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Updated: Jun 19, 2026

Mosaic Analysis of Gene Function in Postnatal Mouse Brain Development by Using Virus-based Cre Recombination
Published on: August 1, 2011
Generation and characterization of a tamoxifen-inducible, Cre driver rat for transgene expression in microglia
Elliot J Glotfelty1, Lamarque M Coke1, Evan E Hart1,2
1Intramural Research Program, National Institute on Drug Abuse, Baltimore, MD 21224.
Abstract:
Microglia are the resident immune cells of the central nervous system (CNS) and display diverse functions under both physiological and pathological conditions. The past decade has seen burgeoning interest in microglia function, with a variety of transgenic tools developed for specific genetic manipulation of microglia in various injury, disease, and developmental models. Although the majority of models have been developed in mice, the ability to manipulate microglia in rats provides additional advantages to studying microglial function in the brain especially related to complex behavior. Using BAC transgenesis, our lab has created a transgenic rat (Cx3cr1-CreERT2) that expresses a tamoxifen inducible Cre recombinase (CreERT2) under control of the microglial/macrophage specific fractalkine C-X3-C Motif Chemokine Receptor 1 (Cx3cr1) promoter. In mice, CreERT2 and other transgenes have been expressed in microglia using the Cx3cr1 promoter, however, this is the first demonstration in rats. Importantly, these rats exhibit similar cognitive behaviors compared to their wildtype (WT) controls. Microglial specificity of inducible Cre expression was confirmed by breeding the novel Cx3cr1-CreERT2+/- rat with a previously reported double floxed inverse open reading frame (DIO)-mCherry+/- reporter rat to show tamoxifen inducible mCherry expression that colocalizes with the microglial marker Iba1. In addition, we utilize flow cytometry to demonstrate time and Cre dependent differences in recombination of Cx3cr1+ cells in the spleen, peripheral blood, and brain at two- and eight-weeks post-tamoxifen treatment. Overall, we have created a novel transgenic rat model for researchers to employ in understanding microglial and peripheral immune cell function in rats.
Insights
Researchers developed a novel transgenic rat model for studying microglia, the central nervous system's immune cells. This tool enables precise genetic manipulation of microglia in rats, advancing research into brain function and disease.
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Microglia are key immune cells in the central nervous system (CNS) with diverse roles.
- Existing transgenic tools for microglia research are primarily in mice.
- Rats offer advantages for studying microglial function, especially in complex behaviors.
Purpose of the Study:
- To create and validate a novel transgenic rat model for inducible and specific genetic manipulation of microglia.
- To enable advanced research into microglial and peripheral immune cell functions in rats.
Main Methods:
- Developed a BAC transgenic rat expressing tamoxifen-inducible Cre recombinase (CreERT2) under the microglial fractalkine receptor (Cx3cr1) promoter.
- Confirmed microglial specificity by crossing with a reporter rat and assessing Iba1 colocalization.
- Utilized flow cytometry to analyze recombination in Cx3cr1+ cells across tissues post-tamoxifen treatment.
Main Results:
- Successfully generated Cx3cr1-CreERT2 transgenic rats.
- Demonstrated tamoxifen-inducible and microglia-specific Cre expression.
- Confirmed that these rats exhibit normal cognitive behaviors compared to wildtype controls.
- Showed time- and Cre-dependent recombination in microglia and peripheral immune cells.
Conclusions:
- A novel transgenic rat model for microglia research has been established.
- This model allows for precise, inducible genetic targeting of microglia in rats.
- The model is suitable for investigating microglial roles in CNS and peripheral systems.
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