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Biomedical subjects

A B Cachelin

Publications and source records attributed to A B Cachelin.

14 recordsLinked to original sources

Comparison of two formulations of cyclosporin A in the treatment of severe atopic dermatitis. Aa double-blind, single-centre, cross-over pilot study.

BACKGROUND: Cyclosporin A (CsA) has been shown to be highly effective in the therapy of atopic dermatitis (AD). However, little information exists on the treatment of AD patients with Sandimmun Neoral(R) (Neoral), a microemulsion of CsA with improved pharmacokinetic properties in comparison to Sandimmun(R). OBJECTIVE: We have compared the efficacy and tolerability of Sandimmun and Neoral. METHODS: In a randomised, monocentric, double-blind, cross-over pilot study (n = 14), each formulation was administered for 8 weeks, followed by switching to the other treatment group for another 8 weeks. RESULTS: After 2 weeks of therapy, the improvement under Neoral therapy was significantly higher than with Sandimmun (disease activity p = 0.047; extent of disease p = 0.016). In contrast, after 8 weeks of therapy, both formulations yielded similar improvement in the patients' condition. CONCLUSION: While both formulations are effective and well tolerated in the treatment of severe AD, Neoral may have a faster onset of action and higher initial efficacy, which makes it an adequate replacement for Sandimmun.

Adult↗

Beta-subunits co-determine the sensitivity of rat neuronal nicotinic receptors to antagonists.

We have investigated the effect of 4 ganglionic cholinergic antagonists (hexamethonium, mecamylamine, pentolinium, trimetaphan) on rat alpha 3 beta 2 and alpha 3 beta 4 neuronal nicotinic acetylcholine receptors (nAChRs) expressed in Xenopus oocytes. Current responses were elicited by fast application of acetylcholine on voltage-clamped oocytes (holding potentialVh = -80mV). Concentration-inhibition curves were used to get estimates of IC50, the antagonist concentration yielding 50% reduction of the peak current. The KB's of the antagonists were calculated using estimates of the apparent KD of acetylcholine. The order of affinity of the antagonists was similar for both receptor subtypes: mecamylamine approximately pentolinium > hexamethonium > trimetaphan. However, alpha 3 beta 4 neuronal nAChRs were 9 to 22 times more sensitive to each of the 4 antagonists than alpha 3 beta 2 receptors. These results further underline the importance of the beta-subunit as co-determinant of the functional properties of neuronal nAChRs.

Animals↗

Expression of neuronal nicotinic acetylcholine receptor subunit genes in the rat autonomic nervous system.

In the autonomic nervous system efferent signals are relayed in sympathetic and parasympathetic ganglia. Fast synaptic transmission between pre- and postsynaptic neurons is achieved by neuronal nicotinic acetylcholine receptors (nAChRs). There is still little known about the subunit composition of these receptors. Establishing the subunit composition of native neuronal nAChRs is important for the understanding of their functional properties both in vivo and after expression in heterologous expression systems. We have combined in situ hybridization and autoradiography to detect the presence of mRNAs encoding subunits of neuronal nAChRs in sympathetic and parasympathetic ganglia. Inspection of the autoradiographs showed that the hybridization signal of five riboprobes (alpha 3, alpha 4-1, alpha 7, beta 2 and beta 4) was significantly higher than the unspecific signal obtained with sense riboprobes. The distribution of alpha 7 was tissue-dependent: alpha 7 riboprobe binding was detected in the neurons of the superior cervical ganglion, adrenal medulla and ciliary ganglion. In contrast, the alpha 7 hybridization signal was found only in a small fraction (1-3%) of the neurons of the sphenopalatine and otic ganglia. Our results are consistent with the idea that alpha 3 mRNA expression levels are somewhat higher than those of alpha 7, alpha 4-1, beta 2 and beta 4.

Animals↗

Unusual pharmacology of (+)-tubocurarine with rat neuronal nicotinic acetylcholine receptors containing beta 4 subunits.

We have investigated the functional properties of four rat neuronal nicotinic acetylcholine receptor types expressed in Xenopus oocytes after injection of pairwise combinations of mRNA encoding alpha 2 or alpha 3 receptor subunits with mRNA encoding beta 2 or beta 4 receptor subunits. Current responses evoked by rapid application of cholinergic agonists (acetylcholine, nicotine, or 1,1-dimethyl-4-phenylpiperazinium) were recorded from voltage-clamped oocytes. Substituting BaCl2 for CaCl2 in the external solution increased the apparent Kd values of beta 4 subunit-containing receptors for acetylcholine but decreased the apparent Kd values of beta 2 subunit-containing receptors. Inhibition curves for the cholinergic antagonist (+)-tubocurarine were measured in BaCl2 medium at low agonist concentrations. (+)-Tubocurarine was a competitive antagonist of acetylcholine at neuronal nicotinic acetylcholine receptors that coexpressed the beta 2 subunit; the estimated Kb values were 3.6 microM (alpha 2 beta 2 receptors) and 390 nM (alpha 3 beta 2 receptors). In contrast, (+)-tubocurarine enhanced the peak responses evoked by low acetylcholine concentrations at alpha 2 beta 4 and alpha 3 beta 4 neuronal nicotinic acetylcholine receptors, without being a partial agonist. The maximal increase was observed at 5 microM and 10 microM (+)-tubocurarine for alpha 2 beta 4 and alpha 3 beta 4 receptors, respectively. Higher (+)-tubocurarine concentrations inhibited cholinergic responses, thus yielding a "bell-shaped" concentration-response curve.

Animals↗

Dexamethasone and 1,25-dihydroxyvitamin D3, but not cyclosporine A, inhibit production of granulocyte-macrophage colony-stimulating factor in human fibroblasts.

Tumor necrosis factor alpha (TNF alpha) stimulates granulocyte-macrophage colony-stimulating factor (GM-CSF) production in human fibroblasts and other mesenchymal cells. However, relatively little is known about agents that downregulate cytokine production in these cells. In the present report we show that dexamethasone (Dexa), a synthetic glucocorticoid, markedly reduced GM-CSF production in TNF alpha-stimulated fibroblasts at both the protein and the RNA levels. CSF activity, GM-CSF protein, and RNA levels, determined by an in vitro colony-forming assay in normal human bone marrow cells, by an enzyme immunoassay, and by Northern blotting assay, were reduced to greater than 90% of control values by Dexa (1 mumol/L). Similarly, 1,25-dihydroxyvitamin D3 [1,25(OH)2D3], a hormone with possible physiologic immunoregulatory significance, reduced GM-CSF expression in a concentration- and time-dependent manner. However, this repression was less pronounced than that of Dexa, and in part due to a decreased proliferative activity. In contrast, cyclosporine A (CsA), another immunosuppressive agent, did not alter GM-CSF expression in TNF alpha-stimulated fibroblasts. Our in vitro studies suggest that by inhibiting GM-CSF production in fibroblasts, glucocorticoids and possibly 1,25(OH)2D3, but not CsA, may attenuate TNF alpha-mediated inflammatory processes and influence the regulation of hematopoiesis.

Calcitriol↗

Beta subunits determine the time course of desensitization in rat alpha 3 neuronal nicotinic acetylcholine receptors.

Standard two-electrode voltage-clamp techniques were used to investigate some of the pharmacological and functional properties of two types of rat neuronal nicotinic acetylcholine receptors expressed in Xenopus oocytes after pairwise injection of alpha 3 beta 4 or alpha 3 beta 2 mRNAs. Currents of several microA amplitude were elicited by fast application of micromolar concentrations of either acetylcholine (ACh) or 1,1-dimethyl-4-piperazine (DMPP). The activation of either receptor type by DMPP showed cooperativity (Hill coefficient, n greater than or equal to 1.7) with a half-maximal activation concentration (EC50) of 15-30 microM. In alpha 3 beta 4 receptors, ACh displayed cooperativity (n = 1.8) but was less efficacious than DMPP, yet its EC50 was about equal to that of DMPP. Finally, in alpha 3 beta 2 receptors, ACh was much less efficacious and had a much lower EC50. Desensitization induced by either DMPP or ACh was slow in alpha 3 beta 4 nicotinic ACh receptors but was rapid and extensive in alpha 3 beta 2 receptors, causing a significant proportion of the response to wane within the first few seconds of agonist application.

Acetylcholine↗

Changes in the conductance of the neuronal nicotinic acetylcholine receptor channel induced by magnesium.

We have investigated the effect of magnesium on the single-channel conductance of neuronal nicotinic acetylcholine receptors (nAChRs) in nerve growth-factor treated rat pheochromocytoma (PC12) cells. The patch-clamp technique was used to record single-channel currents from cell attached and excised, outside-out patches in the presence of various internal and external Mg2+ concentrations. Mg2+ reduced the single-channel conductance in a concentration-dependent manner with an IC50 of 9.2 mM for external Mg2+ (inward conductance) and 0.69 mM for external Mg2+ (outward conductance). Both estimated and measured conductances for divalent cation-free CsCl solutions were around 60 pS. We also find that divalent cations are not involved in the inward rectification of whole-cell ACh-induced currents in these cells. Our results imply that the amino acids screened by divalent cations sense electric fields only weakly and are presumably outside the lipid bilayer. They also suggest that the density and the number of charges (or both) differ on either side of the ion pore.

Acetylcholine↗

Desensitization of the acetylcholine receptor of frog end-plates measured in a Vaseline-gap voltage clamp.

1. Desensitization of the nicotinic acetylcholine receptor of the frog end-plate was investigated in dissociated frog muscle fibres using the Vaseline-gap clamp method so that a wide range of well-defined agonist concentrations could be used without having to use alpha-bungarotoxin to reduce currents, and so that the intracellular medium could be controlled. 2. Acetylcholine (ACh) concentrations between 1 and 1000 microM were used, after inactivation of acetylcholinesterase. The intracellular calcium concentration was usually kept near zero by using 80 mM-K2EGTA as the intracellular solution. 3. When using the low intracellular calcium solution, desensitization proceeded as a biphasic process with estimates of fast and slow time constants of about 8 and 80 s at 4 degrees C and 20 microM-ACh (the rates increased with concentration). In contrast, only one (fast) component of desensitization was detected when the intracellular calcium concentration was allowed to increase during ACh application. 4. Despite rapid application of ACh the time to peak response was 0.2 s (with 400 microM-ACh) to 2 s (with 1 microM-ACh); this slow rise was shown to result from diffusion delays. Nevertheless the peak current with 200 microM-ACh corresponded to opening of most of the channels present, so there is probably not much desensitization in the millisecond time range. 5. Both fast and slow time constants for onset of desensitization showed only slight dependence on membrane potential when [Ca2+]i was buffered with 80 mM-K2EGTA. 6. Increasing the intracellular cyclic AMP concentration directly, or indirectly with forskolin and IBMX, had no effect on the time course of desensitization. 7. Intracellular application of submicromolar concentrations of phorbol-12,13-dibutyrate (PDBu) and phorbol-12-myristate-13-acetate (PMA) yielded a small but reproducible reduction of the peak response to ACh. The time course of desensitization was, however, not modified by these substances. 8. The implications of these observations for the mechanism of desensitization, and their relationship to single-channel observations, are discussed.

Acetylcholine↗

Monomeric and dimeric IgG1 as probes for assessing high-affinity and low-affinity receptors for IgG on human monocyte-derived macrophages and on activated macrophages.

From a panel of IgG1 myeloma proteins, only one was found to interact with human monocyte FcR in a manner similar to that of polyclonal IgG. This protein was used in binding studies involving human macrophage Fc receptors. A monomeric fraction depleted of dimeric and polymeric IgG1 was crosslinked with bis-diazonium benzidine, and a fraction highly enriched in cross linked IgG1 dimers was radiolabeled. Labeled monomeric and dimeric IgG were allowed to interact with monocytes that had matured to macrophages in vitro. The association with macrophages at 4 degrees C, in the presence of cytochalasin B, reached a plateau after 6 hr. The dissociation induced by excess unlabeled IgG followed similar kinetics as the association, but 20-30% of the bound IgG could not be dissociated. Under equilibrium conditions, evidence for a single FcR population binding monomeric IgG was obtained, the Kd being in the range of 12-42 nM. In contrast, the binding of dimeric IgG was more consistent with a model assuming two populations of binding sites when appropriate curve-fitting calculations were applied. The high-affinity FcR population had a Kd in the range of 0.8-3.5 nM, whereas the Kd of the low-affinity FcR population was in the range of 28-85 nM. When macrophages had been pre-treated with recombinant interferon-gamma, the expression of high-affinity sites was increased by a factor of 1.5-3, but the number of low-affinity sites was not augmented. Cytofluorographic analyses confirmed the increased expression of high-affinity FcR, binding fluoresceinating murine IgG2a. The expression of CD16, a low-affinity FcR expressed on neutrophils, NK cells and macrophages, as well as the expression of the complement receptor type III was little influenced by the rIFN-gamma pretreatment.

Antibody Affinity↗

Sodium channels in cultured cardiac cells.

Primary cardiac cell cultures were prepared from the hearts of neonatal rats. The patch-clamp method (Hamill, Marty, Neher, Sakmann & Sigworth, 1981) was applied for studying whole-cell Na+ currents and single-channel Na+ currents, respectively. Whole-cell recordings yielded voltage- and time-dependent Na+ currents which could be blocked by tetrodotoxin. Single-channel Na+ currents were directly compared in cell-attached patches and in inside-out patches. In cell-attached patches the elementary current was about -1 pA at -10 mV and the slope conductance over a 50 mV voltage range was 15.1 +/- 1.6 pS (mean +/- S.D.). Inactivation during depolarization and after conditioning clamp steps, in the steady state, resulted from a reduced opening probability of Na+ channels. In inside-out patches, with identical solutions at both membrane surfaces, there was a large (40-50 mV) shift of channel opening and inactivation kinetics towards more negative potentials. However, for levels of comparable opening probabilities, mean open times of Na+ channels were similar in cell-attached and inside-out patches. Tetrodotoxin (10-20 microM) had no effect on Na+ channels when applied from the inside, but blocked them completely after application to the outside membrane surface.

Action Potentials↗

Ca2+ -activated K+ conductance in internally perfused snail neurons is enhanced by protein phosphorylation.

Depolarizing voltage steps induce inward and outward currents in voltage-clamped, internally perfused neurons from the snail Helix roseneri. Addition of the catalytic subunit of cyclic AMP-dependent protein kinase (ATP:protein phosphotransferase, EC 2.7.1.37) to the internal perfusing medium results in an increase in the net outward current, with no apparent effect on the inward current. Catalytic subunit inactivated by 5,5'-dithiobis(2-nitrobenzoic acid) is without effect, indicating that the increase in net outward current results from protein phosphorylation rather than an unspecific effect of protein perfusion. Decreasing the external Ca2+ concentration from 10 to 1 mM eliminates the effect of catalytic subunit, suggesting that Ca2+ plays an important role in this response. This suggestion is supported by the fact that the stimulation by catalytic subunit can be mimicked by increasing the Ca2+ concentration in the internal perfusion medium and can be prevented by intracellular perfusion with 10 mM EGTA. The results are consistent with the hypothesis that cyclic AMP-dependent protein phosphorylation regulates the Ca2+-activated K+ conductance in these cells.

Action Potentials↗

Ca2+ channel modulation by 8-bromocyclic AMP in cultured heart cells.

Modulation of ion channels is of increasing interest as it is an important step in the regulation of cellular functions. We have analysed the effect of 8-bromocyclic AMP on Ca2+ channels in cultured cardiac cells by the patch-clamp method and report here that there was a large increase in the probability of opening of the channels. On the basis of a recently proposed kinetic reaction scheme we suggest that cyclic AMP-dependent phosphorylation of Ca2+ channels primarily promotes the forward rate constants which lead to the open state of a Ca2+ channel during depolarization.

8-Bromo Cyclic Adenosine Monophosphate↗