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K Masek

Publications and source records attributed to K Masek.

188 records · Page 11Linked to original sources

Morphological and pharmacological evidence for the existence of brain regulatory circuits in the immune response.

Muramyl dipeptide (MDP) has a variety of biological effects including the effect on CNS, such a promotion of sleep, fever, analgesic effect or some behavioural changes and of course a very potent effect on immune system. The latter effect is at least partly mediated through the structure in CNS. With the small electrolytic lesions which were placed in brain from the spinal cord through the brain stem up to the cerebral cortex we have identified a number of structures such as medial frontal cortex (area Cg1-Cg3), subnucleus basomedialis and centralis of amygdala, subnucleus medialis and dorsolateralis of nucleus parabrachialis, lateral part of reticular formation (monoaminergic groups A1-7) and the part of the reticular formation (serotonergic groups B6-B8) which are evidently involved in the immunomodulatory and immunoadjuvant effect of muramyl dipeptide. The results of experiments also suggest that the interaction between neuroendocrine and immune systems might take place on the level of some of above mentioned anatomical structures.

Acetylmuramyl-Alanyl-Isoglutamine↗

Immunopharmacologic agents in the amelioration of hepatic injuries.

A number of immunomodulating agents of different origin have been shown to reduce liver injury of various etiologies. Immunostimulants like levamisole, BCG, a protein polysaccharide from myceria Coriolus vesicolor PS-K, a streptoccocal preparation OK-432 and immunomodulators like N-acetylmuramyl-L-alanyl-D-isoglutamine (MDP) and its analogs. Selective T-cell suppressors like the polypeptide cyclosporine A (CsA) and the macrolide FK 506 (tacrolimus) have also been claimed to possess hepatoprotrophic or hepatoprotective properties at low doses. The aim of this review article is to highlight the interplay between the administration of immunomodulating agents and the amelioration of hepatic injuries. Hepatic effects of exogenous immunomodulators are discussed with special focus on the most widely used immunosuppressive agents, CsA and tacrolimus. An important question exists as to whether these potential hepatoprotective effects are related mechanistically to the immune system or are working at different levels. Due to the differences in effects and modes of actions of various immunoactive substances presented herein, a common mechanism for their cytoprotective effects cannot be formulated at this stage. Levamisole and cyanidanol may protect cells against necrosis by acting as free radical scavengers. MDP and its analogs reduce carbon tetrachloride-elevated (CCl4) lipid peroxides and their protective effects are primarily on hepatic cytoplasmic membranes where lipid peroxidation and calcium homeostasis interact. MDP reduced CCl4-elevated calcium in both intact hepatocytes and in the post microsomal supernatant suggest that the influx of extracellular calcium across plasma membrane is affected. Elevations of intracellular calcium above a threshold are involved in: the stimulation of Ca2+-sensitive enzymes such as phospholipase A2, endonucleases and proteases, the conversion of xanthine dehydrogenase to xanthine oxidase and the formation of free radicals, all of which disturb biomembranes. MDP and its analogs, in a specific dose range, may act to maintain intracellular calcium within physiological ranges. Highly complex cellular signalling systems, including calcium, are involved in the explanation of the mechanism of the immunosuppressive effect of CsA and tacrolimus. The hepatoprotective effects of these selective immunosuppressive agents, however, are independent of the inhibition of T-cell activation. The cyclophilin and tacrolimus binding proteins of the mitochondria are the receptors for these compounds and play a key role in the regulation of mitochondrial permeability transition pores. CsA or tacrolimus inhibition of mitochondrial permeability transition pores does not require interaction with calcineurin, indicating a dissociation between immunosuppression and mitochondrial protection. The involvement of intracellular or intramitochondrial proteins in the modulation of mitochondrial permeability transition pores with the creation of a partially impermeable state for Ca2+ movement in drug-treated mitochondria and the dissociation of this effect from immunomodulatory actions potentially offers new and promising approaches for the development of new pharmacologicals targeted at therapeutic intervention. Clinical trials of these drugs as hepatoprotective agents are limited. Use of CsA in patients with primary biliary cirrhosis and autoimmune chronic hepatitis and in cirrhotic animal models produced by chronic administration of CCl4 have yielded encouraging results. It seems that this class of compounds may be of substantial benefit in liver protection against many pathological conditions where disturbance in mitochondrial function and in Ca2+ homeostasis appear to be prerequisites for cell injury.

Adjuvants, Immunologic↗

Brain regulatory system for the immune response: immunopharmacology and morphology.

On the basis of our previous investigations concerning the influence of some central nervous system structures on the immune reaction, we have shown the existence of a brain regulatory system for immune response (BRSIR). We have investigated this BRSIR using small electrolytic lesions placed in different brain areas of male rats, followed by two methods to evaluate the effect of the lesions on the immune response, the method of delayed skin hypersensitivity and the method of utilization of 3H-thymidine for synthesis of DNA after injection of muramyl dipeptide, a very potent immunostimulating compound. The experiments were performed on rats of the Wistar strain. Lesions were placed from the spinal cord through the brain stem to the cerebral cortex. The results suggest that the following structures constitute parts of the BRSIR: medial frontal cortex (areas Cg 1-3), subnucleus basomedialis and centralis of the amygdala, subnucleus medialis and dorsolateralis of the nucleus parabrachialis, lateral reticular formation (nucleus parvocellularis--mainly areas corresponding with aminergic groups A1-7), part of the raphe reticular formation (nucleus raphealis dorsalis and nucleus linearis--mainly areas corresponding with serotoninergic groups B6-8), and the spinal cord.

Amygdala↗

The amelioration of hepatocyte oxidative stress injury by nitric oxide released from S-nitroso-N-acetyl penicillamine: a study in immobilized perfused hepatocytes.

S-nitroso-N-acetyl penicillamine (SNAP, 0.1-0.5 mM) caused release of nitric oxide (NO) into the perfusion medium of immobilized hepatocytes. Oxidative injury of hepatocytes was evoked by tert-butyl hydroperoxide (TBH, 1 mM) and the functional and morphological ultrastructural integrity of the cells was monitored. At the end of a 270-min perfusion period, SNAP-induced NO reduced lactate dehydrogenase leakage in TBH-injured hepatocytes as compared to untreated TBH-injured cells (122% +/- 5 vs. 146% +/- 6 of control levels), lipid peroxides production (2.7 +/- 0.2 vs. 3.7 +/- 0.3 nmol/10(6) cells), increased O2 consumption (26 +/- 2 vs. 12 +/- 1 nmol/10(6) cells) although urea synthesis was reduced. SNAP improved the formation of granules in the Golgi complex as compared to untreated TBH-injured hepatocytes and preserved the ultrastructural architecture of mitochondria and the smooth endoplasmic reticulum. The present data support a possible protective role of NO in oxidative liver injury.

Animals↗

Role of monoaminergic neurotransmitter systems in MDP-induced adjuvant effect.

The changes in delayed hypersensitivity in guinea pigs stimulated by muramyl dipeptide (MDP) after administration of agonists or antagonists of neurotransmitter systems were studied. Muramyl dipeptide was given in Freund's incomplete adjuvant three weeks before administration of drugs and antigen. Pretreatment with methiotepine, haloperidol and clonidine increased, while lisuride, apomorphine and yohimbine decreased the reaction of delayed hypersensitivity. These results suggest that serotonergic, dopaminergic as well as presynaptic alpha-receptors might have an inhibitory effect on cell-mediated immunity.

Acetylmuramyl-Alanyl-Isoglutamine↗

The binding spectra of rat renal and hepatic microsomal cytochromes P-450 with cyclosporine A.

Binding difference spectra of rat renal and hepatic cytochromes P-450 with cyclosporine A (CsA) were measured. In both cases reversed type I spectra were found with the absorbance maximum at 416 nm and minimum at 378 nm. Apparent spectral dissociation constant Kd and maximal absorbance difference delta Amax416-378 did not change substantially with the concentration of the CsA stock solution used. The results suggest that CsA might be biotransformed not only in the liver but also in the kidney.

Animals↗