Adenoviral Gene Delivery

Adenoviral gene delivery is a method that uses modified adenoviruses to transport genetic material into target cells, supporting research and therapeutic development in medicine. Recombinant adenoviral vectors are engineered to carry a selected transgene, bind receptors on the cell surface, enter through endocytosis, and release the vector genome into the nucleus, where the gene is generally expressed without integrating into the host chromosomes. This approach can produce strong, temporary gene expression in dividing and nondividing cells, making it useful for studying gene function, developing vaccines, and investigating treatments for cancer, inherited disorders, and other diseases. Immune responses and limited duration of expression remain important design considerations.

Adenoviral Gene Delivery - Related Videos

Research

JoVE Journal - Medicine

An Orthotopic Bladder Cancer Model for Gene Delivery Studies

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Cited by 9 •

2013

Implantation of cancer cells into the organ of origin can serve as a useful preclinical model to evaluate novel therapies. MB49 bladder carcinoma cells can be grown within the bladder following intravesical instillation. This protocol demonstrates catheterization of the mouse bladder for the purpose of tumor implantation and adenoviral delivery.

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.

Research

JoVE Journal - Medicine
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Neo-Islet Formation in Liver of Diabetic Mice by Helper-dependent Adenoviral Vector-Mediated Gene Transfer

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Cited by 5 •

2012

We describe hepatic neo-islet formation in STZ (streptozotocin)-induced diabetic mice by gene transfer of Neurogenin3 (Ngn3) and Betacellulin (Btc) using helper-dependent adenoviral vector (HDAd) and the reversal of hyperglycemia. Our method takes advantages of helper-dependent adenoviral vectors with their highly efficient in vivo transduction and the long lasting gene expression.

Vascular Gene Transfer from Metallic Stent Surfaces Using Adenoviral Vectors Tethered through Hydrolysable Cross-linkers

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Cited by 12 •

2014

These studies report on reversible attachment of adenoviral gene vectors to coatless metal surfaces of stents and model mesh disks. Sustained release of transduction-competent viral particles contingent upon hydrolysis of cross-linkers used for vector immobilization results in a durable site-specific transgene expression in vascular cells and in stented arteries.

Ex Vivo Culture of Patient Tissue & Examination of Gene Delivery

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Cited by 4 •

2010

This article describes the culture of patient tissue slices for gene delivery studies and subsequent analysis of gene expression using IVIS bioluminescence imaging.

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