Related Experiment Video
Updated: Jul 13, 2026

Functional Interrogation of Adult Hypothalamic Neurogenesis with Focal Radiological Inhibition
Published on: November 14, 2013
Metabolic and behavioral alterations associated with viral vector-mediated toxicity in the paraventricular
Rohan Savani1, Erin Park1, Nidhi Busannagari1
1Rutgers The State University of New Jersey, New Brunswick, New Jersey, United States.
Objective:
Combining adeno-associated virus (AAV)-mediated expression of Cre recombinase with genetically modified floxed animals is a powerful approach for assaying the functional role of genes in regulating behavior and metabolism. Extensive research in diverse cell types and tissues using AAV-Cre has shown it can save time and avoid developmental compensation as compared to using Cre driver mouse line crossings. We initially sought to study the impact of ablation of corticotropin-releasing hormone (CRH) in the paraventricular hypothalamic nucleus (PVN) using intracranial AAV-Cre injection in adult animals.
Methods:
In this study, we stereotactically injected AAV8-hSyn-Cre or a control AAV8-hSyn-GFP both Crh-floxed and wild-type mouse PVN to assess behavioral and metabolic impacts. We then used immunohistochemical markers to systematically evaluate the density of hypothalamic peptidergic neurons and glial cells.
Results:
We found that delivery of one specific preparation of AAV8-hSyn-Cre in the PVN led to the development of obesity, hyperphagia, and anxiety-like behaviors. This effect occurred independent of sex and in both floxed and wild-type mice. We subsequently found that AAV8-hSyn-Cre led to neuronal cell death and gliosis at the site of viral vector injections. These behavioral and metabolic deficits were dependent on injection into the PVN. An alternatively sourced AAV-Cre did not reproduce the same results.
Conclusions:
Our findings reveal that delivery of a specific batch of AAV-Cre could lead to cellular toxicity and lesions in the PVN that cause robust metabolic and behavioral impacts. These alterations can complicate the interpretation of Cre-mediated gene knockout and highlight the need for rigorous controls.
Insights
A specific adeno-associated virus Cre preparation caused obesity and anxiety by damaging the paraventricular hypothalamic nucleus. This highlights the need for rigorous controls when using viral vectors for gene manipulation.
Area of Science:
- Neuroscience
- Genetics
- Metabolic Research
Background:
- Adeno-associated virus (AAV)-mediated Cre recombinase expression is a key tool for gene function studies in floxed animals.
- AAV-Cre offers advantages over traditional Cre driver mouse lines, including time savings and avoidance of developmental compensation.
- The paraventricular hypothalamic nucleus (PVN) is crucial for regulating behavior and metabolism.
Purpose of the Study:
- To investigate the impact of ablating corticotropin-releasing hormone (CRH) in the PVN using AAV-Cre in adult mice.
- To assess the behavioral and metabolic consequences of PVN-targeted AAV-Cre injection.
- To evaluate the specificity and potential toxicity of AAV-Cre preparations.
Main Methods:
- Stereotactic injection of AAV8-hSyn-Cre or AAV8-hSyn-GFP into the PVN of Crh-floxed and wild-type mice.
- Assessment of behavioral and metabolic changes post-injection.
- Immunohistochemical analysis of hypothalamic peptidergic neurons and glial cells to detect cell death and gliosis.
Main Results:
- One AAV8-hSyn-Cre preparation induced obesity, hyperphagia, and anxiety-like behaviors in both sexes and genotypes.
- This AAV-Cre preparation caused neuronal cell death and gliosis specifically at the PVN injection site.
- An alternative AAV-Cre source did not produce similar adverse effects, indicating batch-specific toxicity.
Conclusions:
- A specific batch of AAV-Cre can cause significant cellular toxicity and lesions in the PVN.
- These PVN lesions lead to substantial metabolic and behavioral alterations, confounding gene knockout studies.
- Rigorous controls and careful selection of viral vector batches are essential for reliable Cre-mediated gene manipulation research.
Related Concept Videos
Regulation of Food Intake
Encephalitis ll: Pathophysiology

