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December 15, 2001European Journal of Biochemistry17 citationsOpen Access

Antiproliferative effect of nitric oxide on rat glomerular mesangial cells via inhibition of mitogen‐activated protein kinase

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TCTing‐Yu ChinYLYin‐Shan LinSCSheau‐Huei Chueh

Key Points

  • The study aims to investigate the effect of nitric oxide and lipopolysaccharide on the proliferation of rat glomerular mesangial cells.
  • Used nitric oxide donors and LPS to assess their impact on cell proliferation.

Structured PICO

P
Population
Rat glomerular mesangial cells
I
Intervention
Nitric oxide (NO) donors (including S-Nitrosoglutathione [GSNO]) and lipopolysaccharide (LPS)
C
Comparator
Control (serum-induced proliferation without NO/LPS)
O
Outcome
Cell proliferationsurrogate

In rat glomerular mesangial cells, NO and LPS exert an antiproliferative effect mediated by MAPK inhibition, increased cGMP, and arachidonic acid release.

Abstract

The effect of nitric oxide (NO) donors and lipopolysaccharide (LPS) on the proliferation of rat glomerular mesangial cells was characterized. Exogenous application of a NO donor inhibited serum-induced proliferation in a time- and dose-dependent manner. S-Nitrosoglutathione (GSNO) also increased cGMP generation and arachidonic acid release, but it did not cause any measurable increase in the cytosolic Ca2+ concentration. Chelation of cytosolic Ca2+ or inhibition of mitogen-activated protein kinase (MAPK) kinase had an inhibitory effect on proliferation, but neither enhanced the antiproliferative effect of GSNO. In contrast, inhibition of guanylate cyclase or phospholipase A2 had no effect on proliferation, but partially reversed GSNO-induced antiproliferation by approximately 98 and 65%, respectively. GSNO did not cause cell death. Incubation of cells with LPS induced endogenous NO generation and had an antiproliferative effect. LPS-induced antiproliferation was reversed completely by inhibition of nitric oxide synthase and partially by inhibition of guanylate cyclase or phospholipase A2. GSNO or LPS inhibited serum-induced MAPK activation, and both effects were partially reversed by inhibition of guanylate cyclase or phospholipase A2. Inclusion of 8-bromo-cGMP or arachidonic acid in the growth medium resulted in a similar antiproliferative effect. In conclusion, in rat glomerular mesangial cells, MAPK inhibition and an antiproliferative effect could be induced by either an increase in the cellular concentration of NO or exposure of the cells to LPS. Part of the effect of NO was attributable to the increased cellular cGMP generation and arachidonic acid release.

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Cite This Study

Chin et al. (2001) studied this question.

synapsesocial.com/papers/6a77193bd2fa2470761ea503https://doi.org/10.1046/j.0014-2956.2001.02534.x
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Synthesis and action of nitric oxide in rat glomerular mesangial cells1991 · 101 citations
  2. 2Inhibition of rat mesangial cell mitogenesis by nitric oxide-generating vasodilators1989 · 166 citations
  3. 3Nitric Oxide Upregulates Induction of PDGF Receptor-α Expression in Rat Renal Mesangial Cells and in Anti-Thy-1 Glomerulonephritis2005 · 13 citations
  4. 4Nitric oxide stimulates stress‐activated protein kinases in glomerular endothelial and mesangial cells1996 · 57 citations
  5. 5<i>L</i>-Arginine Supplementation Antagonizes the Effects of Angiotensin II and Endothelin 1 on Mesangial Cell Proliferation1995 · 18 citations