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大鼠下颌下腺分离的腺泡细胞和导管细胞对D-葡萄糖的摄取与代谢

Uptake and metabolism of D-glucose in isolated acinar and ductal cells from rat submandibular glands.

作者信息

Cetik Sibel, Rzajeva Aigun, Hupkens Emeline, Malaisse Willy J, Sener Abdullah

机构信息

Laboratory of Experimental Hormonology, Université Libre de Bruxelles, Brussels, Belgium.

出版信息

Cell Biochem Funct. 2014 Jul;32(5):470-5. doi: 10.1002/cbf.3039. Epub 2014 Jun 2.

Abstract

The present study deals with the possible effects of selected environmental agents upon the uptake and metabolism of d-glucose in isolated acinar and ductal cells from the rat submandibular salivary gland. In acinar cells, the uptake of d-[U-(14) C]glucose and its non-metabolised analogue 3-O-[(14) C-methyl]-d-glucose was not affected significantly by phloridzin (0.1 mM) or substitution of extracellular NaCl (115 mM) by an equimolar amount of CsCl, whilst cytochalasin B (20 μM) decreased significantly such an uptake. In ductal cells, both phloridzin and cytochalasin B decreased the uptake of d-glucose and 3-O-methyl-d-glucose. Although the intracellular space was comparable in acinar and ductal cells, the catabolism of d-glucose (2.8 or 8.3 mM) was two to four times higher in ductal cells than in acinar cells. Phloridzin (0.1 mM), ouabain (1.0 mM) and cytochalasin B (20 μM) all impaired d-glucose catabolism in ductal cells. Such was also the case in ductal cells incubated in the absence of extracellular Ca(2+) or in media in which NaCl was substituted by CsCl. It is proposed that the ductal cells in the rat submandibular gland are equipped with several systems mediating the insulin-sensitive, cytochalasin B-sensitive and phloridzin-sensitive transport of d-glucose across the plasma membrane.

摘要

本研究探讨了特定环境因素对大鼠下颌下唾液腺分离的腺泡细胞和导管细胞摄取及代谢d-葡萄糖的可能影响。在腺泡细胞中,根皮苷(0.1 mM)或用等摩尔量的CsCl替代细胞外NaCl(115 mM)对d-[U-(14)C]葡萄糖及其非代谢类似物3-O-[(14)C-甲基]-d-葡萄糖的摄取没有显著影响,而细胞松弛素B(20 μM)则显著降低了这种摄取。在导管细胞中,根皮苷和细胞松弛素B均降低了d-葡萄糖和3-O-甲基-d-葡萄糖的摄取。尽管腺泡细胞和导管细胞的细胞内空间相当,但导管细胞中d-葡萄糖(2.8或8.3 mM)的分解代谢比腺泡细胞高两到四倍。根皮苷(0.1 mM)、哇巴因(1.0 mM)和细胞松弛素B(20 μM)均损害了导管细胞中d-葡萄糖的分解代谢。在无细胞外Ca(2+)的培养基中或用CsCl替代NaCl的培养基中培养的导管细胞中也是如此。有人提出,大鼠下颌下腺的导管细胞配备有几种系统,介导d-葡萄糖跨质膜的胰岛素敏感、细胞松弛素B敏感和根皮苷敏感的转运。

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