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Phagosome Migration and Velocity Measured in Live Primary Human Macrophages Infected with HIV-1
Published on: September 5, 2016
Small alveolar macrophages are infected preferentially by HIV and exhibit impaired phagocytic function
K C Jambo1, D H Banda2, A M Kankwatira2
11] Malawi-Liverpool-Wellcome Trust Clinical Research Programme, University of Malawi College of Medicine, Blantyre, Malawi [2] Department of Clinical Sciences, Liverpool School of Tropical Medicine, Liverpool, UK.
Abstract:
HIV-1-infected persons are at higher risk of lower respiratory tract infections than HIV-1-uninfected individuals. This suggests strongly that HIV-infected persons have specific impairment of pulmonary immune responses, but current understanding of how HIV alters pulmonary immunity is incomplete. Alveolar macrophages (AMs), comprising small and large macrophages, are major effectors of innate immunity in the lung. We postulated that HIV-1 impairs pulmonary innate immunity through impairment of AM physiological functions. AMs were obtained by bronchoalveolar lavage from healthy, asymptomatic, antiretroviral therapy-naive HIV-1-infected and HIV-1-uninfected adults. We used novel assays to detect in vivo HIV-infected AMs and to assess AM functions based on the HIV infection status of individual cells. We show that HIV has differential effects on key AM physiological functions, whereby small AMs are infected preferentially by the virus, resulting in selective impairment of phagocytic function. In contrast, HIV has a more generalized effect on AM proteolysis, which does not require direct viral infection. These findings provide new insights into how HIV alters pulmonary innate immunity and the phenotype of AMs that harbors the virus. They underscore the need to clear this HIV reservoir to improve pulmonary immunity and reduce the high incidence of lower respiratory tract infections in HIV-1-infected individuals.
Insights
HIV impairs lung immunity by affecting alveolar macrophages (AMs). Small AMs are preferentially infected, reducing their ability to clear pathogens, increasing infection risk in HIV-1 individuals.
Area of Science:
- Immunology
- Virology
- Pulmonology
Background:
- HIV-1 infection increases the risk of lower respiratory tract infections.
- Pulmonary immune responses are impaired in HIV-1-infected individuals.
- Alveolar macrophages (AMs) are key innate immune cells in the lung.
Purpose of the Study:
- To investigate how HIV-1 alters pulmonary innate immunity.
- To determine the effect of HIV-1 on AM physiological functions.
- To identify AM phenotypes that harbor HIV.
Main Methods:
- AMs were collected from HIV-1-infected and uninfected adults via bronchoalveolar lavage.
- Novel assays were used to detect in vivo HIV-infected AMs.
- AM functions were assessed based on individual cell HIV infection status.
Main Results:
- HIV preferentially infects small AMs, impairing their phagocytic function.
- HIV infection leads to a generalized impairment of AM proteolysis, independent of direct infection.
- Differential effects of HIV on AM subsets were observed.
Conclusions:
- HIV selectively impairs pulmonary innate immunity through differential effects on AM subsets.
- Small AMs are a viral reservoir and their impaired function contributes to increased infection risk.
- Targeting HIV reservoirs in AMs may improve pulmonary immunity in HIV-1-infected individuals.

