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唾液腺肌上皮细胞的神经控制。

Neural control of salivary myoepithelial cells.

作者信息

Emmelin N, Garrett J R, Ohlin P

出版信息

J Physiol. 1968 May;196(2):381-96. doi: 10.1113/jphysiol.1968.sp008513.

Abstract
  1. The pressures in the ducts of the submaxillary, parotid and sublingual glands were recorded in cats under chloralose anaesthesia. A single stimulus applied to the parasympathetic glandular nerve caused a pressure rise, the size of which increased with the initial pressure. This response was abolished by a small dose of atropine.2. The effect was not due to salivary secretion, since the single stimulus caused salivation only exceptionally. Repetitive stimulation at frequencies too low to evoke secretion could produce summated pressure responses.3. The single stimulus applied to the chorda tympani was found to cause vasodilatation in the submaxillary gland. This was abolished by a small dose of atropine, together with the pressure rise in the duct. However, repetitive stimulation still caused marked vasodilatation but no pressure response. It was therefore inferred that the pressure rise obtained before atropine was not due to vasodilatation in the gland.4. It is concluded that the myoepithelial cells of the salivary glands are supplied with a parasympathetic motor innervation which can cause them to contract.5. Sympathetic stimulation caused no pressure rise when a single stimulus was given but only when repetitive stimulation was used at a frequency approaching that required for secretion.
摘要
  1. 在氯醛糖麻醉下的猫身上记录了下颌下腺、腮腺和舌下腺导管内的压力。对副交感神经腺神经施加单次刺激会导致压力升高,其大小随初始压力增加。小剂量阿托品可消除这种反应。

  2. 这种效应并非由于唾液分泌,因为单次刺激仅偶尔引起唾液分泌。以过低频率进行重复刺激以诱发分泌时,可产生累加的压力反应。

  3. 发现对鼓索施加单次刺激会导致下颌下腺血管舒张。小剂量阿托品与导管内压力升高一起可消除这种血管舒张。然而,重复刺激仍会引起明显的血管舒张,但无压力反应。因此推断,阿托品处理前获得的压力升高并非由于腺体血管舒张。

  4. 得出结论,唾液腺的肌上皮细胞接受副交感运动神经支配,该神经支配可使其收缩。

  5. 给予单次刺激时,交感神经刺激不会导致压力升高,但仅在以接近分泌所需频率进行重复刺激时才会导致压力升高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9397/1351718/cc61e535f759/jphysiol01101-0142-a.jpg

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