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Expression and Distribution of Facilitative Glucose (GLUTs) and Monocarboxylate/H~+ (MCTs) Transporters in Rat Olfactory Epithelia

机译:大鼠嗅上皮细胞中葡萄糖和单羧酸/ H〜+(MCTs)转运蛋白的表达和分布

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摘要

Cell-to-cell metabolic interactions are crucial for the functioning of the nervous system and depend on the differential expression of glucose transporters (GLUTs) and monocarboxylate transporters (MCTs). The olfactory receptor neurons (ORNs) and supporting cells (SCs) of the olfactory epithelium exhibit a marked polarization and a tight morphological interrelationship, suggesting an active metabolic interaction. We examined the expression and localization of MCTs and GLUTs in the olfactory mucosa and found a stereotyped pattern of expression. ORNs exhibited GLUT1 labeling in soma, dendrites, and axon. SCs displayed GLUT1 labeling throughout their cell length, whereas MCT1 and GLUT3 localize to their apical portion, possibly including the microvilli. Additionally, GLUT1 and MCT1 were detected in endothelial cells and GLUT1, GLUT3, and MCT2 in the cells of the Bowman's gland. Our observations suggest an energetic coupling between SCs and Bowman's gland cells, where glucose crossing the blood-mucosa barrier through GLUT1 is incorporated by these epithelial cells. Once in the SCs, glucose can be metabolized to lactate, which could be transported by MCTs into the Bowman's gland duct, where it can be used as metabolic fuel. Furthermore, SCs may export glucose and lactate to the mucous layer, where they may serve as possible energy supply to the cilia.
机译:细胞间的代谢相互作用对于神经系统的功能至关重要,并取决于葡萄糖转运蛋白(GLUT)和单羧酸盐转运蛋白(MCT)的差异表达。嗅觉上皮细胞的嗅觉受体神经元(ORNs)和支持细胞(SCs)表现出明显的极化和紧密的形态相互关系,表明存在活跃的代谢相互作用。我们检查了MCTs和GLUTs在嗅粘膜中的表达和定位,并发现了刻板的表达模式。 ORN在体,树突和轴突中均显示GLUT1标记。 SC在其整个细胞长度上均显示GLUT1标记,而MCT1和GLUT3定位于其顶端部分,可能包括微绒毛。此外,在内皮细胞中检测到GLUT1和MCT1,在鲍曼氏腺细胞中检测到GLUT1,GLUT3和MCT2。我们的观察结果表明,SC和Bowman腺细胞之间存在能量耦合,其中葡萄糖通过GLUT1穿过血粘膜屏障被这些上皮细胞掺入。一旦进入SC,葡萄糖就可以代谢为乳酸,而MCT则可以将其运输到鲍曼氏腺管中,在那里它可以用作代谢燃料。此外,SC可将葡萄糖和乳酸输出到粘液层,在粘液层它们可作为纤毛的能量供应。

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