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首页> 外文期刊>The Journal of Experimental Biology >Paracellular nutrient absorption is higher in bats than rodents: integrating from intact animals to the molecular level
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Paracellular nutrient absorption is higher in bats than rodents: integrating from intact animals to the molecular level

机译:蝙蝠的细胞内营养吸收高于啮齿动物:从完整的动物整合到分子水平

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Flying vertebrates have been hypothesized to rely heavily on paracellular absorption of nutrients to compensate for having smaller intestines than non-flyers. We tested this hypothesis in an insectivorous bat (Myotis lucifugus) and two insect-eating rodents (Onychomys leucogaster and Peromyscus leucopus). In intact animals, the fractional absorption of orally dosed L-arabinose (M-r 150) was 82% in M. lucifugus, which was more than twice that of the rodents. Absorption of creatinine (M-r 113) was greater than 50% for all species and did not differ between M. lucifugus and the rodents. We also conducted intestinal luminal perfusions on anesthetized animals. Absorption of L-arabinose per nominal surface area in M. lucifugus was nearly double that of the rodents, while absorption of creatinine was not different among species. Using an everted sleeve preparation, we demonstrated that high concentrations of L-arabinose and creatinine did not inhibit their own uptake, validating their use as passive, paracellular probes. Histological measurements indicated that M. lucifugus has more cells, and presumably more tight junctions, per nominal surface area than P. leucopus. This seems unlikely to explain entirely the higher absorption of L-arabinose in M. lucifugus during perfusions, because L-arabinose absorption normalized to the number of enterocytes was still double that of P. leucopus. As an alternative, we investigated tight junction gene expression. M. lucifugus had higher expression of claudin-1 and claudin-15, and lower expression of claudin-2 relative to P. leucopus. Expression of claudin-7 and occludin did not differ among species. Taken together, our results support the hypothesis that bats have evolved higher paracellular nutrient absorption than non-flying animals, and that this phenomenon might be driven by both histological characteristics and differences in tight junction gene expression
机译:假设飞行中的脊椎动物会严重依赖细胞内营养的吸收来补偿比非飞行者小肠。我们在食虫蝙蝠(Myotis lucifugus)和两只食虫啮齿动物(Onychomys leucogaster和Peromyscus leucopus)中测试了该假设。在完整的动物中,口服的L-阿拉伯糖(M-r 150)在小球藻中的吸收率为82%,是啮齿动物的两倍。肌酐(M-r 113)的吸收对所有物种均大于50%,并且在M. lucifugus和啮齿类动物之间没有差异。我们还对麻醉动物进行了肠腔灌注。 lucifugus中每单位表面积的L-阿拉伯糖吸收几乎是啮齿动物的两倍,而肌酸酐的吸收在物种之间没有差异。使用外翻套筒制备,我们证明了高浓度的L-阿拉伯糖和肌酐不会抑制其自身摄取,从而验证了它们作为被动,旁细胞探针的用途。组织学测量表明,与白斑假单胞菌相比,每个标称表面积的灵芝分支杆菌具有更多的细胞,并且可能更紧密的连接。这似乎不可能完全解释灌流过程中念珠菌中L-阿拉伯糖的较高吸收,因为归一化至肠上皮细胞数量的L-阿拉伯糖吸收仍是白假单胞菌的两倍。作为替代方案,我们研究了紧密连接基因的表达。相对于白斑假单胞菌,M。lucifugus具有较高的claudin-1和claudin-15表达,而较低的claudin-2表达。种间claudin-7和occludin的表达没有差异。综上所述,我们的结果支持以下假设:蝙蝠比非飞行动物进化出更高的副细胞营养吸收,并且这种现象可能是由组织学特征和紧密连接基因表达的差异驱动的

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