首页> 外文期刊>Journal of Equine Veterinary Science >Characterization of D-Glucose Transport across Equine Jejunal Brush Border Membrane Using the Pig as an Efficient Model of Jejunal Glucose Uptake
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Characterization of D-Glucose Transport across Equine Jejunal Brush Border Membrane Using the Pig as an Efficient Model of Jejunal Glucose Uptake

机译:使用猪作为空肠葡萄糖吸收的有效模型,表征跨马空肠刷状边界膜的D-葡萄糖转运。

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To test the hypotheses that glucose transport capacity across the brush border membrane (BBM) of the large colon is lower than that of the small intestine in equids, and that small intestinal transport capacity in equids is lower than suids. D-glucose transport capacity (V-max) and affinity (K-M) across the BBM of the distal jejunum (DJ) and proximal large colon (PLC) of the pony and pig were measured. Mucosa was collected from the DJ and PLC of ponies (n = 4) and pigs (n = 3), flash-frozen in liquid nitrogen, and stored at -80 degrees C. Jejunal and colonic BBM vesicles were manufactured, and D-glucose transport was determined. There was no detectable active uptake of glucose in the equine PLC. Compared with the pig DJ, D-glucose transport capacity was lower (2595 +/- 331 vs. 655 +/- 286 rho mol.mg protein(-1).s(-1), respectively, P < .01) and transport affinity tended to be lower (0.09 +/- 0.07 vs. 0.27 +/- 0.06 mM, respectively, P = .11) in the pony DJ. Compared with the pig DJ, p-glucose transport capacity (2,595 +/- 331 vs. 571 +/- 331 rho mol.mg protein(-1).s(-1), respectively, P < .001) and transport affinity (0.09 +/- 0.07 vs. 0.54 +/- 0.07 mM, respectively, P < .001) in the pig PLC were lower. Results show there is negligible D-glucose uptake across pony PLC, and capacity for c-glucose absorption across DJ BBM is fourfold lower in the pony compared with the pig. Results further exemplify, at a physiological level, the limited capacity of the equid small intestine to transport glucose relative to an omnivorous mammal, and the likely evolutionary adaptation of equids to low dietary levels of nonstructural carbohydrates
机译:为了检验以下假设,即大马的整个结肠刷状缘膜(BBM)的葡萄糖运输能力低于小肠的小肠,而马的小肠运输能力的葡萄糖则低于小肠。测量了小马和猪的空肠远端(DJ)和近端大结肠(PLC)的BBM的D-葡萄糖转运能力(V-max)和亲和力(K-M)。从小马(n = 4)和猪(n = 3)的DJ和PLC中收集粘膜,在液氮中速冻,并保存在-80摄氏度。制造了空肠和结肠BBM囊泡,并生产了D-葡萄糖运输已确定。在马PLC中没有可检测到的主动摄取葡萄糖。与猪DJ相比,D-葡萄糖的转运能力较低(2595 +/- 331 vs.655 +/- 286 rho mol.mg蛋白(-1).s(-1),P <.01)和在小马DJ中,转运亲和力往往较低(分别为0.09 +/- 0.07和0.27 +/- 0.06 mM,P = .11)。与猪DJ相比,p-葡萄糖的运输能力(2,595 +/- 331 vs.571 +/- 331 rho mol.mg蛋白(-1).s(-1),P <.001)和运输亲和力猪PLC中的(分别为0.09 +/- 0.07与0.54 +/- 0.07 mM,P <.001)较低。结果显示,小马PLC吸收的D-葡萄糖微不足道,而小猪的DJ BBM吸收c-葡萄糖的能力比猪低四倍。在生理学水平上的结果进一步例证了,相对于杂食性哺乳动物,小肠等量肠运输葡萄糖的能力有限,并且等价物对低膳食非结构化碳水化合物的进化适应性更强。

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