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Differential inactivation of inotropic and toxic digitalis receptors in ischemic dog heart. Molecular basis of the deleterious effects of digitalis.

When applied to ischemic hearts digitalis exhibits depressed inotropic effect and increased toxicity. The molecular basis of these effects was investigated at the level of the digitalis receptors characterized by Na,K-ATPase assays and [3H]ouabain-binding measurements. In sarcolemma obtained from dog hearts rendered ischemic for 15, 30, and 60 min (left anterior descending), two populations (high and low affinity) of digitalis receptors were detected. The apparent affinity (KD, 300 nM) and the binding capacity of the low-affinity sites (responsible for toxicity) remained constant and similar to those found in normal hearts. The KD value of the high-affinity sites, "responsible for inotropy," remained unchanged (2 nM), but the site number sharply decreased (up to 90%). These inotropic sites that account for 66% of the total binding in normals are gradually inactivated, as the duration of ischemia increases. This inactivation would occur in situ since it was detectable in homogenates and was not depressed by the isolation procedure per se. The loss of function of the inotropic sites and the increased contribution of the low-affinity toxic sites represent the setting of a new distribution of the digitalis receptors in the ischemic heart before reperfusion is instituted. This constitutes the molecular basis of the deleterious pharmacological effects observed with digitalis.

Animals↗

Species restriction of the mitogenicity induced by lanatoside C. Lymphocyte activation by digitalis glycosides is confined to cells from digitalis resistant species.

Activation of Na+, K+-ATPase has previously been suggested to be the triggering signal in mitogen-induced cell activation. Using a digitalis glycoside known to be a potent polyclonal B-cell activator, this hypothesis could be tested since digitalis activates ATPase at different concentrations in various species, depending on the degree of sensitivity to the toxic effects of glycosides. Lanatoside C was found to stimulate lymphocytes from glycoside resistant species such as rat, mouse and hamster. The possible involvement of Na+, K+-ATPase was made less likely by the similarity in dose--response profile in these cells although they have been reported to display varying degrees of glycoside resistance. Furthermore, using lymphocytes from digitalis-sensitive species such as man, guinea-pig or rabbit, no mitogenicity could be recorded, strongly suggesting a lack of correlation between glycoside-induced effects on Na+, K+-ATPase and cell activation.

Adenosine Triphosphatases↗

Digitalis intoxication in geriatric in-patients. A prospective clinical study of the value of serum digitalis concentration measurement.

A prospective clinical study of 66 geriatric in-patients mainly on digoxin treatment revealed digitalis intoxication in seven (11%). Over a two-month period another patient developed digoxin toxicity. The prevalences of anorexia, nausea and vomiting were significantly higher in patients with than without digitalis toxicity. The mean serum drug concentration was significantly higher in overdosed than in non-overdosed patients, but six patients had serum digoxin concentrations within or below the therapeutic range, and only two slightly above. Notably, maintenance digoxin therapy was unnecessary in five out of eight intoxicated patients. The value of determining serum digitalis concentrations in diagnosing clinical toxicity in geriatric in-patients is discussed.

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Studies on digitalis. XIV. Is there any correlation between hypomagnesemia and digitalis intoxication?

In a prospective study on digitalis intoxication, low serum magnesium was found in 90 patients, while 388 patients had values above 1.5 mEq/l. Hypomagnesemia was more frequent in women than in men, in those with low body weight and in those with advanced heart failure. More patients with hypomagnesemia than those without had nausea, anorexia, fatigue, flickering of vision and atrial tachycardia with block. Patients with hypomagnesemia also had lower serum potassium than normomagnesemic patients. There was, however, no significant difference in the prevalence of digitalis intoxication or in serum digitoxin concentration. Nor was there any correlation between serum digitoxin and serum magnesium levels.

Body Weight↗

Studies on the Production of Digitalis Cardenolides by Plant Tissue Culture: II. EFFECT OF LIGHT AND PLANT GROWTH SUBSTANCES ON DIGITOXIN FORMATION BY UNDIFFERENTIATED CELLS AND SHOOT-FORMING CULTURES OF DIGITALIS PURPUREA L. GROWN IN LIQUID MEDIA.

Undifferentiated, highly chlorophyllous cell cultures; undifferentiated white cell cultures; green, shoot-forming cultures; and white, shoot-forming cultures of Digitalis purpurea L. were established and subcultured every 3 weeks in liquid media in the light or in the dark. The digitoxin content, the chlorophyll content, and the ribulose bisphosphate carboxylase activity of these cultures were assayed. The light-grown, green, shoot-forming cultures accumulated considerable amounts of digitoxin (about 20 to 40 micrograms per gram dry weight), and the white, shoot-forming cultures without chloroplasts accumulated about one-third that amount of digitoxin. The chlorophyll content and the ribulose bisphosphate carboxylase activity of the undifferentiated green cells were about the same as they were in the green, shoot-forming cultures, but the digitoxin content of the former was extremely low (about 0.05 to 0.2 microgram per gram dry weight), which is about the same as that in undifferentiated white cells without chloroplasts. Thus, it was concluded that the chloroplasts are not essential for the synthesis of digitoxin in Digitalis cells. The optimum concentrations of the tested compounds for accumulation of digitoxin were: benzyladenine, 0.01 to 1 milligram per liter; indoleacetic acid, 0.1 to 1 milligram per liter; alpha-naphthaleneacetic acid; 0.1 milligram per liter; and 2,4-dichlorophenoxyacetic acid, 0.01 milligram per liter.

Journal Article↗

Digitalis receptor sugar binding site characteristics: a model based upon studies of Na+, K(+)-ATPase preparations with differing digitalis sensitivities.

The structure-activity relationships of the genin moieties of digitalis glycosides are commonly elucidated by determining the inhibitory potency of a variety of genins toward the plasma membrane Na+, K(+)-ATPase; qualitatively these relationships appear to be fairly independent of the specific Na+, K(+)-ATPase preparation utilized for the analysis. To determine whether this is the case with regard to the sugar moieties of glycosides, the inhibitory effects of 12 monoglycosides of digitoxigenin toward four Na+, K(+)-ATPase preparations of different origin were measured. It was found that while recognition of the major structural determinants of sugar activity appeared to be independent of enzyme source, recognition of the minor structural determinants of activity showed some source dependence. It was also observed that the intrinsic sensitivity to sugar potentiation may be source dependent and unrelated to intrinsic sensitivity to inhibition by digitoxigenin. These observations are compatible with a model of the Na+, K(+)-ATPase sugar binding site(s) in which intrinsic sensitivity to sugar attachment as well as recognition characteristics (for sugar structural features) both determine the extent to which a sugar moiety may contribute to the activity of monoglycosides. Further, in these studies one of the Na+, K(+)-ATPase preparations employed was obtained from rat brain, a tissue known to contain a mixture of ouabain sensitive and insensitive isoforms. We have observed that the rigorous purification techniques employed appear to have selectively removed from or denatured the less ouabain sensitive alpha 1 isoform found in this enzyme preparation.

Animals↗

Measurement of digitalis-glycoside levels in ocular tissues: a way to improve postmortem diagnosis of lethal digitalis-glycoside poisoning? I. Digoxin.

Prompted by animal studies reporting the accumulation of digitalis-glycosides in ocular tissues, we investigated whether measurement of digoxin levels in human ocular tissues can improve the postmortem diagnosis of lethal digoxin intoxication. Digoxin was measured in the vitreous humor and choroid-retina of patients who had received in-patient treatment with digoxin prior to death (therapeutic group) and in a single case of suicidal intoxication. The results were compared with the digoxin levels in the femoral vein blood, myocardium, kidney and liver, and evaluated in light of the medical history of each patient. In the therapeutic group the mean digoxin level was higher in the choroid-retina than in other tissues and body fluids. The range of variation in levels in the choroid-retina following therapeutic doses was comparable to that in the other tissues. An extremely high level of digoxin was present in the choroid-retina in the case of suicidal intoxication. In all cases, levels in the vitreous humor were very low compared to those in the choroid-retina. Hence, it is unlikely that significant distortion of choroid-retinal levels occurs due to postmortem diffusion of digoxin into the vitreous body. Our results indicate that measurement of digoxin levels in the choroid-retina can aid the postmortem diagnosis of lethal digoxin intoxication.

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Correlative studies of serum digitalis levels and the arrhythmias of digitalis intoxication.

Correlative studies of serum digoxin levels, cardiac rhythm and related clinical laboratory data were carried out in 114 patients. Seventy-three patients who presented with 79 episodes of arrhythmias typical of digitalis intoxication could be separated into a normokalemic group of 55 patients whose serum digoxin level was 6.68 +/- 0.17 ng/ml (mean +/- standard error of the mean), and a hypokalemic group of 24 with a mean serum digoxin level of 1.13 +/- 0.04 ng/ml (P less than 0.001). Of 45 consectutive normokalemic patients with a high serum digoxin level (more than 2 mg/ml) who underwent serial studies, 17 had arrhythmias. Serial studies in 10 hypokalemic patients revealed an inconsistent relation between presence of arrhythmia and serum digoxin level. During repletion of serum potassium in seven of these patients with an arrhythmia, the arrhythmia disappeared without a significant change in serum digoxin level in four patients. A group of seven patients had 16 episodes of serum digoxin level greater than 2.2 ng/ml, but an arrhythmia occurred during only 3 of these episodes. A sharp border between toxic and therapeutic serum digoxin values was not found in these groups of study patients. The serum digoxin level at which arrhythmias occurred appeared to be variable for both groups and individual patients. However, correlative studies utilizing serum digoxin levels can define existing thresholds for therapeutic and toxic effects and may often be more useful than isolated observations.

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[Digitalis poisoning, risk factors and digitalis intolerance].

It was established by means of radioimmunoassay that the blood concentration of Digoxin in patients with congestive heart failure depends not only on the dose of the drug given, but also on the stage of cardiac insufficiency. With equal daily doses, higher Digoxin concentrations were observed in patients with more severe cardiac insufficiency. The analysis of the obtained data has demonstrated that in 75% of the patients with signs of digitalis intoxication the concentration of Digoxin in blood exceeded 2.5 ng/ml. In animal experiments it was established that a distinct reduction of the toxic threshold took place in rabbits with acute myocardial infarction, acute pulmonary embolism, congestive cardiac failure, this threshold being determined by the amount of intravenously injected Strophantin that causes persistent ventricular tachycardia.

Digoxin↗

[Increased digitalis-like activity in combined administration of calcium antagonists and digitalis preparations].

It is well recognized that the co-administration of some drugs to persons receiving digoxin results in an increase of serum digoxin levels: it occasionally precipitates digoxin toxicity. There are some possible mechanisms by which different drugs may increase serum glycoside levels: 1) by displacing digoxin from tissue binding sites, 2) by decreasing digoxin renal excretion, 3) by enhancing digoxin absorption, 4) by increasing the inhibition of the ATP-dependent pump. Combined administration of calcium antagonists and B-methyldigoxin is common in patients with heart diseases. Other Authors have found that the co-administration of these drugs with digoxin increases glycoside serum levels, without signs of intoxication. We have examined the effects of this combination on digitalis activity, by Rubidium 86 uptake in erythrocytes. Thirty patients aged 52 to 66 with congestive heart failure were studied. All of these had normal serum creatinine, blood urea and serum protein levels. These subjects received 0,20 mg of B-methyldigoxin daily for nine days; afterwards, ten of them were given in addition 320 mg of verapamil for seven days; the other ten received in addition 60 mg of nifedipine, for seven days; the remaining ten patients received in addition 320 mg of verapamil and 60 mg of nifedipine together, for seven days. Digoxin activity was measured on the eighth, ninth and sixteenth day of treatment by Rubidium 86 uptake in erythrocytes. The technique was that of Bertler. Means were compared with the t test, with the assumption of the equal variances in the two groups.(ABSTRACT TRUNCATED AT 250 WORDS)

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