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Biomedical subjects

L N Maslov

Publications and source records attributed to L N Maslov.

At least 19 recordsLinked to original sources

Cardiac contractility after transplantation of autologous mononuclear bone marrow cells in patients with myocardial infarction.

Autologous bone marrow mononuclear cells were transplanted by intracoronary infusion to patients with myocardial infarction after recovery of coronary perfusion. Controls received traditional therapy alone. Echocardiography was carried out before and 3 and 6 months after cell therapy. Cell transplantation did not appreciably improved left-ventricular contractility in comparison with the control group. In none patient cell therapy provoked malignant ventricular arrhythmias. Intracoronary infusion of bone marrow mononuclear cells in patients with myocardial infarction did not improve cardiac contractility and did not aggravate the course of the disease.

Aged↗

Negative inotropic and chronotropic effects of delta-opioid receptor antagonists are mediated via non-opioid receptors.

Ten-minute perfusion of intact isolated rat heart with Krebs-Henseleit solution containing delta-opioid receptor agonists (DPDPE, (-)-TAN-67) or delta-opioid receptor antagonists (naltrindole, TIPP[psi], ICI 174,864) at a final concentration of 0.1 mg/liter decreased HR, blood pressure in the left ventricle, and the rates of myocardial contraction and relaxation. Intravenous injection of delta-agonists (DPDPE, (-)-TAN-67, deltorphin II) or delta-antagonists (naltrindole, TIPP[psi], ICI 174,864) decreased HR in narcotized rats. Naloxone and naltrexone produced no effect on contractility and HR both in vivo and in vitro. Preliminary injection of naloxone and naltrexone did not prevent the negative chronotropic effect of ICI 174,864 in vitro. The negative inotropic and chronotropic effects of delta-opioid receptor antagonists are mediated by unknown non-opioid receptors in the heart.

Animals↗

[Paticipation of cannabinoid receptors in the regulation of cardiac rhythm and cardiac contractility].

It has been found that i. v. administration of cannabinoid receptor (CB) agonists (HU-210, ACPA, anandamide, methanandamide) induced a decrease in the heart rate (HR) in anesthetized rats. Pretreatment with CB1 receptor antagonist SR141716A completely abolished a negative chronotropic effect of CB receptor agonist HU-210. The CB2 receptor antagonist SRI 44528 did not prevent a HU-210-induced decrease in the HR. Pretreatment with the ganglion blocker hexamethonium had no effect on the negative chronotropic action of HU-210. Addition of HU-210 (100 nM) to perfusion solution induced a decrease in the HR, left ventricular development pressure, rate of contractility and relaxation of isolated perfused rate heart without change in end diastolic pressure. These data suggest that cardiac CBI receptor activation induces a decrease in the HR both in vivo and in vitro. An occupancy of the same receptors mediates a negative inotropic effects of cannabinoids.

Animals↗

[The effects of intracoronary infusion of bone marrow mononuclears on myocardial contractility].

The effects of intracoronary infusion of bone marrow mononuclears (BMM) on myocardial contractility after myocardial infarction (MI) was studied in 16 post-infarction patients. The intracoronary infusion of autologic BMM during the subacute period of MI did not have a significant effect on myocardial contractility, the functional class of chronic heart failure, physical tolerance, and quality of life evaluated three and six months after the transplantation. Intracoronary BMM transplantation did not provoke ventricular tachycardia or ventricular fibrillation. BMM transplantation into an infarcted myocardium did not exacerbate coronary heart disease in post-infarction patients.

Bone Marrow Cells↗

Role of endogenous opioid receptor agonists in regulation of heart resistance to the arrhythmogenic action of short-term ischemia and reperfusion.

Preliminary selective block of mu-, delta1-, delta2-, and kappa-opioid receptors had no effect on the incidence of ventricular arrhythmias during 10-min coronary occlusion-reperfusion in ketamine-narcotized rats. Repetitive short-term immobilization of rats for 2 weeks improved heart resistance to the arrhythmogenic action of coronary occlusion and reperfusion. Selective mu-opioid receptor antagonist CTAP completely abolished, while selective delta- and kappa-opioid receptor antagonists did not modulate the antiarrhythmic effect of adaptation. Probably, endogenous agonists of mu-opioid receptors play an important role in the adaptive improvement of heart resistance to arrhythmogenic factors, but are insignificant for the modulation of heart resistance to the arrhythmogenic action of short-term local ischemia-reperfusion in non-adapted animals.

Adaptation, Physiological↗

Cannabinoid receptor antagonists SR141716 and SR144528 exhibit properties of partial agonists in experiments on isolated perfused rat heart.

We studied the effect of selective cannabinoid receptor ligands on contractility of isolated Langendorff-perfused rat heart. It was found that 10-min perfusion of rat heart with a solution containing selective agonist of CB1 and CB2 receptors HU-210 (10 nM) decreased left ventricular developed pressure and maximum rates of contraction and relaxation. However, HU-210 had no effect on heart rate and end-diastolic pressure. Treatment with selective CB1 receptor antagonist SR141716 (1 microM) and selective CB2 receptor antagonist SR144528 (1 microM) decreased left ventricular developed pressure and maximum rates of contraction and relaxation, but had no effect on heart rate and end-diastolic pressure. Ten-minute perfusion of rat heart with a solution containing selective agonist of CB1 and CB2 receptors HU-210 (10 nM) decreased cAMP concentration in the heart. CB receptor antagonists had little effect on cAMP concentration in the heart. The negative inotropic effect of HU-210 and CB receptor antagonists is probably mediated by activation of CB1 receptors. It can be hypothesized that the decrease in heart cAMP concentration is related to stimulation of CB2 receptors. Our results suggest that selective CB receptor antagonists SR141716 and SR144528 in a final concentration of 1 microM exhibit properties of partial CB receptor agonists.

Animals↗

Chronotropic effect of D-Ala2,Leu5,Arg6-enkephalin (dalargin) is associated with activation of peripheral kappa-opioid receptors.

Intravenous infusion of D-Ala2,Leu5,Arg6-enkephalin (dalargin) caused bradycardia in narcotized rats. This effect was not observed during opioid receptor blockade with naloxone, naloxone methiodide, and norbinaltorphimine. Dalargin and (-)-U-50,488 added to Krebs-Henseleit perfusion solution for isolated rat heart decreased heart rate. Ganglionic blocker hexamethonium potentiated the negative chronotropic effect of dalargin. The negative chronotropic effect of dalargin is probably associated with activation of cardiac kappa-opioid receptors. It should be noted that dalargin caused tachycardia in some animals. This reaction was not observed after treatment with hexamethonium. The positive chronotropic effect of dalargin is probably related to modulation of the parasympathetic autonomic nervous system. Agonists and antagonists of delta-opioid receptors caused persistent bradycardia. We hypothesized that selective delta-opioid antagonists exhibit properties of partial delta-receptor agonists.

Animals↗

Delta-opioid receptor antagonists exhibit properties of partial delta-receptor agonists in isolated perfused heart.

Perfusion of the isolated intact rat heart with Krebs-Henseleit solution containing agonists ((-)-TAN-67, DPDPE, and dalargin) or antagonists of delta-opioid receptors (naltrindole, TIPP[psi], and ICI 174,864) in a final concentration of 0.1 mg/liter was followed by a decrease in the heart rate, end-diastolic pressure, contraction rate, relaxation rate, and left ventricular developed pressure. Perfusion with a solution containing the delta-opioid receptor agonist DPDPE or delta-antagonists naltrindole, TIPP[psi], and ICI 174,864 before modeling of global ischemia increased the severity of reperfusion-induced contractile dysfunction in the myocardium. Our results suggest that delta-opioid receptor antagonists in vitro exhibit properties of partial delta-receptor agonists.

Animals↗

Selective cannabinoid receptor agonist HU-210 decreases pump function of isolated perfused heart: role of cAMP and cGMP.

The rate and strength of heart contractions decreased after 10-min perfusion of rat myocardium with Krebs-Henseleit solution containing a selective cannabinoid receptor agonist HU-210 in a final concentration of 10 nM. HU-210 completely blocked the positive inotropic and chronotropic effect of beta-adrenoceptor agonist isoproterenol, decreased the basal level of cAMP, and abolished the isoproterenol-induced increase in myocardial cAMP concentration. cGMP concentration remained unchanged under these conditions. The decrease in myocardial cAMP concentration after activation of cannabinoid receptors did not correlate with changes in the strength and rate of heart contractions. Our results suggest that the negative inotropic and chronotropic effects of HU-210 are not associated with decreased cAMP concentration in the myocardium.

Adrenergic beta-Agonists↗

Effect of opiate peptide dalargin and des-Tyr-dalargin on cardiac pump function during ischemia-reperfusion.

Experiments on isolated perfused rat heart showed that nonselective micro- and delta-opiate receptor agonist dalargin decreased contractility of the intact heart, but had no effect on pump function of the ischemic myocardium. Dalargin analogue des-Tyr-dalargin not binding to opiate receptors decreased contractility of intact myocardium and isolated heart exposed to 45-min total ischemia. We hypothesize that the influence of dalargin is related to activation of cardiac delta-opiate receptors, while the inotropic effect of des-Tyr-dalargin is mediated by other receptors.

Animals↗

Opioid receptors and heart resistance to arrhythmogenic factors.

We present detailed data on the role of central and peripheral opioid receptors in the regulation of heart resistance to arrhythmogenic factors. Stimulation of peripheral delta2- and kappa1-receptors increases heart resistance to the arrhythmogenic effect of acute ischemia and reperfusion. Activation of peripheral mu- and delta1-opioid receptors improves electrical stability of the heart in animals with postinfarction cardiosclerosis. Possible mechanisms for opioidergic regulation of heart resistance to arrhythmogenic factors are discussed.

Aconitine↗

Activation of peripheral delta opioid receptors eliminates cardiac electrical instability in a rat model of post-infarction cardiosclerosis via mitochondrial ATP-dependent K+ channels.

The effects of the selective delta-1 (delta(1)) opioid receptor agonist, DPDPE, and the selective delta(2) opioid receptor agonist, DSLET, have been studied on the ventricular fibrillation threshold (VFT) in rats with an experimental post-infarction cardiosclerosis (CS). It has been found that CS induced a significant decrease in VFT. This CS-induced decrease in VFT was significantly reversed by intravenous administration of DPDPE (0.1 mg/kg) 10 min before VFT measurement. On the contrary, intravenous injection of DSLET (0.5 mg/kg) exacerbated the CS-induced cardiac electrical instability. Pretreatment with the selective delta opioid receptor antagonist, ICI 174,864 (0.5 mg/kg), completely abolished the changes in VFT produced by both DPDPE and DSLET. Previous administration of a nonselective peripherally acting opioid receptor antagonist, naloxone methiodide (5 mg/kg) also completely reversed the antifibrillatory action of DPDPE. Naloxone methiodide and ICI 174,864 alone had no effect on VFT. Pretreatment with the nonselective K(ATP) channel blocker, glibenclamide (0.3 mg/kg), or with the mitochondrial selective K(ATP) channel blocker, 5-hydroxydecanoic acid (5-HD, 5 mg/kg), completely abolished the DPDPE-induced increase in cardiac electrical stability. Glibenclamide and 5-HD alone had no effect on VFT. These results demonstrate that the delta opioid receptor plays an important role in the regulation of electrical stability in rats with post-infarction cardiosclerosis. We propose that peripheral delta(1) opioid receptor stimulation reverses CS-induced electrical instability via mitochondrial K(ATP) channels. On the contrary, delta(2) opioid receptor stimulation may exacerbate the CS-induced decrease in VFT. Further studies are necessary to determine the delta opioid receptor subtype which mediates the antifibrillatory effect of DPDPE and pro-fibrillatory effect of DSLET.

Adenosine Triphosphate↗

Possible mechanism underlying the antiarrhythmic effect of peptides nociceptin and DALDA on the heart.

During aconitine-induced arrhythmias the antiarrhythmic effect of DALDA (Tyr-D-Arg-Phe-Lys-NH2) and nociceptin (orphanin FQ) administered intravenously depended on activation of nitric oxide synthase. K(ATP) channels were not involved in the realization of this effect. Endogenous prostanoids played a minor role in the antiarrhythmic effect of nociceptin and did not contribute to the protective influence of DALDA. The antiarrhythmic effect of orphanin FQ administered intravenously did not depend on functional activity of the autonomic nervous system. However, the effect of orphanin FQ after intracerebroventricular infusion was determined by changes in the state of this system.

Aconitine↗

[Role of ORL1 receptors in the regulation of cardiac resistance to arrhythmogenic effects ].

It has been found that intravenous administration of nociceptin (0.4 mg/kg) prevents development of aconitine-induced arrhythmias but has no effect on the incidence of occlusion, reperfusion, CaCl2-induced arrhythmias, and exacerbates epinephrine-evoked dysrhythmias. Pretreatment with hexamethonium, atropine, guanethidine and naloxone did not abolish the arrhythmic effect of nociceptin. Intracerebroventricular infusion of orphanin FQ was shown to increase cardiac tolerance of arrhythmogenic influence of aconitine, but this effect is completely abolished by hexamethonium administration. It has been suggested that stimulation of both central and peripheral ORL1 receptors increases cardiac resistance against arrhythmogenic effect of aconitine via different mechanisms.

Aconitine↗

[Changes in cardiac resistance to arrhythmogenic effects during ATP-dependent K+ channel activation].

It has been found that pretreatment with ATP-dependent potassium channel (KATP-channel) opener, BMS 180448 (3 mg/kg, intravenously), increases cardiac resistance against arrhythmogenic action of coronary artery occlusion and reperfusion in anaesthetized rats. However, BMS 180448 induced a decrease in ventricular fibrillation threshold in rats postinfarction cardiac fibrosis. This effect was completely abolished by administration of the KATP-channel inhibitor, glibenclamide. By contrast, coadministration of BMS 180448 and selective sarcolemmal KATP-channel inhibitor, HMR 1098, promoted an increase in ventricular fibrillation threshold in rats with postinfarction cardiac fibrosis before normal value. The selective mitochondrial KATP-channel opener, diazoxide, also exacerbated a decrease in ventricular fibrillation threshold induced by postinfarction cardiac sclerosis. But after depletion of endogenous catecholamine storage by pretreatment with guanthidine, diazoxide, on the contrary, elevated the ventricular fibrillation threshold. It has been suggested that stimulation of mitochondrial ATP-sensitive potassium channels promotes an elevation in electrical stability of the heart, whereas opening of sarcolemmal KATP-channel increases a possibility of ventricular arrhythmias.

Adenosine Triphosphate↗

[Alterations of inotropic function of isolated heart and extent of injury of cardiomyocytes after cannabinoid receptor activation during ischemia and reperfusion].

It was found that CB1- and CB2-receptor activation by intravenous administration of the selective CB-agonist HU-210 at a dose 0.1 mg/kg prompts an increase of myocardial resistance to the pathogenic action of ischemia and reperfusion in vitro. The revealed effects of HU-210 do not depend on the activation of CB-receptors in the myocardium.

Animals↗

Activation of cannabinoid receptors decreases the area of ischemic myocardial necrosis.

We studied the possibility of decreasing the area of ischemic necrosis during myocardial infarction with HU-210, a selective cannabinoid receptor agonist. Activation of cannabinoid receptors with HU-210 had practically no effect on collateral blood flow in the myocardium, but considerably decreased the area of necrosis. There results indicate that cannabinoid receptor agonist HU-210 possesses cardioprotective activity and delays the formation of necrotic zones during coronary occlusion and reperfusion.

Animals↗