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H Stegemann

Publications and source records attributed to H Stegemann.

At least 19 recordsLinked to original sources

Natriuretic peptides and diadenosine polyphosphates modulate pH regulation of rat mesangial cells.

Modulation of cell proliferation has often been thought to be connected to changes in the activity of pH-regulatory transporters and consequently intracellular pH (pH(i)). The influence of natriuretic peptides, diadenosine polyphosphates, adenosine and ATP as well as platelet-derived growth factor (PDGF) on pH(i) regulation of cultured rat mesangial cells was examined with the pH-sensitive dye 2',7'-bis(2-carboxyethyl)-5(6)-carboxyfluorescein. The inhibitors of Na(+)/H(+) exchange, amiloride and HOE694, blocked pH(i) recovery completely in the absence of and by approximately 50% in the presence of HCO(3)(-)/CO(2). Natriuretic peptides (ANP, BNP, CNP, urodilatin) completely inhibited pH(i) recovery in the absence of and by approximately 40% in the presence of HCO(3)(-)/CO(2). These effects were abolished by the cGMP-dependent protein kinase inhibitor KT5823. Diadenosine polyphosphates (Ap3A-Ap6A), ATP and adenosine also inhibited pH(i) recovery completely in the absence of and partially (30-40%) in the presence of HCO(3)(-)/ CO(2). The effect of adenosine was abolished in the presence of the cAMP-dependent protein kinase inhibitor KT5720, and that of Ap5A by the protein kinase C inhibitor calphostin C. PDGF activated acid extrusion in these cells by approximately 40%. From the four cloned isoforms of the Na(+)/H(+) exchanger in the rat, only transcripts of NHE-1 were found in these mesangial cell cultures using RT-PCR analysis. These data suggest that in these rat mesangial cells the Na(+)/H(+) exchanger, specifically the NHE-1 isoform, accounts for around 50% of pH(i) recovery from an acid load under physiological conditions, and that Na(+)/H(+) exchange stimulated by acidification can be inhibited by activation of PKG, PKA, and PKC and stimulated by PDGF after acute exposition to these agonists.

Adenine Nucleotides↗

Effects of diadenosine polyphosphates on the intracellular Ca2+ concentration in endothelial cells.

Diadenosine polyphosphates have differential hemodynamic effects. The role of the endothelium in the vascular effects of these agonists is still unclear. Primary cultures of rat aortal endothelial cells and Ea.hy 926 cells (a continuous endothelial cell line) were used to investigate the effects of Ap3A-Ap6A, adenosine triphosphate (ATP), and for comparison, arginine vasopressin (AVP) and angiotensin II (A II) on the intracellular Ca2+ concentration, [Ca2+]i. Fura-2 was used as Ca2+ indicator. In rat aortal endothelial cells, ATP and Ap4A concentration dependently increased [Ca2+]i with an initial peak followed by an elevated plateau. The half-maximal effects were reached at approximately 7 micromol/l for ATP and at approximately 10 micromol/l for Ap4A. The maximal peak effects at 100 micromol/l were 1,035 +/- 413 nmol/l (n = 3) and 437 +/- 271 nmol/l (n = 8) for ATP and Ap4A, respectively. At 100 micromol/l Ap3A and Ap6A slightly increased [Ca2+]i, while Ap5A had no significant effect. The known endothelial agonists AVP (100 nmol/l) and A II (10 nmol/l) increased [Ca2+]i initially by 1,549 +/- 913 nmol/l (n = 7) and 209 +/- 45 nmol/l (n = 9), respectively. In Ea.hy 926 cells an increase in [Ca2+]i was obtained only with ATP (10 micromol/l) and with Ap4A (100 micromol/l). Ap3A, Ap5A, and Ap6A (each 100 micromol/l) and also AVP (100 nmol/l) and A II (10 nmol/l) had no significant effects in these cells. These results show that a considerable increase in [Ca2+]i in endothelial cells can only be induced by Ap4A among the diadenosine polyphosphates, indicating that the vasoactive effects of only this polyphosphate could at least partly be mediated via Ca2+-dependent mechanisms in endothelial cells, comparable to the known effects of AVP, A II, and ATP. The fact that A II and AVP did not influence [Ca2+]i in Ea.hy 926 cells is probably due to the loss of the respective receptors in this cell line.

Adenosine Triphosphate↗

Rapid method of extraction of antibodies from hen egg yolk.

Antibodies were raised in laying hens and isolated from the yolk of their eggs by precipitation with precooled (-20 degrees C) propane-2-ol and removing lipid material with propane-2-ol and acetone. The dried precipitate was extracted with phosphate buffer and shown to contain IgG antibodies and a small amount of additional protein. By Ouchterlony gel diffusion and rocket immunoelectrophoresis, the concentration and quality of specific antibodies in the extracts were comparable to those found in the serum of rabbits or to the IgG separated from yolk by other methods. The new isolation procedure is rapid, reliable and convenient.

Animals↗