l-683590 has been researched along with Disease-Models--Animal* in 3 studies
3 other study(ies) available for l-683590 and Disease-Models--Animal
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Regionally specific expression of high-voltage-activated calcium channels in thalamic nuclei of epileptic and non-epileptic rats.
The polygenic origin of generalized absence epilepsy results in dysfunction of ion channels that allows the switch from physiological asynchronous to pathophysiological highly synchronous network activity. Evidence from rat and mouse models of absence epilepsy indicates that altered Ca(2+) channel activity contributes to cellular and network alterations that lead to seizure activity. Under physiological circumstances, high voltage-activated (HVA) Ca(2+) channels are important in determining the thalamic firing profile. Here, we investigated a possible contribution of HVA channels to the epileptic phenotype using a rodent genetic model of absence epilepsy. In this study, HVA Ca(2+) currents were recorded from neurons of three different thalamic nuclei that are involved in both sensory signal transmission and rhythmic-synchronized activity during epileptic spike-and-wave discharges (SWD), namely the dorsal part of the lateral geniculate nucleus (dLGN), the ventrobasal thalamic complex (VB) and the reticular thalamic nucleus (NRT) of epileptic Wistar Albino Glaxo rats from Rijswijk (WAG/Rij) and non-epileptic August Copenhagen Irish (ACI) rats. HVA Ca(2+) current densities in dLGN neurons were significantly increased in epileptic rats compared with non-epileptic controls while other thalamic regions revealed no differences between the strains. Application of specific channel blockers revealed that the increased current was carried by L-type Ca(2+) channels. Electrophysiological evidence of increased L-type current correlated with up-regulated mRNA and protein expression of a particular L-type channel, namely Cav1.3, in dLGN of epileptic rats. No significant changes were found for other HVA Ca(2+) channels. Moreover, pharmacological inactivation of L-type Ca(2+) channels results in altered firing profiles of thalamocortical relay (TC) neurons from non-epileptic rather than from epileptic rats. While HVA Ca(2+) channels influence tonic and burst firing in ACI and WAG/Rij differently, it is discussed that increased Cav1.3 expression may indirectly contribute to increased robustness of burst firing and thereby the epileptic phenotype of absence epilepsy. Topics: Adrenergic beta-2 Receptor Agonists; Albuterol; Animals; Animals, Newborn; Biophysical Phenomena; Calcium Channel Blockers; Calcium Channels; Disease Models, Animal; Electric Stimulation; Epilepsy; Immunosuppressive Agents; Membrane Potentials; Mutation Rate; Nerve Tissue Proteins; Neurons; Rats; Rats, Wistar; Salmeterol Xinafoate; Tacrolimus; Thalamic Nuclei; Up-Regulation | 2014 |
A macrolactam inhibitor of T helper type 1 and T helper type 2 cytokine biosynthesis for topical treatment of inflammatory skin diseases.
T lymphocytes play a critical part in inflammatory skin diseases but are targeted by available therapies that have only partial efficacy, significant side-effects, or both. Because psoriasis, atopic dermatitis, and allergic contact hypersensitivity are associated with T helper type 1 (Th1), T helper type 2 (Th2), or mixed Th1-Th2 cell subsets and cytokine types, respectively, there is a need for a better broad-based inhibitor. The macrolactam ascomycin analog, ABT-281, was found to inhibit potently T cell function across species and to inhibit expression of multiple cytokines in human peripheral blood leukocytes which have been found in human skin disease cells and tissues. These included immunoregulatory Th1 (interleukin-2 and interferon-gamma) and Th2 (interleukin-4 and interleukin-5) cytokines. ABT-281 was shown to have potent topical activity (ED50 = 0.6% in acetone/olive oil) in a stringent swine model of allergic contact hypersensitivity, but its potency was markedly reduced compared with ascomycin when administered systemically due to more rapid clearance. Topical application of 3% ABT-281 in acetone/olive oil over 25% of the body surface in swine resulted in undetectable blood levels. Compared with a wide potency range of topical corticosteroids in clinical formulations, 0.3% and 1% ABT-281 ointments profoundly inhibited dinitrochlorobenzene-induced contact hypersensitivity in the pig by 78% and 90%, respectively, whereas super-potent steroids such as clobetasol propionate only inhibited in the 50% range and mild to moderate potency steroids such as fluocinolone acetonide were inactive. The potent topical activity of ABT-281 in swine, its superior efficacy, its rapid systemic clearance following uptake into the bloodstream, and its ability to inhibit cytokine biosynthesis of both Th1 and Th2 cell subsets, suggests that it will have a broad therapeutic value in inflammatory skin diseases, including psoriasis, atopic dermatitis, and allergic contact dermatitis. Topics: Administration, Topical; Animals; Anti-Inflammatory Agents; Cell Division; Cytokines; Dermatitis, Contact; Disease Models, Animal; Dose-Response Relationship, Drug; Drug Administration Routes; Drug Evaluation, Preclinical; Female; Guinea Pigs; Humans; Lactams; Male; Mice; Rats; Swine; Tacrolimus; Th1 Cells; Th2 Cells | 1999 |
Attenuation of epithelial injury in acute experimental colitis by immunomodulators.
Intestinal epithelial permeability can be modulated by the immune system and can be greatly increased by transepithelial migration of neutrophils. Since immunosuppressants have been reported to inhibit the ability of neutrophils to migrate, we assessed the effects of two immunosuppressants on epithelial permeability and granulocyte infiltration in a model of acute colitis. Epithelial permeability was measured at 3 and 6 h after induction of colitis in the rabbit by intracolonic administration of trinitrobenzene sulfonic acid. At these times, blood-to-lumen leakage of 51Cr-EDTA was elevated by approximately 8- and 18-fold, respectively, above levels observed in healthy controls. Pretreatment with either of the immunosuppressants (cyclosporin A and L-683,590) significantly reduced the changes in 51Cr-EDTA leakage observed at the latter time point. These drugs also significantly attenuated granulocyte infiltration of the colon after induction of colitis, as measured by tissue myeloperoxidase activity. Unlike the immunosuppressants, misoprostol, a prostaglandin analogue, attenuated the increases in colonic permeability but had no effect on granulocyte infiltration in this model. These results demonstrate that two structurally unrelated immunosuppressants are capable of markedly reducing neutrophil infiltration and the colonic permeability changes observed in an experimental model of acute colitis, although the mechanisms through which these effects are produced remain unclear. Topics: Animals; Colitis; Colon; Cyclosporine; Disease Models, Animal; Epithelium; Immunosuppressive Agents; Male; Misoprostol; Neutrophils; Permeability; Peroxidase; Rabbits; Tacrolimus; Trinitrobenzenesulfonic Acid | 1993 |