Intestinal Lymph Transport

Intestinal lymph transport is the movement of fluid, lipids, immune cells, and absorbed molecules from the intestinal tissue into the lymphatic system, linking digestion with systemic physiology and immunity. After a meal, specialized lymphatic capillaries called lacteals take up dietary lipids packaged as chylomicrons, while lymphatic vessels propel their contents through coordinated contractions and surrounding tissue pressure toward larger lymphatic ducts. This pathway also carries antigen-presenting cells and lymphocytes from the gut to immune organs, where they support surveillance and responses to intestinal microbes. Studying intestinal lymph transport helps clarify nutrient absorption, inflammatory disease, infection, and strategies for delivering drugs or vaccines through the gut.

Intestinal Lymph Transport - Related Videos

Research

JoVE Journal - Immunology and Infection

The Mesenteric Lymph Duct Cannulated Rat Model: Application to the Assessment of Intestinal Lymphatic Drug Transport

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Cited by 48 •

2015

Here we describe a technique to cannulate the mesenteric lymph duct in rats which enables quantification of lipid and drug transport via the lymphatic system following intestinal delivery. The technique can be adapted to assess mesenteric lymph concentrations and/or transport of fluid, immune cells, peptides, proteins and lipophilic molecules.

Long-Term Catheterization of the Intestinal Lymph Trunk and Collection of Lymph in Neonatal Pigs

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Cited by 6 •

2016

We present a surgical procedure to catheterize the intestinal lymph trunk in neonatal pigs to collect large quantities of lipid metabolism components from efferent lymph.

Education

JoVE Core - Anatomy and Physiology

Lymphatic Vessels and Lymph Transport

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2024

Lymphatic vessels, known as lymphatics, are crucial in transporting lymph from peripheral tissues to our venous system. This process begins with lymph entering through tiny capillaries that branch through tissues. These capillaries have unique features such as larger diameters, thinner walls, and a distinctive one-way valve system formed by overlapping endothelial cells. This one-way system allows fluids, solutes, and even pathogens to enter but prevents their return to the intercellular spaces.

Using Caco-2 Cells to Study Lipid Transport by the Intestine

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Cited by 11 •

2015

Caco-2 cells can serve as an in vitro model to study the enterocyte transport of lipids, and lipid-soluble drugs/vitamins. The permeable membrane system separates the apical from the basolateral compartment, while the lentivirus expression system offers an effective gene overexpression method. The isolation of lipoproteins is confirmed by TEM.

Mesenteric Lymph Duct Cannulation in a Rat Model to Harvest Lymph Fluid

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2025

This video demonstrates a technique to cannulate the mesenteric lymph duct in rats. This method enables direct access to the entire volume of components present in the lymph fluid.

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