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DLL4 promotes continuous adult intestinal lacteal regeneration and dietary fat transport

淋巴系统 生物 淋巴管新生 免疫系统 细胞生物学 淋巴管 小肠 内分泌学 免疫学 遗传学 癌症 转移
作者
Jeremiah Bernier‐Latmani,Christophe Cisarovsky,Cansaran Saygili Demir,Marine Bruand,Muriel Jaquet,Suzel Davanture,Simone Ragusa,Stefanie Siegert,Olivier Dormond,Rui Benedito,Freddy Radtke,Sanjiv A. Luther,Tatiana V. Petrova
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
卷期号:125 (12): 4572-4586 被引量:184
标识
DOI:10.1172/jci82045
摘要

The small intestine is a dynamic and complex organ that is characterized by constant epithelium turnover and crosstalk among various cell types and the microbiota. Lymphatic capillaries of the small intestine, called lacteals, play key roles in dietary fat absorption and the gut immune response; however, little is known about the molecular regulation of lacteal function. Here, we performed a high-resolution analysis of the small intestinal stroma and determined that lacteals reside in a permanent regenerative, proliferative state that is distinct from embryonic lymphangiogenesis or quiescent lymphatic vessels observed in other tissues. We further demonstrated that this continuous regeneration process is mediated by Notch signaling and that the expression of the Notch ligand delta-like 4 (DLL4) in lacteals requires activation of VEGFR3 and VEGFR2. Moreover, genetic inactivation of Dll4 in lymphatic endothelial cells led to lacteal regression and impaired dietary fat uptake. We propose that such a slow lymphatic regeneration mode is necessary to match a unique need of intestinal lymphatic vessels for both continuous maintenance, due to the constant exposure to dietary fat and mechanical strain, and efficient uptake of fat and immune cells. Our work reveals how lymphatic vessel responses are shaped by tissue specialization and uncover a role for continuous DLL4 signaling in the function of adult lymphatic vasculature.
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