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Biomedical subjects

M Wehling

Publications and source records attributed to M Wehling.

At least 19 recordsLinked to original sources

Nongenomic effects of aldosterone on human renal cells.

The development of chronic renal insufficiency may be partially mediated by the nongenomic action of aldosterone. Here we investigate whether aldosterone could evoke a nongenomic action in primary cultures of human renal cells. Intracellular Ca(2+) ([Ca(2+)](i)) and cAMP were measured in human mesangial cells (MC), glomerular visceral epithelial cells (GVEC), and proximal and distal tubular epithelial cells (Ptec and Dtec) in the presence of aldosterone (10-100 nmol/liter) by fura-2 fluorescence and RIA, respectively. In MC, Ptec, and Dtec, aldosterone increased [Ca(2+)](i) within 1 min, whereas in GVEC, only a minor effect was found. Preincubation of cells with spironolactone did not blunt this effect. Hydrocortisone, used at a concentration 100-fold higher than that of aldosterone, did not affect [Ca(2+)](i.) In MC, Ptec, and Dtec, a dose-dependent increase ( approximately 1.3- to 1.5-fold) in intracellular cAMP levels was found. These data demonstrate a nongenomic action of aldosterone in human MC, Ptec, and Dtec. As these effects occur at concentrations close to free plasma aldosterone levels in man, they may be of physiological relevance and may contribute to renal injury.

Aldosterone↗

[Questionable group concept. How interchangeable are so-called analog drug preparations?].

Medical drugs are usually grouped together because they exhibit identical or similar chemical and pharmacological properties. Thus, for example, all known statins lower morbidity and mortality in coronary patients. In the meantime, three beta blockers have been shown to have a life-prolonging effect in mild-to-moderate cardiac insufficiency. The question is: to what extent are the preparations interchangeable? The beta blockers in particular manifest numerous other properties--such as beta 1 selectivity, vasodilatory or antioxidative actions which, under certain circumstances may even be decisive for the success or failure of treatment. The mortality-lowering effect of high-dose ACE inhibitors in patients with a high cardiovascular risk has to date, been shown only for a single preparation. For others, the high dose (effect) has yet to be confirmed. Also, with every new substance, a new side effect profile is introduced, which may result from the tiniest alteration to the active agent molecule, but also by a different preparation method. In consequence, unexpected effects, such as allergic reactions, may occur. This not only makes the grouping of similar substances, but also the interchange of "me-too" or generic preparations, problematic.

Adrenergic beta-Antagonists↗

Lipid-lowering medication for secondary prevention of coronary heart disease in a German outpatient population: the gap between treatment guidelines and real life treatment patterns.

BACKGROUND: Few published data in particular from the United States indicate that the implementation of guidelines for prevention of coronary heart disease (CHD) is far from optimal. The objective of our study was to identify the type and prevalence of lipid-lowering medications in a German outpatient CHD population and to examine the impact of applied treatment regimens on serum lipid levels. METHODS: Retrospective analysis of the washout phase of 2,856 CHD patients requiring lipid-lowering medication. Data are derived from a multicenter, randomized, open-label, parallel group clinical trial comparing the safety and efficacy of atorvastatin versus simvastatin in 591 centers in Germany. Medical history, physical examination, and serum lipid levels were obtained at the beginning of the washout phase (Week -6) and at the end of the washout phase (Week -1, i.e., 5 weeks after the discontinuation of all prior lipid-lowering medications). The data at Week -6 represented the lipid levels under real life conditions. The difference from the data at Week -1 reflected the therapeutic effects achieved by the previous lipid-lowering treatment. RESULTS: The mean low-density lipoprotein cholesterol (LDL-C) level at Week -6 was 173.4 +/- 42.5 mg/dl. Only 176 (6.2%) of 2,856 CHD patients were found to meet the target LDL-C level of <115 mg/dl at Week -6, only 76 (2.7%) patients had LDL-C levels <100 mg/dl, and 363 (12.7%) patients had LDL-C levels <130 mg/dl. After discontinuation of all prior lipid-lowering medications, mean LDL-C increased to 187.2 +/- 44.0 mg. This means that only a marginal 7.4% reduction in LDL-C level was achieved under real life treatment conditions. This limited LDL-C reduction was due mainly to the low prevalence of lipid-lowering treatment (65.5% of patients did not receive any medication at all) and inadequate dosing. With respect to the effect on LDL-C and total cholesterol, statins alone were superior to fibrates. CONCLUSION: The study shows that there is a wide gap between treatment guidelines and real life treatment patterns in Germany. Awareness of the risks of high cholesterol levels has to be increased among both patients and physicians. Available treatment guidelines should be better implemented.

Adult↗

Comparison of the mechanisms of nongenomic actions of thyroid hormone and steroid hormones.

Steroids and thyroid hormone are thought primarily to act via binding to hormone-specific nuclear receptor superfamily members. The nuclear ligand-receptor complexes then initiate transcriptional activity. Actions of steroids and iodothyronines that are nongenomic or extranuclear in mechanism have been recognized recently and new insights into such mechanisms are available. Despite their distinct structures and biologic effects, the two families of hormones have similarities in the mechanisms of their nongenomic actions. That is, both steroids and thyroid hormone appear to interact with specific cell surface G protein-coupled receptors and to activate signal transducing kinases such as those involved in the mitogen-activated protein kinase (MAPK) pathway. Much is known about the ability of certain steroids such as estrogen and mineralocorticoids to increase [Ca2+]i acutely and stimulation of the MAPK cascade by L-T4 appears to depend upon a hormone-induced increase in [Ca2+]i via phosphoinositide pathway activation. At least in the case of iodothyronines, hormone activation of the MAPK pathway modulates the cellular activities of certain cytokines and growth factors. One of the two cell surface estrogen receptors (ERs) may be an expression of the same transcript as that for nuclear ER, whereas the mineralocorticoid and progesterone-binding proteins in the plasma membrane appear to be products of genes different from those of nuclear receptors. Iodothyronine structure-activity relationships at the plasma membrane binding site for thyroid hormone suggest that the cell surface receptor for T4 that also binds 3,5,3'-triiodo-L-T3 is different from the nuclear T3 receptor (TR). There are interfaces of nongenomic and genomic mechanisms for both steroids and thyroid hormone. For example, by nongenomic mechanisms, estrogen and thyroid hormone can promote serine phosphorylation, respectively, of nuclear ER and TR. Transcriptional activity of the nuclear receptor proteins can be altered by such phosphorylation.

Animals↗

Alterations in platelet function during the ovarian cycle.

Steroid hormones may profoundly influence hemostasis; for example, as discussed for hormone replacement therapy, pregnancy and, being less obvious, for the ovarian cycle. We investigated primary hemostasis parameters using a platelet function analyzer (PFA-100) during the follicular and luteal phases in 18 healthy young women without oral contraceptives. During the follicular phase, the mean closure time (CT) was 164.7 +/- 56.7 s, and it decreased to 130.2 +/- 30.6 s in collagen/epinephrine cartridges in the luteal phase (P = 0.0095). No significant difference could be found for CT values in collagen/adenosine diphosphate cartridges during the follicular phase as compared with the luteal phase (97.2 +/- 24.2 s versus 89.6 +/- 18.4 s, P = 0.174). Negative correlations between the CT values in collagen/epinephrine cartridges and von Willebrand factor from both phases of the cycle were found (follicular phase: r = -0.53; luteal phase: r = -0.54). Fibrinogen and fibrinogen degradation products were significantly increased in the luteal phase (2.49 +/- 0.62 g/l versus 2.05 +/- 0.59 g/l and 0.12 +/- 014 versus 0.04 +/- 0.04, P = 0.02 for both parameters) as compared with the follicular phase. No significant differences could be detected for plasminogen, plasmin-antiplasmin complex, prothrombin fragment 1 + 2 and D-dimer between the groups. This study indicates that platelet function is periodically altered during the ovarian cycle due to the influence of progesterone and estrogen on von Willebrand factor concentrations.

Adult↗

Seminal plasma hormone concentration after oral application of progesterone.

Previous studies have revealed beneficial in vitro effects of progesterone on sperm function. The aim of this pilot study was to prove if orally given micronized progesterone leads to elevations in progesterone and/or 17alpha-hydroxyprogesterone levels in seminal plasma, since higher seminal plasma levels of these hormones could possibly have a beneficial effect on sperm function as seen in in vitro investigations. Multiple application of micronized progesterone given over 4 days (daily dose 400 mg) to 6 healthy subjects resulted in elevated seminal plasma levels of progesterone (10.90 +/- 9.02 nmol/l vs. 1.43 +/- 0.56 nmol/l, p = 0.04) and 17alpha-hydroxyprogesterone (3.09 +/- 1.72 nmol/l vs. 1.62 +/- 1.26 nmol/l, p = 0.04) whereas no significant difference could be found in testosterone levels (34.82 +/- 13.00 vs. 30.91 +/- 8.56 nmol/l, p = 0.43). In contrast, androstendione levels in seminal plasma were reduced (2.68 1.28 nmol/l vs. 3.65 +/- 1.36 nmol/l, p = 0.01). Although micronized progesterone is rapidly metabolized, oral application resulted in pronounced elevations of progesterone and 17alpha-hydroxyprogesterone in seminal plasma. Further studies will show if oral application of micronized progesterone can induce beneficial effects on sperm function such as those seen in in vitro investigations.

17-alpha-Hydroxyprogesterone↗

[Drug therapy in the old age. Drug effects in the elderly].

The frequency of multimorbidity in elderly patients may mislead the physician into practicing polypragmasy (polypharmacy), resulting in unpredictable drug interactions. Such interactions are a quite common cause of hospitalization in geriatric patients. Pharmacokinetics are often altered in the aged, and individualized medication should take into consideration not only the patient's age, liver and kidney function, but also the individual variability of hepatic metabolism and drug absorption from the gastrointestinal tract dictated by genetic polymorphism. Drug treatment in the elderly should always be carefully assessed as to its risks and benefits, and, where indicated, certain medications should be replaced by or omitted.

Age Factors↗

A nitric oxide synthase transgene ameliorates muscular dystrophy in mdx mice.

Dystrophin-deficient muscles experience large reductions in expression of nitric oxide synthase (NOS), which suggests that NO deficiency may influence the dystrophic pathology. Because NO can function as an antiinflammatory and cytoprotective molecule, we propose that the loss of NOS from dystrophic muscle exacerbates muscle inflammation and fiber damage by inflammatory cells. Analysis of transgenic mdx mice that were null mutants for dystrophin, but expressed normal levels of NO in muscle, showed that the normalization of NO production caused large reductions in macrophage concentrations in the mdx muscle. Expression of the NOS transgene in mdx muscle also prevented the majority of muscle membrane injury that is detectable in vivo, and resulted in large decreases in serum creatine kinase concentrations. Furthermore, our data show that mdx muscle macrophages are cytolytic at concentrations that occur in dystrophic, NOS-deficient muscle, but are not cytolytic at concentrations that occur in dystrophic mice that express the NOS transgene in muscle. Finally, our data show that antibody depletions of macrophages from mdx mice cause significant reductions in muscle membrane injury. Together, these findings indicate that macrophages promote injury of dystrophin-deficient muscle, and the loss of normal levels of NO production by dystrophic muscle exacerbates inflammation and membrane injury in muscular dystrophy.

Animals↗

Hypoxia modulates rapid effects of aldosterone on oxidative metabolism in human calf muscle.

Non-genomic effects of aldosterone on oxidative metabolism of skeletal muscle have been shown, recently. To further characterize these rapid effects on the increase of phosphocreatine (PCr) in the recovery period after isometric exercise, a randomized cross-over placebo-controlled study was conducted on 9 healthy volunteers. Hypoxia was chosen to test the dependence of the effect on oxygen supply and thus its relation to oxidative vs non-oxidative metabolism. Parameters related to the energy metabolism of calf muscles were measured by 31P magnetic resonance spectroscopy during four repetitive contractions in four different tests (hypoxia [FiO2=0.13] vs normoxia [FiO2=0.21], +/- 0.5 mg aldosterone). The area-under-curves of post-exercise PCr levels after the 4th contraction were significantly increased by aldosterone vs placebo during normoxia (875.5 +/- 5.1 vs 857.2 +/- 8.3%-min; p=0.02). In addition, aldosterone induced an undershoot of inorganic phosphate (Pi) in the recovery after isometric exercise (77.5 +/- 5.4 vs 88.9 +/- 5.1 mmol/l x min; p=0.05). Hypoxia blocked effects of aldosterone on PCr overshoot and Pi undershoot. Concentrations of ATP, ADP, phosphomonoesters, and intracellular pH were not affected by those interventions. In conclusion, these data demonstrate rapid actions of aldosterone on post-excercise PCr and Pi levels in human calf muscle, which are blocked by hypoxia. We hypothesize that aldosterone rapidly interferes with oxidative metabolism probably by direct modulation of ATP-turnover, which is induced by an oxygen-dependent imbalance of the ATP-synthesis and utilization rate.

Adult↗

Chemical modification and structural analysis of the progesterone membrane binding protein from porcine liver membranes.

In addition to the classical genomic steroid actions on modulation of transcription and protein synthesis, rapid, nongenomic effects have been described for various steroids. These effects on cellular signaling and function are supposed to be transmitted by membrane binding sites unrelated to the classical intracellular receptors. Recently, a high affinity progesterone membrane binding protein (mPR) has been characterized in porcine liver membranes. In the present study, amino acid residues that are essential for progesterone binding to porcine liver microsomal mPR have been identified by the use of protein modifying reagents. Among all reagents tested, agents with specificity for carboxyl groups, methionine and tryptophan such as N,N'-dicyclohexylcarbodiimide, chloramine T and N-bromosuccinimide induced a reduction in [3H]progesterone binding. To evaluate the presence of essential disulfide bridges, porcine liver microsomes were incubated with the disulfide reducing agent dithiothreitol (DTT) and [3H]progesterone binding was measured. This treatment also resulted in a reduction of binding activity with an IC50 of 20 mM for DTT. Western-blotting analysis in the presence or absence of the reducing agent suggested that mPR--in its binding state--consists of at least two identical subunits with an apparent molecular mass of 28 kDa which are linked by a disulfide bridge. In conclusion, in the present study evidence for an involvement of carboxyl-, tryptophan- and methionine residues in [3H]progesterone binding to porcine liver microsomes is given. In addition, it is shown that mPR can form disulfide-linked homodimers.

Animals↗

The phosphodiesterase 4 inhibitor roflumilast is effective in the treatment of allergic rhinitis.

BACKGROUND: The beneficial effects of phosphodiesterase 4 (PDE4) inhibitors in allergic asthma have been shown in previous preclinical and clinical studies. Because allergic rhinitis and asthma share several epidemiologic and pathophysiologic factors, PDE4 inhibitors might also be effective in allergic rhinitis. OBJECTIVE: The main objective of this study was to investigate the efficacy of oral roflumilast (500 microg/day) in allergic rhinitis. METHODS: In a randomized, placebo-controlled, double-blinded, crossover study, 25 subjects (16 male, 9 female; median age, 28 years) with histories of allergic rhinitis but asymptomatic at screening received roflumilast (500 microg once daily) and placebo for 9 days each with a washout period of at least 14 days in between treatment periods. In each of the treatment periods, controlled intranasal allergen provocation with pollen extracts was performed daily beginning the third day of treatment, each time approximately 2 hours after study drug administration. Five and 30 minutes after each allergen provocation, rhinal airflow was measured by means of anterior rhinomanometry and the subjective symptoms obstruction, itching, and rhinorrhea were assessed by means of a standardized visual analog scale. RESULTS: Rhinal airflow improved almost consistently during the 9 days of roflumilast treatment, and it was significantly higher at study day 9 on roflumilast in comparison with placebo, a result also found for itching and rhinorrhea. With respect to the subjective obstruction score, a significant difference in comparison with placebo could be demonstrated within 4 days. CONCLUSION: This study shows that a PDE4 inhibitor, roflumilast, effectively controls symptoms of allergic rhinitis. Thus PDE4 inhibitors might be a future treatment option not only in allergic asthma but also in allergic rhinitis or the combination of the 2 diseases.

3',5'-Cyclic-AMP Phosphodiesterases↗

Impact of plasmapheresis on platelet hemostatic capacity in healthy voluntary blood donors detected by the platelet function analyzer PFA-100.

Previous flow cytometry studies showed that platelet activation may occur during cytapheresis, cardiopulmonary bypass and hemodialysis. The aim of this pilot study was to determine if the impact of plasmapheresis leads to alterations in platelet hemostatic capacity. Plasmapheresis was carried out in 30 volunteers using an Autopherese C (Baxter) and an MCS3p (Haemonetics). Blood samples were collected and analyzed immediately before and after plasmapheresis. As a result of the plasmapheresis on the Autopherese C, the mean closure time (CT) for collagen/epinephrine (Col/Epi) increased from 118.2 +/- 25.1 to 149.9 +/- 35.0 s and from 88.7 +/- 16.9 to 98.5 +/- 26.3 s for collagen/ADP (Col/ADP), respectively. Seven subjects showed impaired CTs after plasmapheresis for Col/Epi. For Col/ADP, five subjects showed impaired CTs after apheresis. Statistical analysis (McNemar test) showed a significant difference before and after apheresis for Col/Epi (P = 0.024) but not for Col/ADP (P = 0.088). Similar results were shown for plasmapheresis carried out with the MCS3p. These findings show that plasmapheresis can cause an impairment of platelet function in healthy volunteers as measured by the PFA-100, an effect of so far unknown clinical significance.

Adult↗

Influence of aldosterone vs. endothelin receptor antagonism on renovascular function in liquorice-induced hypertension.

BACKGROUND: The enzyme 11beta-hydroxysteroid dehydrogenase type 2 (11beta-HSD2) provides mineralocorticoid receptor specificity for aldosterone by metabolizing glucocorticoids to their receptor inactive 11-dehydro derivatives. Inhibition of 11beta-HSD2 by liquorice-derived glycyrrhizic acid (GA) therefore results in sodium retention and hypertension. The present study investigated the effect of the aldosterone receptor antagonist spironolactone in comparison with the endothelin ET(A) receptor antagonist darusentan on renovascular endothelial function in liquorice-induced hypertension. METHODS: GA, a recognized inhibitor of 11beta-HSD2 was supplemented to the drinking water (3 g/l) of Wistar Kyoto rats over a period of 21 days. From day 8 to 21, spironolactone (5.8+/-0.6 mg/kg/day), darusentan (45.2+/-6.5 mg/kg/day), or placebo was added to chow (n=7 per group). After the animals were killed, vascular function of isolated renal artery segments was assessed by isometric tension recording. RESULTS: Relaxation of pre-constricted renal artery segments in response to acetylcholine (10(-10) to 10(-5) mol/l) was impaired by GA as compared with controls (12+/-4% vs 98+/-5% of norepinephrine 3x10(-7) mol/l), whereas endothelium independent relaxations were unaffected. Endothelin receptor antagonism improved renovascular endothelium-dependent relaxation (32+/-4%, P<0.05 vs placebo) whereas endothelium-dependent relaxation was completely normalized by aldosterone receptor antagonism (85+/-4%, P<0.01 vs placebo). CONCLUSIONS: In GA-induced hypertension, both aldosterone receptor antagonism and endothelin receptor antagonism normalize blood pressure and improve renovascular function and, thus, may represent a new therapeutic approach in cardiovascular disease associated with impaired 11beta-HSD2 activity.

Animals↗