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T Dervaux

Publications and source records attributed to T Dervaux.

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Cyclic GMP modulates store-operated calcium entry inducing phosphatidylserine translocation at the surface of megakaryocytic cells.

When subjected to stimulation, cells from the vascular compartment show a spontaneous collapse of the plasma membrane phospholipid asymmetry and phosphatidylserine is exposed at the external leaflet. Thus, phosphatidylserine externalization is essential for normal hemostasis and phagocytosis. The mechanism governing the migration of phosphatidylserine to the exoplasmic leaflet is not yet fully understood. We have proposed that store-operated calcium entry (SOCE) constitutes a key step of this process. Here, interaction of [Ca(2+)](i), cAMP and cGMP pathways and phosphatidylserine exposure was examined in human megakaryocytic cells. The membrane permeable cAMP and cGMP analogues, pCPT-cAMP and pCPT-cGMP, enhanced the Ca(2+) signal induced by ionophore and SOCE. Responses to pCPT-cAMP and pCPT-cGMP were independent of protein kinase A, protein kinase G (PKG) or ERK pathways. Inhibition of small G-proteins reduced or abolished the increase of [Ca(2+)](i) induced by pCPT-cAMP or pCPT-cGMP, respectively. pCPT-cGMP but not pCPT-cAMP enhanced the ability of cells to expose phosphatidylserine. This effect was not prevented by the inhibition of PKG or small G-proteins. These results show the differential role of cyclic nucleotides in the Ca(2+)-dependent membrane remodeling. Hence, pCPT-cGMP is another regulatory element for the completion of SOCE-induced phosphatidylserine transmembrane redistribution in HEL cells through a mechanism implicating small G-proteins.

Biological Transport↗

[Alcoholism].

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Alcoholism↗

Is sirolimus responsible for proteinuria?

Sirolimus (SRL) is suspected to induce proteinuria. We retrospectively studied proteinuria in a population of liver (n = 29) and kidney transplant (n = 30) recipients switched to SRL with progressive diminution or withdrawal of calcineurin inhibitors (CNI). We also observed estimated glomerular filtration rate (GFR), modification of treatment with antiproteinuric drugs, and changes in concentration of SRL. Collection of data started 3 months before SRL introduction at a mean follow-up of 21 months. Following SRL introduction, proteinuria was not detected in the 28 liver transplant patients, and was stable in the two others. In the kidney transplant group, proteinuria did not occur in 12 patients, remained stable in three, and was slightly increased in 14 (0.57 +/- 0.93 g/d vs 1.83 +/- 1.26 g/d). For all patients, eGFR remained stable; there was no difference in management of antiproteinuric drugs. As suspected, cyclosporin (CsA) and tacrolimus (FK) serum concentrations were decreased. We observed a significant correlation between the variation of proteinuria and the variation of serum concentration of CsA or FK (respectively, P = .001 and P = .007). On the other hand, we did not find any correlation between variation in proteinuria and concentration of SRL. This retrospective study suggests that in our cohort of liver transplant patients without previous renal damage, SRL did not provoke proteinuria. On the other hand, the slight aggravation of proteinuria in a subgroup of kidney transplant patients seems to be linked to the hemodynamic renal effects due to CNI withdrawal.

Colforsin↗