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Supporting effects of myoepithelial cells in submandibular glands of dogs when acting against increased intraluminal pressure

机译:当抵抗腔内压力增加时犬下颌下腺肌上皮细胞的支持作用

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摘要

1. In dogs under chloralose-urethane anaesthesia secretion from the submandibular gland was recorded with the outflow at gland level and at heights of up to 50 cm above the gland.2. With the outflow level increased, secretion elicited by sympathetic nerve stimulation was far better maintained before than after injection of the α-adrenoceptor blocking agent dihydroergotamine.3. When the outflow level was raised while no secretion occurred, fluid flowed into the gland. Part of this amount was returned on lowering the outflow to gland level. This volume was assumed to have been accommodated in the distended luminal system, whereas some fluid was obviously lost into the gland tissues.4. Both these fractions of the fluid flowing into the gland when the outflow level was high could be reduced by injecting the α-receptor agonist phenylephrine. Bradykinin, which like phenylephrine is known to contract salivary myoepithelial cells, had the same effect on the two inflow volumes.5. It is concluded that myoepithelial contraction reduced the distensibility of the luminal system and in addition supported the acini, thereby diminishing backflow into the glandular tissues and enabling the gland to discharge saliva against a high pressure.6. Morphologically it was found that in resting glands PAS-positive saliva was displaced from the ductal system when the outflow cannula was raised, but it was preserved in the lumina under similar conditions when the myoepithelial cells were being stimulated by phenylephrine or bradykinin.7. Although sympathetic secretion could be maintained against a head of pressure, so long as it was accompanied by myoepithelial contraction, the increased force caused by the secretion led to disruptive damage of striated ducts which are the first part of the luminal system not supported by myoepithelial cells.8. The morphological findings reinforce the belief that contraction of myoepithelial cells gives active support to the underlying parenchyma.
机译:1.记录狗在氯醛-氨基甲酸乙酯麻醉下从下颌下腺分泌的情况,其流出量在腺体水平,且高度超过腺体50 cm。2。随着流出量的增加,交感神经刺激引起的分泌物比注射α-肾上腺素受体阻滞剂二氢麦角胺后要好得多。3。当流出水平升高而没有分泌物发生时,液体流入腺体。在将流出量降低至腺体水平时,返还了部分金额。假定该体积已容纳在扩张的腔系统中,而一些液体显然损失到了腺体组织中。4。可以通过注入α受体激动剂去氧肾上腺素来减少高流出水平时流入腺体的这两种流体。缓激肽与苯肾上腺素一样,已知会收缩唾液肌上皮细胞,对两种流入量的影响相同。5。结论是,肌上皮收缩降低了腔系统的扩张性,并支持了腺泡,从而减少了流入腺体组织的回流,并使腺体能够在高压下排出唾液。6。从形态学上发现,当升高流出插管时,PAS阳性唾液在导管系统中移位,但当苯肾上腺素或缓激肽刺激肌上皮细胞时,PAS阳性唾液在类似条件下被保存在腔内。7。尽管交感神经的分泌可以抵抗压力的上升,但只要伴有肌上皮收缩,由分泌引起的增加的力就会导致横纹管的破坏性损伤,这是不由肌上皮细胞支持的腔系统的第一部分.8。形态学发现强化了这样的信念,即肌上皮细胞的收缩为潜在的实质提供了积极的支持。

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