Publication Cover
Archives of Physiology and Biochemistry
The Journal of Metabolic Diseases
Volume 104, 1996 - Issue 7
7
Views
7
CrossRef citations to date
0
Altmetric
Research Article

Increased Intraluminal Pressure Induces DNA Synthesis and c-fos Expression in Perfused Rat Aorta

Pages 838-844 | Published online: 03 Oct 2008

References

  • AKAI, Y., HOMMA, T., BURNS, K.D., YASUDA, T., BADR, K.F. & HARRIS, R.C. (1994) Mechanical stretch/relax-ation of cultured rat mesangial cells induces protoon-cogenes and cyclooxygenase. Am. J. Physiol. 267, C482–C490.
  • BEVAN, R.D., VAN MARTHENS, E. & BEVAN, J.A. (1976) Hyperplasia of vascular smooth muscle in experimen-tal hypertension in the rabbit. Circ. Res. 38 (Suppl II), II-58-II–62.
  • BRUNETTE, D.M. (1984) Mechanical stretching increases the number of epithelial cells synthesizing DNA in cul-ture. J. Cell. Sci. 69, 35–45.
  • CHAMLEY-CAMPBELL, J., CAMPBELL, G.R. & Ross, R. (1979) The smooth muscle cell in culture. Physiol. Rev. 59, 1–61.
  • CHOMCZYNSKI, P. (1992) One-hour alkaline capillary trans-fer for blotting of DNA and RNA. Anal. Biochem. 201, 134–139.
  • CURRAN, T., GORDON, M.B., RUBINO, K.L. & SAMBUCETTI, L.C. (1987) Isolation and characterization of the c-fos-(rat) cDNA and analysis of post-translation modifica-tion in vitro. Oncogene 2, 79–84.
  • DAVIS, J.0., LARAGH, J.H. & SELWYN, A. (1977): Hyper-tension: Mechanisms, Diagnosis and Management. HP Publishing Co., New York, N.Y.
  • Foucow, B. (1982) Physiological aspects of primary hy-pertension. Physiol. Rev. 62, 347–504.
  • HARRIS, R.C., AKAI, Y., YASUDA, T. & HOMMA, T. (1994) The role of physical forces in alterations of mesangial cell function. Kidney Int. 45 (Suppl 45), S17–S21.
  • HASEGAWA, S,. SATO, S., SAITO, S., SUZUKI, Y. & BRUNETTE, D.M. (1985) Mechanical stretching increases the number of cultured bone cells synthesizing DNA and alters their pattern of protein synthesis. Calcif. Tis-sue Int. 37, 431–436.
  • HOMMA, T., AKAI, Y., BURNS, K.D. & HARRIS, R.C. (1992) Activation of S6 kinase by repeated cycles of stretch-ing and relaxation in rat glomerular mesangial cells. J. Biol. Chem. 267, 23129–23135.
  • HUME, W.R. (1980) Proline and thymidine uptake in rab-bit ear artery segments in vitro increased by chronic tangential load. Hypertension 2, 738–743.
  • ITo, H. (1989) Blood Vessel changes in hypertension: structure and function. In LEE. R.M.K.W., ed. CRC Press, Boca Raton, Fl.
  • IZUMO, S., NADAL-GINARD, B. & MAHDAVI, V. (1988) Pro-tooncogene induction and reprogramming of cardiac gene expression produced by pressure overload. Proc. Natl. Acad. Sci. 85, 339–343.
  • KOLBECK-RUHMKORFF, C., HORBAN, A. & ZIMMER, H.-G. (1993) Effect of pressure and volume overload on pro-to-oncogene expression in the isolated working rat heart. Cardiovasc. Res. 27, 1998–2004.
  • KOLLROS, P.R., BATES, S.R., MATHEWS, M., HORWITZ, A.L. & GLAGOV, S. (1987) Cyclic AMP inhibits increased collagen production by cyclically stretched smooth muscle cells. Laboratory Inv. 56, 410–417.
  • LEE, R.M.K.W. (1985) Vascular changes at the prehyper-tensive phase in the mesenteric arteries from spontane-ously hypertensive rats. Blood Vessels 22, 105–126.
  • LEUNG, D.Y.M., GLAGOV, S. & MATHEWS, M.B. (1976) Cyclic stretching stimulates synthesis of matrix com-ponents by arterial smooth muscle cells in vitro. Sci-ence 191, 475–477.
  • MANGIARUA, E., BASSO, N., Ruiz, P. & TAQUINI, A.C. (1981) Vascular structural changes in DOC-salt hyper-tensive rats. Hypertension 3 (Suppl II), II-183-11–186.
  • MANGIARUA, E.I. & LEE, R.M.K.W. (1990) Increased sym-pathetic innervation in the cerebral and mesenteric ar-teries of hypertensive rats. Can. I Physiol. Pharmacol. 68, 492–499.
  • MANGIARUA, E.I. & LEE, R.M.K.W. (1992) Morphometric study of cerebral arteries from spontaneously hyper-tensive and stroke-prone spontaneously hypertensive rats. 1 Hypertension 10, 1183–1190.
  • MANGIARUA, E.I., Moss, N., LEMKE, S.M., MCCUMBEE, W.D., SZAREK, J.L. & GRUETTER, C.A. (1992) Mor-phological and contractile characteristics of rat aortae perfused for 3 and 6 days in vitro. Artery 19, 14–38.
  • OWENS, G.K. & SCHWARTZ, S.M. (1982) Alterations in vascular smooth muscle mass in the spontaneously hy-pertensive rat. Role of cellular hypertrophy, hyperploi-dy, and hyperplasia. Circ. Res. 51, 280–289.
  • SUMPIO, B.E., BANES, A.J., LEVIN, L.G. & JOHNSON, G., Jr. (1987) Mechanical stress stimulates aortic endothe-lial cells to proliferate. J. Vasc. Surg. 6, 252–256.
  • SUMPIO, B.E. & BANES, A.J. (1988a) Prostacyclin synthet-ic activity in cultured aortic endothelial cells undergo-ing mechanical deformation. Surgery 104, 383–389.
  • SUMPIO, B.E. & BANES, A.J. (1988b) Response of porcine aortic smooth muscle cells to cyclic tensional deforma-tion in culture. I Surg. Res. 44, 696–701.
  • SUMPIO, B.E., BANES, A.J., BUCKLEY, M. & JOHNSON, G., Jr. (1988a) Alterations in aortic endothelial cell mor-phology and cytoskeletal protein synthesis during cy-clic tensional deformation. J. Vasc. Surg. 7, 130–138.
  • SUMPIO, B.E., BANES, A.J., LINK, W.G. & JOHNSON, G., Jr. (1988b) Enhanced collagen production by smooth muscle cells during repetitive mechanical stretching. Arch. Surg. 123, 1233–1236.
  • WILSON, E., MAT, Q., SUDHIR, K., WEISS, R.H. & IvEs, H.E. (1993) Mechanical strain induces growth of vas-cular smooth muscle cells via autocrine action of PDGF. J. Cell. Biol. 123, 741–747.
  • YAMAZAKI, T., TOBE, K., HOH, E., MAEMURA, K., KAIDA, T., KOMURO, I., TAMEMOTO, H., KADOWAKI, T., NAGAI, R. & YAZAKI, Y. (1993) Mechanical loading activates mitogen-activated protein kinase and S6 pep-tide kinase in cultured rat cardiac myocytes. I Biol. Chem. 268, 12069–12076.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.