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Biomedical subjects

Iu F Krylov

Publications and source records attributed to Iu F Krylov.

At least 19 recordsLinked to original sources

[Regulating activity of plasma membranous Ca2+ channels in PC-12 pheochromocytoma cells with chemicals and pharmaceutic agents].

The activity of the voltage-operated Ca2+ channels (VOC channels) and store-operated Ca(2+)-channels (SOC channels) was studied on rat pheochromatocytomic cells PC-12 by using the fluorescence calcium dye Fura-2. The VOC channels were transferred in their open state by depolarizing the plasma membranes of the cells through addition of high KCl concentrations (50 mM). The SOC channels were activated by treating the cells with tapsigargine, a special inhibitor of Ca2+ ATPase in the intracellular Ca2+ stores. Verapamil effectively inhibited the activity of the VOC channels (IC50 = 0.6 micron), but failed to affect the SOC channels. Arachidonic acid reduced the level of [Ca2+]-induced TG (200 nM) at a concentration of 3-10 microns). The movement of Ca2+ along the SOC channels was electrogenic. The depolarization of the plasma membrane of PC-12 cells caused no release of Ca(2+) from the intercellular Ca2+ stores. It is concluded that PC-12 cells are a suitable model to study the activity of different Ca2+ channels and search for chemical compounds that affect the potential-dependent and potential-independent Ca2+ channels.

Adrenal Gland Neoplasms↗

[Myocardial metabolism in experimental adrenal gland pathology].

The effect of cortisone, desoxycorticosterone, and their combination on the myocardial content of pyruvate, citrate, coenzyme A, thiamine, riboflavin, Ca2+ and Mg2+ in animals with resected or intact adrenals was studied on 320 male albino rats. Experimental adrenal insufficiency was attended with deep metalolic disorders which were not normalized completely after the administration of cortisone or DOCA alone or in combination. The trend of the metabolic effects of these hormones under conditions of experimental adrenal insufficiency differed from that in rats with intact adrenals. It is pointed out that in substitution and pathogenetic hormonotherapy it is necessary to take into account the "background" activity of the adrenal cortex and that additional prescription of agents of nonspecific correction of myocardial metabolism is expedient.

Adrenal Insufficiency↗

[Effect of corticosteroids on the enzymatic activity of hepatic tissue].

Tests conducted with rats demonstrated that hydrocortisone and desoxycorticosterone-acetate (DOCA) manifest an effect close by its orientation with regard to mitochondrial and extramitochondrial forms of aspartate- and alanine-aminotransferase (ACT and ALT), as well as cytoplasmatic malate-dehydrogenase (MDG) of the liver. It was only mitochondrial MDG that lent itself to be inhibited by hydrocortisone, but it was induced by DOCA. Adrenalectomy resulted in inhibition on ALT and MDG and in activation of ACT and of mitochondrial LDG. A course-wise introduction of sulphapyridazine with an excess of deficiency of corticosteroids changed the effects of hydrocortisone with respect to cytoplasmatic LDG, as well as the effects of DOCA or adrenalectomy in regard to LDG and MDG.

Adrenal Cortex Hormones↗

[Influence of adrenal cortex hormones on the process of acetylation].

Tests conducted with intact and adrenalectomized albino rats demonstrated that cortisone and desoxycorticosterone acetate used in doses of 25 and 5 mg/kg, respectively when introduced simultaneously for 7 days tend to significantly intensify the acetylating capacity of the organism. There was no correlation between the intensification of the paraaminobenzoate acetylation and coenzyme "A" content in the tissues and also the pantothenic acid utilization.

Acetylation↗

[Action of some pyrazolone derivatives on thrombocyte aggregation].

The influence of four agents--pyrazolidinedione derivatives on the ADP-induced aggregation and activity of glycolytic enzymes--glyceraldehydrophosphate dehydrogenase and lactate dehydrogenase (GAPD, LDG) and of the anatomic oxidation enzyme--glucose-6-phosphate dehydrogenase (G-6-PD) was studied. The substances known by a conventional designation of MYaK-38, No-13 and No-2 are shown to display an antiaggregational action. Amidopyrine was found to depress the adhesive capacity of blood platelets, to activate GAPD and LDG and to lower the activity of G-6-PD.

Adenosine Diphosphate↗

[A metabolic study of the synthetic glucocorticosteroids prednisolone and dexamethasone in the body of white rats and in in-vitro reactions].

The metabolism of the synthetic steroidal hormones prednisolone and dexamethasone was studied in albino rats and in in vitro microsomal oxidation system by using high performance chromatography and radioactive tracers. Dexamethasone was found to be metabolically stable. The first step of prednisolone biotransformation is formation of prednisone during the NADPH-dependent reaction catalyzed by microsomal enzymes. Conditions were created for isolating the ultimate prednisolone metabolite formed in the rats' body by using HPLC.

Animals↗

[The metabolism and biological activity of glucuronidation substrates in experimental diabetes mellitus].

The study was undertaken to examine the impact of experimental diabetes mellitus on the biotransformation of some drugs, their toxicity and hypoglycemic action, as well as on the biotransformation of endogenous testosterone and the androgenic status. The accelerated metabolism of both exogenous and endogenous substrates which occurred in diabetes mellitus caused a decrease in their biological activity.

Animals↗

[The dynamics of prednisolone and dexamethasone distribution and metabolism in the body of white rats].

The processes of elimination and distribution of the synthetic steroidal drugs prednisolone and dexamethasone in the internal organs of Wistar rats were studied by the method of radioisotopes and high performance liquid chromatography. It was shown that the main route of excretion is the elimination with the urine. Prednisolone does not undergo conjugation and dexamethasone is glucuronidated by approximately 20%. The conclusion is made about the dependence of the main pharmacokinetic parameters on the concrete route of metabolism of each drug.

Animals↗

[Drug derivatives of xanthine].

The data on the pharmacological effects of xanthines and their use in pharmacotherapy, particularly, in regulation of cellular hemostasis to correct disorders of microcirculation are summarized. The possible mechanisms of hemostasis regulation by xanthines and the most promising ways of search for new antiaggregation drugs in this series are considered.

Drug Synergism↗

[Effect of preparations that alter the cyclic nucleotide level on acetylation processes].

The action of stimulants and imitators of the adenylate cyclase function (novodrin, sodium fluoride, cAMP), imitators of the guanylcyclase function (cGMP), inhibitors of adenylate cyclase (propranolol), izanylate cyclase (atropin) or phosphodiesterase (euphyllin, papaverin) on the body acetylating capacity measured from acetyl-PABA release, and CoA content in the liver was studied in experiments on male rats. The substances that mainly produce an increase in cAMP in the tissues augment the CoA endogenic pool and, as a rule, stimulate the acetylating capacity of the body. As compared to cAMP, the eczogenic cGMP raises, but to a significantly less measure, the CoA content and does not change the rate of arylamine acetylation. Paraverin is an exception to the rule since it seems to exert a direct action on the enzymatic system of acetylation. When administered to rats cGMP elicits a cAMP-like but a weaker action on the CoA pool. It is suggested that combined use of test substances prolonging cAMP effects and drugs belonging to a group of arylamines is not advisable because of active inactivation of the latter compounds.

Acetylation↗