz) via the auriculotemporal nerve resulted in a copious flow of saliva low in protein. In contrast, sympathetic stimulation (5 Hz) via the cervical sympathetic trunk evoked saliva low in volume but high in protein. Nevertheless, the specific concentrations of amylase and peroxidase (mg/mg protein) and the ratio of amylase to peroxidase remained constant. Sodium dodecyl sulphate (SDS) polyacrylamide gel electrophoresis revealed a single, rapidly migrating protein band of unknown identity in proportionately greater amounts in parasympathetic saliva than in sympathetic saliva. Bilateral adrenalectomy led to reduced amylase and peroxidase secretion in response to parasympathetic stimulation both on a mg/ml and a mg/mg protein basis. SDS gel electrophoresis also demonstrated the decrease in specific amylase concentration following adrenalectomy. The ratio of amylase to peroxidase, however, was not significantly affected. Administration of 6-hydroxydopamine 17-72 h prior to adrenalectomy caused no further reduction in the secretion of amylase and peroxidase. Chronic sympathectomy of 2.5-4 months duration resulted in an increased protein secretion (mg/ml) by the parotid gland in response to parasympathetic stimulation. This increase was only slightly reduced by bilateral adrenalectomy. However, as observed in non-sympathectomized rats, adrenalectomy caused a significant reduction in the specific concentrations of both amylase and peroxidase, but did not affect the amylase to peroxidase ratios. We conclude that parasympathetic nerve stimulation of rat parotid glands after overnight starvation causes secretion of proteins in proportions similar to, but in significantly lower concentrations than those found in sympathetic saliva. Circulating catecholamines, however, influence the amount of amylase and peroxidase secreted by the rat parotid gland in response to parasympathetic nerve stimulation and account for most of the increased secretion of these enzymes following chronic sympathectomy.

摘要

在戊巴比妥麻醉下,于体内研究了大鼠腮腺在副交感神经刺激下的蛋白质分泌情况。通过耳颞神经进行副交感神经刺激(3 - 10赫兹)会导致大量蛋白质含量低的唾液分泌。相比之下,通过颈交感干进行交感神经刺激(5赫兹)会引起唾液分泌量少但蛋白质含量高。然而,淀粉酶和过氧化物酶的比浓度(毫克/毫克蛋白质)以及淀粉酶与过氧化物酶的比率保持恒定。十二烷基硫酸钠(SDS)聚丙烯酰胺凝胶电泳显示,在副交感神经刺激的唾液中,有一条单一的、迁移速度快且身份不明的蛋白带,其含量在副交感神经刺激的唾液中比在交感神经刺激的唾液中相对更多。双侧肾上腺切除导致在以毫克/毫升和毫克/毫克蛋白质为基础的情况下,副交感神经刺激引起的淀粉酶和过氧化物酶分泌减少。SDS凝胶电泳也显示了肾上腺切除后淀粉酶比浓度的降低。然而,淀粉酶与过氧化物酶的比率未受到显著影响。在肾上腺切除前17 - 72小时给予6 - 羟基多巴胺并未导致淀粉酶和过氧化物酶分泌的进一步减少。持续2.5 - 4个月的慢性交感神经切除导致腮腺在副交感神经刺激下蛋白质分泌(毫克/毫升)增加。双侧肾上腺切除仅使这种增加略有减少。然而,正如在未进行交感神经切除的大鼠中所观察到的,肾上腺切除导致淀粉酶和过氧化物酶的比浓度显著降低,但不影响淀粉酶与过氧化物酶的比率。我们得出结论,过夜禁食后大鼠腮腺的副交感神经刺激会导致蛋白质分泌,其比例与交感神经刺激的唾液相似,但浓度明显低于交感神经刺激的唾液。然而,循环儿茶酚胺会影响大鼠腮腺在副交感神经刺激下分泌的淀粉酶和过氧化物酶的量,并解释了慢性交感神经切除后这些酶分泌增加的大部分原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2991/1193204/63ea2819084d/jphysiol00593-0182-a.jpg

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