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James Gilbert

Publications and source records attributed to James Gilbert.

3 recordsLinked to original sources

Human immunodeficiency virus type 2 (HIV-2) vector-mediated in vivo gene transfer into adult rabbit retina.

PURPOSE: To evaluate the potential usefulness of HIV-2 viral vector in in vivo retinal gene therapy. METHODS: An HIV-2 virus based viral vector was constructed and administered subretinally and intravitreally into rabbit eyes. After viral vector administration, the eyes were closely monitored for any adverse effects by slit lamp, indirect ophthalmoscopy, and fundus photography. Eyes were enucleated at specified times after injection, and reporter gene expression was identified within cell types and graded by the pattern and distribution of staining cells using fluorescent microscopy. RESULTS: The HIV-2 viral vector demonstrated efficient gene transfer into many types of retinal cells without apparent cytotoxicity. Notably with subretinal injection, the HIV-2 vector resulted in higher efficiency of transduction of photoreceptor cells than of the other cell types (p < 0.05). With the intravitreal administration of HIV-2 viral vectors, cellular transduction and transgene expression in the ganglion cell layer was the dominant finding. CONCLUSIONS: HIV-2 viral vector may be a useful gene delivery vehicle for retinal photoreceptor cells and ganglion cells. It deserves further exploration to investigate its potential merit in long term gene therapy protocols and in other animal species.

Animals↗

Endoventricular transplantation of allogenic skeletal myoblasts in a porcine model of myocardial infarction.

PURPOSE: To assess the technical feasibility of percutaneous endoventricular injection of skeletal myoblasts into an infarcted porcine myocardium. METHODS: A skeletal muscle biopsy was obtained from a donor pig and processed for myoblast expansion in vitro. Myocardial infarction was induced in a host pig via fibrin coil placement in the left anterior descending artery. Four weeks later, electromechanical mapping of the left ventricle identified the infarction site, into which approximately 200 million allogenic cells obtained from the muscle biopsy were directly injected (0.1 mL/injection at 25 sites) from inside the ventricular cavity via a needle injection catheter inserted through the femoral artery. Ten days after transplantation, the injected heart was evaluated histologically for the presence of myoblasts. RESULTS: Electrocardiography, echocardiography, left ventricular angiography, and electromechanical mapping confirmed the myocardial infarction. During the cell transfer procedure, premature ventricular contractions confirmed needle placement in the endocardium. Histological evaluation of the host heart 10 days after cell transfer revealed living myoblasts and multinucleated myotubes in the infarcted region, indicating successful transplantation. CONCLUSIONS: Direct myoblast transplantation into infarcted porcine myocardium using an endoventricular injection was technically feasible. The results in this model show that transplanted myoblasts were able to survive for 10 days after transplantation.

Animals↗

Euthanasia.

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