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交感神经刺激对兔下颌下唾液腺影响的结构与功能研究。

Structural and functional studies of the effects of sympathetic nerve stimulation on rabbit submandibular salivary glands.

作者信息

Kyriacou K, Garrett J R, Gjörstrup P

机构信息

Department of Oral Pathology, King's College School of Medicine and Dentistry, Rayne Institute, London, England, U.K.

出版信息

Arch Oral Biol. 1988;33(4):271-80. doi: 10.1016/0003-9969(88)90189-6.

Abstract

Continuous sympathetic stimulation at 8-10 Hz caused intense vasoconstriction in the gland, so stimulation was generally given in an interrupted pattern to minimize this detrimental effect on secretion. Only a small increase in fluid secretion occurred; it became thick and tended to block the cannula; therefore in later experiments the main duct was not cannulated. After sympathetic stimulation there was substantial degranulation of acinar cells. However, as this was accompanied by little movement of water, the secreted mucosubstance distended the ductal lumina. The granular tubule cells were unchanged by sympathetic stimulation. Use of selective blocking agents revealed that the sympathetically-evoked secretion of acinar mucin was mediated mainly via beta-adrenoreceptor activation. As stimulation of the sympathetic nerves alone caused little additional formation of fluid, the effects of superimposing continuous low frequency sympathetic stimulation onto a background of low parasympathetic secretion were compared with similar parasympathetic stimulation alone of the contralateral gland. These double nerve stimulations did not augment the volume of fluid secreted, or cause morphological changes additional to those from parasympathetic stimulation alone. Nevertheless, it is likely that, under natural reflex conditions, sympathetic impulses can increase the amount of acinar mucosubstance secreted.

摘要

以8 - 10赫兹的频率持续进行交感神经刺激会导致腺体强烈血管收缩,因此刺激通常以间断模式进行,以尽量减少对分泌的这种有害影响。液体分泌仅出现少量增加;分泌物变稠并倾向于堵塞插管;因此在后续实验中未对主导管进行插管。交感神经刺激后,腺泡细胞出现大量脱颗粒现象。然而,由于这几乎没有伴随着水的移动,分泌的黏液物质使导管腔扩张。颗粒小管细胞未因交感神经刺激而发生变化。使用选择性阻断剂显示,交感神经诱发的腺泡黏液分泌主要通过β - 肾上腺素能受体激活介导。由于仅刺激交感神经几乎不会导致额外的液体形成,因此将持续低频交感神经刺激叠加在低副交感神经分泌背景上的效果与仅对侧腺体进行类似副交感神经刺激的效果进行了比较。这些双神经刺激并没有增加分泌的液体量,也没有引起除单独副交感神经刺激之外的形态学变化。然而,在自然反射条件下,交感神经冲动很可能会增加腺泡黏液物质的分泌量。

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