Translational Paradigms in Cerebrovascular Gene Transfer
Open Access
- 1 November 2003
- journal article
- review article
- Published by SAGE Publications in Journal of Cerebral Blood Flow & Metabolism
- Vol. 23 (11) , 1251-1262
- https://doi.org/10.1097/01.wcb.0000093324.07718.d4
Abstract
Gene transfer involves the use of an engineered biologic vehicle known as a vector to introduce a gene encoding a protein of interest into a particular tissue. In diseases with known defects at a genetic level, gene transfer offers a potential means of restoring a normal molecular environment via vector-mediated entry (transduction) and expression of genes encoding potentially therapeutic proteins selectively in diseased tissues. The technology of gene transfer therefore underlies the concept of gene therapy and falls under the umbrella of the current genomics revolution. Particularly since 1995, numerous attempts have been made to introduce genes into intracranial blood vessels to demonstrate and characterize viable transduction. More recently, in attempting to translate cerebrovascular gene transfer technology closer to the clinical arena, successful transductions of normal human cerebral arteries ex vivo and diseased animal cerebral arteries in vivo have been reported using vasomodulatory vectors. Considering the emerging importance of gene-based strategies for the treatment of the spectrum of human disease, the goals of the present report are to overview the fundamentals of gene transfer and review experimental studies germane to the clinical translation of a technology that can facilitate genetic modification of cerebral blood vessels.Keywords
This publication has 78 references indexed in Scilit:
- Expression and Function of Recombinant S1179D Endothelial Nitric Oxide Synthase in Canine Cerebral ArteriesStroke, 2002
- Gene Therapy of Human DiseaseMedicine, 2002
- Biologic alternatives to stents and graftsCurrent Cardiology Reports, 2001
- Reports of Adenovector “Death” Are Greatly ExaggeratedMolecular Therapy, 2000
- Is intracellular brain pH a dependent factor in NOS inhibition during focal cerebral ischemia?Brain Research, 2000
- Transfer and expression of recombinant nitric oxide synthase genes in the cardiovascular systemTrends in Pharmacological Sciences, 1998
- Effects of in vivo adventitial expression of recombinant endothelial nitric oxide synthase gene in cerebral arteriesProceedings of the National Academy of Sciences, 1997
- Isolation of a Common Receptor for Coxsackie B Viruses and Adenoviruses 2 and 5Science, 1997
- Gene Therapy — A Novel Form of Drug DeliveryNew England Journal of Medicine, 1995
- Nitric oxide directly activates calcium-dependent potassium channels in vascular smooth muscleNature, 1994