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小鼠舌下唾液腺黏液细胞中的释放机制。

Release mechanism in mucous cells of the mouse sublingual salivary gland.

作者信息

Poldermans J E, Bos-Vreugdenhil A P, De Lange G L

出版信息

J Biol Buccale. 1986 Sep;14(3):207-14.

PMID:3464591
Abstract

The release mechanism of mucous secretory product was studied in mouse sublingual glands after cholinergic stimulation both in vivo and in vitro. Secretory glycoproteins of the mucous sublingual gland cells are packaged into small secretory granules, which fuse intracellularly with each other to form larger ones. This intracellular fusion starts with close apposition of both granule membranes, followed by the formation of a five-layered membranous structure. The next step involves the intermixing of the central electron dense layer of this structure into two other electron dense layers, forming a three-layered structure. Finally this three-layered structure becomes thinner and disrupts. Release of secretory material occurs through gaps in the apical surface. After fusion of the granule membrane with the luminal plasma membrane the protruding mass of secretory material bulges into the acinar lumen, limited by a trilaminar membrane. Ultimately several ruptures arise in the bulging membrane and membrane fragments are released together with secretory products. The phospholipid composition of the released membrane fragments differs from that of the granular membranes of parotid and submandibular glands. Thus, compared to serous cells the mucous sublingual gland cells exhibit remarkable differences in the release mechanism which are obviously due to differences in physiological and chemical characteristics of the mucous secretory granule membrane.

摘要

在体内和体外胆碱能刺激后,对小鼠舌下腺黏液分泌产物的释放机制进行了研究。黏液性舌下腺细胞的分泌糖蛋白被包装成小分泌颗粒,这些颗粒在细胞内相互融合形成更大的颗粒。这种细胞内融合始于两个颗粒膜的紧密并置,随后形成五层膜结构。下一步涉及将该结构的中央电子致密层与另外两个电子致密层混合,形成三层结构。最后,这种三层结构变薄并破裂。分泌物质通过顶端表面的间隙释放。颗粒膜与管腔质膜融合后,分泌物质的突出团块突入腺泡腔,由三层膜限制。最终,突出的膜出现多处破裂,膜碎片与分泌产物一起释放。释放的膜碎片的磷脂组成与腮腺和颌下腺颗粒膜的磷脂组成不同。因此,与浆液性腺细胞相比,黏液性舌下腺细胞在释放机制上表现出显著差异,这显然是由于黏液分泌颗粒膜的生理和化学特性不同所致。

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