Glomerular vasodilatation in the early stages of type I diabetes mellitus apparently results from arteriolar insensitivity to vasoconstrictors. Since cytosolic free calcium ([Ca2+]i) is a major signaling mechanism for smooth muscle contraction, we studied whether growth of smooth muscle-like rat glomerular mesangial cells in media with high glucose concentration affects [Ca2+]i responses to vasoconstrictors. In cells grown for five days in 22 mM glucose, we observed blunted responsiveness to three structurally unrelated vasoconstrictors that elevate [Ca2+]i via a phospholipase C-dependent mechanism, angiotensin II, prostaglandin F2 alpha, and arginine vasopressin. Inhibition of [Ca2+]i responses was not due to an osmotic effect of high glucose, since it was not mimicked by hypertonic mannitol. While the size of intracellular Ca2+ pools was unaffected by elevated glucose, Na+/Ca2+ exchange was markedly inhibited, thus ruling out both impaired filling of Ca2+ stores and enhanced counter-regulatory mechanisms. Impaired myoinositol transport or intracellular sorbitol accumulation were not responsible for the effects of high glucose, since supplementation of media with myo-inositol or with the aldose reductase inhibitor. Alcon 1576, failed to reverse insensitivity to vasoconstrictors. On the other hand, down-regulation or pharmacological inhibition of protein kinase C completely reversed the effects of high glucose, thus indicating involvement of this signal transduction pathway. These data suggest a possible intracellular mechanism for the impaired vascular sensitivity underlying early renal hemodynamic changes in diabetes mellitus.

HIGH GLUCOSE INHIBITS CYTOSOLIC CALCIUM SIGNALING IN CULTURED RAT MESANGIAL CELLS / Mene', Paolo; Pugliese, Giuseppe; Flavia, Pricci; DI MARIO, Umberto; Cinotti, Giulio Alberto; Pugliese, Francesco. - In: KIDNEY INTERNATIONAL. - ISSN 0085-2538. - 43:3(1993), pp. 585-591. [10.1038/ki.1993.86]

HIGH GLUCOSE INHIBITS CYTOSOLIC CALCIUM SIGNALING IN CULTURED RAT MESANGIAL CELLS

MENE', Paolo;PUGLIESE, Giuseppe;DI MARIO, Umberto;CINOTTI, Giulio Alberto;PUGLIESE, Francesco
1993

Abstract

Glomerular vasodilatation in the early stages of type I diabetes mellitus apparently results from arteriolar insensitivity to vasoconstrictors. Since cytosolic free calcium ([Ca2+]i) is a major signaling mechanism for smooth muscle contraction, we studied whether growth of smooth muscle-like rat glomerular mesangial cells in media with high glucose concentration affects [Ca2+]i responses to vasoconstrictors. In cells grown for five days in 22 mM glucose, we observed blunted responsiveness to three structurally unrelated vasoconstrictors that elevate [Ca2+]i via a phospholipase C-dependent mechanism, angiotensin II, prostaglandin F2 alpha, and arginine vasopressin. Inhibition of [Ca2+]i responses was not due to an osmotic effect of high glucose, since it was not mimicked by hypertonic mannitol. While the size of intracellular Ca2+ pools was unaffected by elevated glucose, Na+/Ca2+ exchange was markedly inhibited, thus ruling out both impaired filling of Ca2+ stores and enhanced counter-regulatory mechanisms. Impaired myoinositol transport or intracellular sorbitol accumulation were not responsible for the effects of high glucose, since supplementation of media with myo-inositol or with the aldose reductase inhibitor. Alcon 1576, failed to reverse insensitivity to vasoconstrictors. On the other hand, down-regulation or pharmacological inhibition of protein kinase C completely reversed the effects of high glucose, thus indicating involvement of this signal transduction pathway. These data suggest a possible intracellular mechanism for the impaired vascular sensitivity underlying early renal hemodynamic changes in diabetes mellitus.
1993
01 Pubblicazione su rivista::01a Articolo in rivista
HIGH GLUCOSE INHIBITS CYTOSOLIC CALCIUM SIGNALING IN CULTURED RAT MESANGIAL CELLS / Mene', Paolo; Pugliese, Giuseppe; Flavia, Pricci; DI MARIO, Umberto; Cinotti, Giulio Alberto; Pugliese, Francesco. - In: KIDNEY INTERNATIONAL. - ISSN 0085-2538. - 43:3(1993), pp. 585-591. [10.1038/ki.1993.86]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/110476
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