Hiv-1 Encephalitic Mice

HIV-1 encephalitic mice are engineered or engrafted mouse models that reproduce key features of HIV-1-associated brain inflammation, enabling controlled study of a disease that cannot develop naturally in standard mice. Because murine cells are generally not permissive to HIV-1 infection, researchers introduce human HIV-1-infected macrophages or other human immune components into immunodeficient mice, where infected cells trigger neuroinflammation and encephalitic lesions. In bioengineering, these models support investigation of viral neuropathogenesis, immune-cell interactions, and candidate therapies, while providing a platform for evaluating how engineered tissues, drug-delivery systems, or neuroprotective interventions affect HIV-1-related neurological injury.

Hiv-1 Encephalitic Mice - Related Videos

Research

JoVE Journal - Immunology and Infection

In vitro Uncoating of HIV-1 Cores

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Cited by 47 •

2011

Uncoating is an essential step in the early phase of the HIV-1 life cycle and is defined as the disassembly of the capsid shell and the release of the viral ribonucleoprotein complex (vRNP). Here, we demonstrate techniques for isolating intact cores from HIV-1 virions and for quantifying their uncoating in vitro.

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.

Measuring Endoplasmic Reticulum Stress and Unfolded Protein Response in HIV-1 Infected T-Cells and Analyzing its Role in HIV-1 Replication

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Cited by 1 •

2024

Here, we describe some established methods to determine endoplasmic reticulum (ER) stress and unfolded protein response (UPR) activation, with particular emphasis on HIV-1 infection. This article also describes a set of protocols to investigate the effect of ER stress/UPR on HIV-1 replication and virion infectivity.

Isolation of Exosomes from the Plasma of HIV-1 Positive Individuals

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Cited by 51 •

2016

Techniques describing a gradient procedure to separate exosomes from human immunodeficiency virus (HIV) particles are described. This procedure was used to isolate exosomes away from HIV particles in human plasma from HIV-infected individuals. The isolated exosomes were analyzed for cytokine/chemokine content.

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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