Hiv Infection

HIV infection is a viral disease caused by human immunodeficiency virus, which progressively weakens the immune system by targeting CD4 T lymphocytes. After entering these cells, HIV uses reverse transcriptase to convert its RNA into DNA, integrates that DNA into the host genome, and produces new viral particles that spread to additional cells. Without effective treatment, declining CD4 counts can lead to acquired immunodeficiency syndrome and opportunistic infections. Immunology and infection research uses this framework to study viral replication, host immune responses, transmission, and antiretroviral therapy, supporting strategies that suppress viral load, preserve immune function, and reduce transmission.

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JoVE EoE - Neuropathology

Establishing an Active HIV Infection in a Rat Model

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2025

This video demonstrates the procedure of injecting chimeric HIV viruses into the cortex of a rat's brain, where the virus RNA integrates into the host genome, replicates, and spreads to establish an active HIV infection in the experimental model.

Amplifying and Quantifying HIV-1 RNA in HIV Infected Individuals with Viral Loads Below the Limit of Detection by Standard Clinical Assays

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Cited by 10 •

2011

Quantifying levels of HIV-1 RNA in plasma and sequencing single HIV-1 genomes from individuals with viral loads below the limit of detection (50-75 copies/ml) is difficult. Here we describe how to extract and quantify plasma viral RNA using a real time PCR assay that reliably measures HIV-1 RNA down to 0.3 copies/ml and how to amplify viral genomes by single genome sequencing, from samples with very low viral loads.

Generation of an In Vitro Cell Culture Model of Malaria-HIV Co-Infection

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2025

This video demonstrates the generation of an in vitro malaria-HIV co-infection cell culture model. HIV-infected peripheral blood mononuclear cells co-cultured with Plasmodium falciparum parasitized erythrocytes potentially support each other's growth and provide insights into the immune responses and disease progression in HIV and malaria co-infections.

An In Vitro Model for Measuring Immune Responses to Malaria in the Context of HIV Co-infection

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Cited by 1 •

2015

Human co-infection is difficult to replicate in vitro. However, human malaria parasites can readily be cultured in vitro, as can freshly isolated human peripheral blood mononuclear cells naturally infected with HIV. This provides an excellent model for studying early immune responses to malaria parasites in the context of HIV co-infection.

New Tools to Expand Regulatory T Cells from HIV-1-infected Individuals

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Cited by 4 •

2013

CD4+ Regulatory T cells are potent immune-modulators and serve important functions in immune homeostasis. The paucity of these cells in peripheral blood makes functional studies challenging, specifically in the context of HIV-1-infection. We here describe a method to isolate and expand functional CD4+ Tregs from peripheral blood from HIV-1-infected individuals.

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