Literature DB >> 2271760

Fluid shear stress enhanced DNA synthesis in cultured endothelial cells during repair of mechanical denudation.

J Ando1, T Komatsuda, C Ishikawa, A Kamiya.   

Abstract

We have previously observed a stimulatory effect of fluid shear stress on the regeneration of cultured endothelial cell layers after mechanical denudation. In this study we examined how fluid shear stress affects endothelial cell DNA synthesis during regeneration. Following mechanical denudation of narrow linear areas, monolayers of bovine aortic endothelial cells cultured on plastic dishes were subjected to shear stress of 1.3-4.1 dynes/cm2 for 24-48 hours in a specially designed apparatus. After the application of shear stress, cells were stained with propidium iodide, and its fluorescence intensity, reflecting cellular DNA content, was measured using photometric fluorescence microscopy. The DNA content of cells exposed to shear stress increased significantly more than that of paired, static control cells (p less than 0.005 to p less than 0.001). The DNA histogram showed that cells exposed to shear stress contained a relatively high proportion of cells located in the S, G2, and M phases of the cell cycle as compared with the static control. These data suggest that fluid shear stress enhances endothelial cell DNA synthesis during the repair of mechanical denudation.

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Year:  1990        PMID: 2271760     DOI: 10.3233/bir-1990-27505

Source DB:  PubMed          Journal:  Biorheology        ISSN: 0006-355X            Impact factor:   1.875


  3 in total

1.  Mechanical stress and human aortic smooth muscle cell proliferation.

Authors:  H Kawaguchi; T Ozaki; T Murakami; K Iizuka
Journal:  Exp Clin Cardiol       Date:  2001

Review 2.  Shear-dependence of endothelial functions.

Authors:  W H Reinhart
Journal:  Experientia       Date:  1994-02-15

3.  Increased plasma viscosity as a reason for inappropriate erythropoietin formation.

Authors:  A Singh; K U Eckardt; A Zimmermann; K H Götz; M Hamann; P J Ratcliffe; A Kurtz; W H Reinhart
Journal:  J Clin Invest       Date:  1993-01       Impact factor: 14.808

  3 in total

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