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首页> 外文期刊>The journal of clinical investigation >Intravital imaging of intestinal lacteals unveils lipid drainage through contractility
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Intravital imaging of intestinal lacteals unveils lipid drainage through contractility

机译:肠道乳胶体腔成像揭示了通过收缩力引流脂质

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Lacteals are lymphatic vessels located at the center of each intestinal villus and provide essential transport routes for lipids and other lipophilic molecules. However, it is unclear how absorbed molecules are transported through the lacteal. Here, we used reporter mice that express GFP under the control of the lymphatic-specific promoter Prox1 and a custom-built confocal microscope and performed intravital real-time visualization of the absorption and transport dynamics of fluorescence-tagged fatty acids (FAs) and various exogenous molecules in the intestinal villi in vivo. These analyses clearly revealed transepithelial absorption of these molecules via enterocytes, diffusive distribution over the lamina propria, and subsequent transport through lacteals. Moreover, we observed active contraction of lacteals, which seemed to be directly involved in dietary lipid drainage. Our analysis revealed that the smooth muscles that surround each lacteal are responsible for contractile dynamics and that lacteal contraction is ultimately controlled by the autonomic nervous system. These results indicate that the lacteal is a unique organ-specific lymphatic system and does not merely serve as a passive conduit but as an active pump that transports lipids. Collectively, using this efficient imaging method, we uncovered drainage of absorbed molecules in small intestinal villus lacteals and the involvement of lacteal contractibility.
机译:乳脂是位于每个肠绒毛中心的淋巴管,为脂质和其他亲脂性分子提供必要的运输途径。然而,尚不清楚吸收的分子如何通过乳状体转运。在这里,我们使用了在小鼠淋巴特异性启动子Prox1和定制共聚焦显微镜的控制下表达GFP的报告基因小鼠,并对荧光标记脂肪酸(FAs)和各种荧光蛋白的吸收和转运动力学进行了活体内实时观察。肠绒毛中的外源分子在体内。这些分析清楚地表明了这些分子通过肠上皮细胞经上皮吸收,在固有层上的扩散分布以及随后通过乳腺的转运。此外,我们观察到了乳腺的主动收缩,这似乎直接与饮食中的脂质排泄有关。我们的分析表明,围绕每个乳腺的平滑肌负责收缩动力学,而乳腺收缩最终由植物神经系统控制。这些结果表明,乳腺是独特的器官特异性淋巴系统,不仅充当被动导管,还充当运输脂质的主动泵。集体地,使用这种有效的成像方法,我们发现了小肠绒毛乳头中吸收分子的引流和乳头收缩性的参与。

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