Adenoviral Cre

Adenoviral Cre is a gene-delivery method that uses recombinant adenovirus to introduce Cre recombinase into target cells, enabling precise genetic manipulation in neuroscience. After infection, Cre recognizes paired loxP sites and catalyzes site-specific DNA recombination, excising or rearranging the intervening sequence according to the engineered allele. Researchers use this approach to activate or delete genes in defined brain regions or cell populations, supporting studies of neuronal development, circuit function, behavior, and disease mechanisms. Because adenoviral delivery can provide localized, transient Cre expression, it offers a flexible alternative for testing conditional genetic models when spatial control is important.

Adenoviral Cre - Related Videos

Research

JoVE EoE - Viral Growth and Techniques

Large-Scale Production of High-Capacity Adenoviral Vectors

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2026

Source: Ehrke-Schulz, E., et al. Cloning and Large-Scale Production of High-Capacity Adenoviral Vectors Based on the Human Adenovirus Type 5. J. Vis. Exp. (2016)This video demonstrates the large-scale amplification of high-capacity adenoviral vectors in suspension-adapted human embryonic kidney cells expressing Cre recombinase for use in gene delivery applications requiring high-titer, helper-free vector preparations.

Segmental Adeno-Cre Infection: A Technique to Generate Isolated Colorectal Cancer using Genetically Engineered Mouse Models

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2023

This video describes the generation of a colorectal mouse model by segmental adeno-cre infection. The infected colon segment leads to tumorigenesis within this segment of the mucosa, resulting in adenomas ultimately progressing to invasive and metastatic carcinoma. This model is an attractive platform for studies of cancer biology and preclinical therapeutic trials.

Adenoviral Transduction of Naive CD4 T Cells to Study Treg Differentiation

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Cited by 7 •

2013

Adenoviral gene transfer into naive CD4 T cells with transgenic expression of the Coxsackie adenovirus receptor enables the molecular analysis of regulatory T cell differentiation in vitro.

Cesium Chloride-Based Purification of Genome-Containing Adenoviral Vectors

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2026

Source: Ehrke-Schulz, E., et al. Cloning and Large-Scale Production of High-Capacity Adenoviral Vectors Based on the Human Adenovirus Type 5. J. Vis. Exp. (2016)This video demonstrates the purification of high-capacity adenoviral vectors using cesium chloride gradient ultracentrifugation, enabling the separation of genome-containing virions for applications in gene delivery, vector characterization, and preclinical therapeutic...

Assessment of Viral Fusion Inhibitors Using a Cre-Inducible Fluorescent Reporter

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2026

Source: Esposito, A. M.,et al. High-throughput Cre-Lox Activated Viral Membrane Fusion Assay to Identify Inhibitors of HIV-1 Viral Membrane Fusion. J. Vis. Exp. (2018)This video demonstrates a co-culture fluorescent assay to monitor cell-to-cell viral transmission. The assay uses a red-to-green reporter cassette to visualize viral membrane fusion and evaluate the efficacy of test compounds in blocking viral entry.

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