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Alteration of Arterial Vasomotor Function in Vitro by Gene Transfer with a Replication-Deficient Adenovirus

Publication ,  Journal Article
Davies, MG; Annex, BH; Fulton, GJ; Denning, SM; Taylor, DA; Blazing, MA; Peters, KG; Channon, KM; George, SE; Hagen, PO
Published in: Vascular and Endovascular Surgery
January 1, 1997

Gene transfer technologies offer great potential both to investigate and alter the course of vessel wall pathophysiology. Replication-deficient adenovirus vectors appear particu larly useful for the transfection of blood vessels, because of their ability to accommodate large cDNA inserts and to rapidly and efficiently infect mammalian endothelial and smooth muscle cells. The potential effects of transfection with a replication-deficient adenovirus on vasomotor function have not, however, been described. This study reports gene transfer experiments with a replication-deficient adenovirus containing a cytome galovirus promotor and a nuclear localizing variant of the bacterial ß-galactosidase gene. Excised carotid artery segments from 6 rabbits were divided into four segments and infected in pairs for thirty minutes with four viral titers (control [0], 2.5×109, 5×109, and 1×1010pfu/mL) at 37°C in serum-free culture media (M199). Expression of ß-galac tosidase and in vitro vasomotor function were determined after seventy-two hours' incu bation. Isometric tension studies were performed to examine the response of the vessel segments to the contractile agonist norepinephrine. ß-galactosidase was expressed in all vessel segments exposed to the adenovirus. There was a significant difference in the sensitivity to norepinephrine (P < 0.04) of the segments treated with the highest and lowest viral titers (mean ±sem, -log10 [EC50] of 5.98 ±0.09, 5.77 ±0.11, 5.68 ±0.14, and 5.52 ±0.13 for the control, 2.5×109, 5×109, and 1×1010plaque-forming units (pfu)/mL groups respectively). Replication-deficient adenovirus vectors can rapidly and efficiently infect rabbit carotid vessels, but there is, however, a dose-dependent alteration of in vitro vessel vasomotor function that may be mediated by a cytotoxic effect of the viral vector. Although further in vivo work is required to verify these results, this effect needs to be taken into account in studies involving adenoviral gene transfer. © 1997, Sage Publications. All rights reserved.

Duke Scholars

Published In

Vascular and Endovascular Surgery

DOI

ISSN

1538-5744

Publication Date

January 1, 1997

Volume

31

Issue

2

Start / End Page

131 / 136

Related Subject Headings

  • Cardiovascular System & Hematology
 

Citation

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Davies, M. G., Annex, B. H., Fulton, G. J., Denning, S. M., Taylor, D. A., Blazing, M. A., … Hagen, P. O. (1997). Alteration of Arterial Vasomotor Function in Vitro by Gene Transfer with a Replication-Deficient Adenovirus. Vascular and Endovascular Surgery, 31(2), 131–136. https://doi.org/10.1177/153857449703100203
Davies, M. G., B. H. Annex, G. J. Fulton, S. M. Denning, D. A. Taylor, M. A. Blazing, K. G. Peters, K. M. Channon, S. E. George, and P. O. Hagen. “Alteration of Arterial Vasomotor Function in Vitro by Gene Transfer with a Replication-Deficient Adenovirus.” Vascular and Endovascular Surgery 31, no. 2 (January 1, 1997): 131–36. https://doi.org/10.1177/153857449703100203.
Davies MG, Annex BH, Fulton GJ, Denning SM, Taylor DA, Blazing MA, et al. Alteration of Arterial Vasomotor Function in Vitro by Gene Transfer with a Replication-Deficient Adenovirus. Vascular and Endovascular Surgery. 1997 Jan 1;31(2):131–6.
Davies, M. G., et al. “Alteration of Arterial Vasomotor Function in Vitro by Gene Transfer with a Replication-Deficient Adenovirus.” Vascular and Endovascular Surgery, vol. 31, no. 2, Jan. 1997, pp. 131–36. Scopus, doi:10.1177/153857449703100203.
Davies MG, Annex BH, Fulton GJ, Denning SM, Taylor DA, Blazing MA, Peters KG, Channon KM, George SE, Hagen PO. Alteration of Arterial Vasomotor Function in Vitro by Gene Transfer with a Replication-Deficient Adenovirus. Vascular and Endovascular Surgery. 1997 Jan 1;31(2):131–136.
Journal cover image

Published In

Vascular and Endovascular Surgery

DOI

ISSN

1538-5744

Publication Date

January 1, 1997

Volume

31

Issue

2

Start / End Page

131 / 136

Related Subject Headings

  • Cardiovascular System & Hematology