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本文引用的文献

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In vivo high spatiotemporal resolution visualization of circulating T lymphocytes in high endothelial venules of lymph nodes.在体高时空分辨率可视化淋巴结高内皮小静脉中循环 T 淋巴细胞。
J Biomed Opt. 2013 Mar;18(3):036005. doi: 10.1117/1.JBO.18.3.036005.
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Dual-channel in-situ optical imaging system for quantifying lipid uptake and lymphatic pump function.双通道原位光学成像系统用于定量测量脂质摄取和淋巴管泵功能。
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Regulation of gastrointestinal motility--insights from smooth muscle biology.胃肠道动力调节——平滑肌生物学的启示。
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The enteric nervous system and neurogastroenterology.肠神经系统与神经胃肠病学。
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Utilizing inherent fluorescence of therapeutics to analyze real-time uptake and multi-parametric effector kinetics.利用治疗药物的固有荧光来分析实时摄取和多参数效应动力学。
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The lymphatic vasculature in disease.疾病中的淋巴血管系统。
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Determinants of valve gating in collecting lymphatic vessels from rat mesentery.大鼠肠系膜淋巴管瓣膜启闭的影响因素。
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9
Visualization of lymphatic vessels by Prox1-promoter directed GFP reporter in a bacterial artificial chromosome-based transgenic mouse.利用基于细菌人工染色体的转基因小鼠中 Prox1 启动子驱动的 GFP 报告基因可视化淋巴管。
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10
Mechanisms of chylomicron uptake into lacteals.乳糜微粒摄取入乳糜管的机制。
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肠道乳糜管的活体成像揭示了通过收缩性进行的脂质引流。

Intravital imaging of intestinal lacteals unveils lipid drainage through contractility.

作者信息

Choe Kibaek, Jang Jeon Yeob, Park Intae, Kim Yeseul, Ahn Soyeon, Park Dae-Young, Hong Young-Kwon, Alitalo Kari, Koh Gou Young, Kim Pilhan

出版信息

J Clin Invest. 2015 Nov 2;125(11):4042-52. doi: 10.1172/JCI76509. Epub 2015 Oct 5.

DOI:10.1172/JCI76509
PMID:26436648
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4639990/
Abstract

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.

摘要

乳糜管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重要的运输途径。然而,目前尚不清楚被吸收的分子是如何通过乳糜管运输的。在此,我们使用了在淋巴管特异性启动子Prox1控制下表达绿色荧光蛋白(GFP)的报告基因小鼠以及定制的共聚焦显微镜,对体内肠绒毛中荧光标记的脂肪酸(FAs)和各种外源分子的吸收和运输动态进行了活体实时可视化观察。这些分析清楚地揭示了这些分子通过肠上皮细胞的跨上皮吸收、在固有层的扩散分布以及随后通过乳糜管的运输。此外,我们观察到乳糜管的主动收缩,这似乎直接参与了膳食脂质的引流。我们的分析表明,围绕每个乳糜管的平滑肌负责收缩动态,并且乳糜管的收缩最终受自主神经系统控制。这些结果表明,乳糜管是一个独特的器官特异性淋巴系统,不仅是一个被动管道,而且是一个运输脂质的主动泵。总的来说,通过这种高效的成像方法,我们揭示了小肠绒毛乳糜管中被吸收分子的引流以及乳糜管收缩性的作用。