Cetik Sibel, Rzajeva Aigun, Malaisse Willy J, Sener Abdullah
Laboratory of Experimental Hormonology, Brussels Free University, Brussels B-1070, Belgium.
Biomed Rep. 2014 Jul;2(4):513-516. doi: 10.3892/br.2014.269. Epub 2014 Apr 25.
The present study aimed to investigate the effects of cytochalasin B (20 μM) on the uptake of 3-O-[C]-methyl-D-glucose or D-[U-C]glucose (8.3 mM each) by BRIN-BD11 cells. Taking into account the distribution space of tritiated water (HOH), which was unexpectedly increased shortly after exposure of the cells to cytochalasin B and then progressively returned to its control values, and that of L-[1-C]glucose, used as an extracellular marker, it was demonstrated that cytochalasin B caused a modest, but significant inhibition of the uptake of D-glucose and its non-metabolized analog by the BRIN-BD11 cells. These findings resemble those observed in acinar or ductal cells of the rat submaxillary gland and displayed a relative magnitude comparable to that found for the inhibition of D-glucose metabolism by cytochalasin B in purified pancreatic islet B cells. These findings reinforce the view that the primary site of action of cytochalasin B is located at the level of the plasma membrane.
本研究旨在探讨细胞松弛素B(20 μM)对BRIN - BD11细胞摄取3 - O - [C] - 甲基 - D - 葡萄糖或D - [U - C]葡萄糖(各8.3 mM)的影响。考虑到氚水(HOH)的分布空间,细胞暴露于细胞松弛素B后不久其分布空间意外增加,随后逐渐恢复到对照值,以及用作细胞外标志物的L - [1 - C]葡萄糖的分布空间,结果表明细胞松弛素B对BRIN - BD11细胞摄取D - 葡萄糖及其非代谢类似物有适度但显著的抑制作用。这些发现与在大鼠下颌下腺腺泡或导管细胞中观察到的结果相似,并且显示出与细胞松弛素B对纯化的胰岛B细胞中D - 葡萄糖代谢抑制作用相当的相对程度。这些发现强化了细胞松弛素B的主要作用位点位于质膜水平的观点。