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Phagosome Migration and Velocity Measured in Live Primary Human Macrophages Infected with HIV-1
Published on: September 5, 2016
Phagosome Migration and Velocity Measured in Live Primary Human Macrophages Infected with HIV-1
Gabrielle Lê-Bury1, Chantal Deschamps1, Audrey Dumas1
1Inserm U1016, Institut Cochin, CNRS UMR 8104, Université Paris Descartes, Sorbonne Paris Cité
Abstract:
Macrophages are phagocytic cells that play a major role at the crossroads between innate and specific immunity. They can be infected by the human immunodeficiency virus (HIV)-1 and because of their resistance to its cytopathic effects they can be considered to be persistent viral reservoirs. In addition, HIV-infected macrophages exhibit defective functions that contribute to the development of opportunistic diseases. The exact mechanism by which HIV-1 impairs the phagocytic response of macrophages was unknown. We had previously shown that the uptake of various particulate material by macrophages was inhibited when they were infected with HIV-1. This inhibition was only partial and phagosomes did form within HIV-infected macrophages. Therefore, we focused on analyzing the fate of these phagosomes. Phagosome maturation is accompanied by migration of these compartments towards the cell center, where they fuse with lysosomes, generating phagolysosomes, responsible for degradation of the ingested material. We used IgG-opsonized Sheep Red Blood Cells as a target for phagocytosis. To measure the speed of centripetal movement of phagosomes in individual HIV-infected macrophages, we used a combination of bright field and fluorescence confocal microscopy. We established a method to calculate the distance of phagosomes towards the nucleus, and then to calculate the velocity of the phagosomes. HIV-infected cells were identified thanks to a GFP-expressing virus, but the method is applicable to non-infected cells or any type of infection or treatment.
Insights
Human immunodeficiency virus (HIV)-1 infection impairs macrophage function by disrupting phagosome maturation. This study reveals HIV-1 hinders the movement of phagosomes towards the cell center, impacting their ability to degrade pathogens.
Area of Science:
- Immunology
- Virology
- Cell Biology
Background:
- Macrophages are crucial immune cells bridging innate and adaptive immunity.
- Macrophages can be infected by human immunodeficiency virus (HIV)-1, serving as persistent viral reservoirs.
- HIV-1 infection leads to defective macrophage functions, contributing to opportunistic diseases.
Purpose of the Study:
- To elucidate the mechanism by which HIV-1 impairs macrophage phagocytic function.
- To analyze the intracellular fate of phagosomes within HIV-1-infected macrophages.
Main Methods:
- Utilized IgG-opsonized Sheep Red Blood Cells as targets for phagocytosis.
- Employed bright field and fluorescence confocal microscopy to track phagosome movement.
- Developed a method to quantify phagosome distance from the nucleus and calculate velocity.
Main Results:
- HIV-1 infection partially inhibits the uptake of particulate material by macrophages.
- Phagosomes form in HIV-1-infected macrophages, but their maturation is affected.
- Centripetal migration of phagosomes towards the cell center is impaired in HIV-1-infected macrophages.
Conclusions:
- HIV-1 disrupts phagosome maturation by hindering phagosome-nucleus trafficking.
- This impairment in phagosome movement contributes to the functional defects observed in HIV-1-infected macrophages.
- The developed microscopy method is applicable for studying phagosome dynamics in various cellular contexts.

