Macromolecule Translocation across the Intestinal Mucosa of HIV-Infected Patients by Transcytosis and through

Susanne M Krug1, Carolin Grünhagen2, Kristina Allers2

  • 1Clinical Physiology/Nutritional Medicine, Charité-Universitätsmedizin Berlin, 12203 Berlin, Germany.

Cells
|July 29, 2023
PubMed

Insights

Increased gut macromolecule translocation occurs in untreated HIV infection, impacting intestinal permeability. This occurs via transcytosis and apoptotic leaks, not tight junction changes.

Area of Science:

  • Gastroenterology
  • Virology
  • Immunology

Background:

  • Increased translocation of gut-derived microbial macromolecules is a proposed mechanism in HIV infection.
  • Previous studies relied on indirect evidence to support this pathomechanism.

Purpose of the Study:

  • To quantify macromolecule translocation across intestinal mucosa in HIV-infected patients (treated and untreated) and controls.
  • To identify the specific pathways involved in increased intestinal permeability during HIV infection.

Main Methods:

  • Quantified macromolecule permeability using FITC-Dextran 4000 (FD4) and horseradish peroxidase (HRP) flux.
  • Investigated translocation pathways using cold inhibition, apoptosis quantification, and immunoblotting for tight junction proteins.
  • Utilized T84 cell monolayers to study apoptosis and endocytosis roles in translocation.

Main Results:

  • Untreated HIV-infected patients showed a >4-fold increase in duodenal FD4 and HRP permeability compared to controls.
  • Increased permeability was partially temperature-dependent and linked to epithelial apoptosis, with no change in tight junction proteins.
  • Apoptosis induction in T84 cells increased permeability, while inhibitors of apoptosis and endocytosis reduced it.

Conclusions:

  • Demonstrated significantly increased intestinal macromolecule permeability in untreated HIV infection.
  • Identified transcytosis and passage through apoptotic leaks as the primary pathways for increased translocation.
  • Findings highlight the role of epithelial barrier dysfunction in HIV pathogenesis.

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