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Biomedical subjects

J Kuhlmann

Publications and source records attributed to J Kuhlmann.

At least 109 records · Page 6Linked to original sources

Use of cholestyramine in three patients with beta-acetyldigoxin, beta-methyldigoxin and digitoxin intoxication.

The effect of cholestyramine (8 g every 6 h by oral administration) on glycoside plasma concentrations of three patients with suicidal and accidental digitalis intoxications were studied. During treatment with cholestyramine the plasma concentrations of beta-acetyldigoxin and beta-methyldigoxin declined with half-lives of 20.4 or 30.0 h. These values are significantly shorter than the therapeutic half-lives reported in the literature. The digitoxin plasma concentration decreased with a half-life of 74.5 h during the first 2 days. When the digitoxin plasma level dropped under 40 ng/ml, the half-life increased, similar to the half-life without cholestyramine administration. From these case reports cholestyramine seems to be helpful in managing intoxications with digoxin derivates as well as with digitoxin.

Acetyldigoxins↗

[Effect of a fiber-rich diet on digoxin resorption].

In five female healthy volunteers the influence of dietary fiber (wheat bran or carob seed flour) on absorption of digoxin was investigated. Five minutes after ingestion of a formula diet alone or in combination with wheat bran or carob seed flour 0,8 mg beta-acetyldigoxin was given per os. The plasmaconcentration-time curve over eight hours, the area under curve and the cumulative urinary excretion were not changed significantly. It was concluded that there is no influence of dietary fiber on rate or degree of digoxin-absorption.

Acetyldigoxins↗

Tobramycin nephrotoxicity: failure of cefotaxime to potentiate renal toxicity.

The aim of our prospective clinical study was to determine whether the combination of tobramycin plus cefotaxime is more nephrotoxic than tobramycin alone. The studies were carried out in 30 patients with serious infections and normal renal function. Groups of ten patients each received either 2 g cefotaxime or 1 mg/kg body weight tobramycin or cefotaxime and tobramycin in the same dosage every eight hours intravenously for at least seven days. Serum creatinine, creatinine clearance and alanine aminopeptidase (AAP) excretion in 24-hour urine were determined before, during and five days after the antibiotics had been discontinued. These were used as parameters for glomerulotubular injury. The plasma levels of tobramycin and cefotaxime (assayed by agar diffusion) did not differ when the drugs were given alone or in combination. None of the patients treated with cefotaxime alone showed any signs of renal damage. In contrast, tobramycin alone or in combination with cefotaxime caused an increase in urinary enzymes in all patients. This activity was a mean five to six times greater than the initial values prior to antibiotic therapy. There were no significant differences between the AAP increase during treatment with tobramycin and tobramycin plus cefotaxime. Four to five days after discontinuing antibiotic therapy, AAP activity decreased to values similar to those measured prior to therapy. In some of the patients receiving tobramycin alone or in combination with cefotaxime, increased creatinine levels, a reduction in creatinine clearance to 60 ml/min and an increase in renal enzyme excretion could be observed. Thus, treatment with high doses of cefotaxime does not seem to increase tobramycin nephrotoxicity in patients with normal renal function. The nephrotoxicity of this drug combination is obviously due to the aminoglycoside.

Adolescent↗

Cytostatic drugs are without significant effect on digitoxin plasma level and renal excretion.

In three patients with malignant lymphoma who received 0.5 mg digitoxin before and 24 hr after combination therapy with cyclophosphamide, Oncovin, procarbazine, and prednisone (COPP) or cyclophosphamide, Oncovin, and prednisone (COP), plasma glycoside concentrations and renal excretion were measured 0 to 168 hr after digitoxin and the areas under plasma concentration-time curves *(AUCs) were calculated. In 10 patients receiving 0.1 mg digitoxin, daily plasma glycoside concentration and daily renal excretion were measured before and after COPP, COP, or cyclophosphamide, Oncovin, cytosine-arabinoside, and prednisone (COAP) treatment schemes. In contrast to previous reports on digoxin, cytostatic drug therapy does not lead to a reduction in steady-state digitoxin plasma levels and daily renal excretion. During cytostatic therapy attainment of peak digitoxin level was delayed after a single dose, showing that the rate of digitoxin absorption was reduced, but that the AUCs and renal excretion of digitoxin (parameters of the extent of digitoxin absorption) were not diminished. Since the absorption rate is not clinically relevant in patients on long-term glycoside therapy, our results indicate that digitoxin is preferable to digoxin in such patients.

Adolescent↗

Inhibition of digoxin absorption but not of digitoxin during cytostatic drug therapy.

Digoxin absorption is found to be decreased in patients with malabsorption syndromes on the basis of mucosal defects. Since intestinal mucosa can be damaged by cytostatic drugs, it was the purpose of these studies to investigate the influence of various cytostatic drugs on digoxin and digitoxin plasma levels and urinary excretion. In 9 patients with malignant lymphoma, who received 0.8 mg beta-acetyldigoxin (n = 6) or 0.5 mg digitoxin (n = 3) before and 24 h after combined therapy with cyclophosphamide, vincristine, procarbazine, and prednisone (CVPP) or cyclophosphamide, vincristine and prednisone (CVP), plasma glycoside concentrations were measured 0 to 8 h after digoxin and 0--168 h after digitoxin application and the areas under the plasma concentration-time curves were calculated. In 12 patients on 0.3 mg beta-acetyldigoxin and in 10 patients on 0.1 mg digitoxin, daily plasma glycoside concentrations and daily renal excretion were measured before and after CVPP, CVP or cyclophosphamide, vincristine, cytarabine and prednisone (CVAP) treatment schemes. The diminished steady-state plasma digoxin concentrations and daily renal glycoside excretion during the 24-168 h period after the cytostatic dose demonstrate a reversible impairment of digoxin absorption. In contrast cytostatic drug therapy does not lead to reduction in steady-state digitoxin plasma levels and daily renal glycoside excretion. The delayed time to peak after a single dose of digoxin or digitoxin during cytostatic drug therapy shows that rate of absorption of both glycosides is reduced. Our results indicate the need for very exact monitoring of digoxin dosage during cytostatic therapy. The use of digitoxin for these patients is an alternative in maintaining adequate digitalization.

Antineoplastic Agents↗

Effects of cytostatic drugs on plasma level and renal excretion of beta-acetyldigoxin.

Mucosal defects decrease digoxin absorption in patients with malabsorption syndromes. Since the intestinal mucosa can be damaged by cytostatic drugs, we investigated their effects on digoxin plasma levels and urinary digoxin excretion. In six patients with malignant lymphoma who received 0.8 mg beta-acetyldigoxin before and 24 hr after treatment with a combination of cyclophosphamide, oncovin, procarbazine, and prednisone (COPP) or cyclophosphamide, oncovin, and prednisone (COP), plasma digoxin concentrations were measured 0 to 8 hr after the dose and areas under the plasma concentration-time curves were calculated. In 15 patients on 0.3 mg of beta-acetyldigoxin daily, plasma glycoside concentrations and renal excretion were measured daily before and after COPP, COP, cyclophosphamide, oncovin, cytosine-arabinosine, and prednisone (COAP), or adriamycin, bleomycin, and prednisone (ABP) treatment schemes. The diminished steady-state glycoside plasma concentrations and daily renal glycoside excretion during the 24 to 168 hr after the cytostatic drug established reversible impairment of digoxin absorption. The delayed time to peak after a single dose of digoxin during cytostatic drug therapy shows that extent and rate of digoxin absorption are reduced. To maintain adequate control of digoxin therapy in patients treated with cytostatic drugs, plasma levels should be monitored.

Acetyldigoxins↗

[Digoxin concentrations in plasma and tissue. A postmortal investigation (author's transl)].

Postmortal tissue digoxin concentration and prefinal and postmortal plasma digoxin concentrations from 9 patients were determined using the 125J-digoxin radioimmunoassay. The concentration of digoxin in the myocardium of the left ventricle was 61.44 +/- 45.17 ng/g. In the right ventricle the concentration was 36.78 +/- 33.11 ng/g. Higher digoxin concentrations were found in the right atrium (34.93 +/- 21.86 ng/g) than in the left atrium (25.43 +/- 14.57 ng/g). In plasma samples taken after death approximately 62% higher digoxin concentrations were found than in samples of patients in prefinal state. Histological examination revealed positive correlation between in the high varying digoxin concentrations and the pathological conditions of the tissue structure.

Aged↗