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Published on: October 10, 2012
A Rabbit Model for Testing Helper-Dependent Adenovirus-Mediated Gene Therapy for Vein Graft Atherosclerosis
Lianxiang Bi1, Bradley K Wacker1, Emma Bueren1
1Division of Cardiology, Department of Medicine, University of Washington, Seattle, WA 98195, USA.
Abstract:
Coronary artery bypass vein grafts are a mainstay of therapy for human atherosclerosis. Unfortunately, the long-term patency of vein grafts is limited by accelerated atherosclerosis. Gene therapy, directed at the vein graft wall, is a promising approach for preventing vein graft atherosclerosis. Because helper-dependent adenovirus (HDAd) efficiently transduces grafted veins and confers long-term transgene expression, HDAd is an excellent candidate for delivery of vein graft-targeted gene therapy. We developed a model of vein graft atherosclerosis in fat-fed rabbits and demonstrated long-term (≥20 weeks) persistence of HDAd genomes after graft transduction. This model enables quantitation of vein graft hemodynamics, wall structure, lipid accumulation, cellularity, vector persistence, and inflammatory markers on a single graft. Time-course experiments identified 12 weeks after transduction as an optimal time to measure efficacy of gene therapy on the critical variables of lipid and macrophage accumulation. We also used chow-fed rabbits to test whether HDAd infusion in vein grafts promotes intimal growth and inflammation. HDAd did not increase intimal growth, but had moderate-yet significant-pro-inflammatory effects. The vein graft atherosclerosis model will be useful for testing HDAd-mediated gene therapy; however, pro-inflammatory effects of HdAd remain a concern in developing HDAd as a therapy for vein graft disease.
Insights
Helper-dependent adenovirus (HDAd) shows promise for preventing vein graft atherosclerosis. While effective in a rabbit model, HDAd has moderate pro-inflammatory effects that need further research for therapeutic development.
Area of Science:
- Cardiovascular Research
- Gene Therapy
- Vascular Biology
Background:
- Coronary artery bypass vein grafts are crucial for treating atherosclerosis.
- Accelerated atherosclerosis limits the long-term effectiveness of vein grafts.
- Gene therapy offers a potential strategy to prevent vein graft atherosclerosis.
Purpose of the Study:
- To evaluate helper-dependent adenovirus (HDAd) as a vector for gene therapy in vein grafts.
- To develop and validate a rabbit model for studying vein graft atherosclerosis and gene therapy efficacy.
- To assess the long-term persistence of HDAd and its effects on vein graft pathology.
Main Methods:
- Developed a fat-fed rabbit model of vein graft atherosclerosis.
- Administered HDAd to vein grafts and assessed vector genome persistence (≥20 weeks).
- Quantified graft hemodynamics, wall structure, lipid accumulation, cellularity, and inflammatory markers.
Main Results:
- HDAd demonstrated long-term persistence in vein grafts.
- Identified 12 weeks post-transduction as optimal for assessing lipid and macrophage accumulation.
- HDAd did not promote intimal growth but induced moderate pro-inflammatory effects in chow-fed rabbits.
Conclusions:
- The developed rabbit model is suitable for testing HDAd-mediated gene therapy for vein graft disease.
- HDAd is a viable vector for long-term gene expression in vein grafts.
- The pro-inflammatory effects of HDAd require consideration for its clinical application in vein graft therapy.
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