Viral-mediated Delivery

Viral-mediated delivery is a method that uses engineered viruses or viral vectors to transport genetic material into specific cells, enabling targeted changes in cellular function. After binding to cell-surface receptors, the vector enters the cell and delivers DNA or RNA, while selected promoters can restrict gene expression to particular cell types or brain regions. In behavioral research, this approach supports the study of neural circuits by introducing tools for optogenetic or chemogenetic control, fluorescent labeling, or gene regulation. By linking defined cellular activity with measurable behaviors, viral-mediated delivery helps clarify how brain pathways contribute to learning, motivation, movement, and social interactions.

Viral-mediated Delivery - Related Videos

Research

JoVE EoE - Bacterial Pathogenesis and Host Interactions

Agrobacterium-Mediated Delivery of Recombinant Viral Clones into Maize Seedlings for Gene Silencing

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2026

Source: Beernink, B. M. et al. Direct Agroinoculation of Maize Seedlings by Injection with Recombinant Foxtail Mosaic Virus and Sugarcane Mosaic Virus Infectious Clones. J. Vis. Exp. (2021)This video demonstrates the Agrobacterium-mediated delivery of recombinant viral clones into maize seedlings for gene silencing. It outlines the process of Agrobacterium infection, systemic viral spread, and RNA interference-driven phenotypic changes.

Surgical Method for Virally Mediated Gene Delivery to the Mouse Inner Ear through the Round Window Membrane

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Cited by 28 •

2015

The described post-auricular surgical approach allows rapid and direct delivery into the mouse cochlear scala tympani while minimizing blood loss and animal mortality. This method can be used for cochlear therapy using molecular, pharmacologic and viral delivery to postnatal mice through the round window membrane.

Viral Gene Delivery in the Mouse Heart for Evaluating Gene Effects on Heart Function

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2026

Source: Lu, A., et al. Viral Transgene Expression in Rodent Hearts and the Assessment of Cardiac Arrhythmia Risk. J. Vis. Exp. (2022)The video demonstrates a method for ultrasound-guided intramyocardial injection of a recombinant viral vector in a mouse model. This technique enables targeted gene delivery to the heart for studying the effects of transgene expression on cardiac function.

Nanoparticle-Mediated Enhanced Delivery of an Anti-Inflammatory Drug in Microglia-Like Cells

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2025

Take cultures of human monocyte-derived microglia-like cells.Introduce nanoparticles containing an anti-inflammatory drug into the experimental culture and the free drug into the control.The nanoparticles feature a hydrophilic shell and a hydrophobic core encapsulating the lipophilic drug.The cells endocytose the nanoparticles, which release the drug intracellularly, enhancing its delivery.The free drug enters by passive diffusion, a process constrained by the concentration gradient, which...

Assessing Caspase-Mediated Cleavage of Viral and Host Proteins in Virus-Infected Cells

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2025

The video demonstrates a method to assess caspase-mediated protein cleavage in virus-infected cells. Post-viral infection, caspases get activated and degrade various host cellular proteins and viral nucleoproteins while specific caspase inhibitors prevent this degradation, as confirmed by western blotting.

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