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Biomedical subjects

S R Santos

Publications and source records attributed to S R Santos.

At least 19 recordsLinked to original sources

Theophylline metabolism in patients with hepatosplenic mansoniasis and cirrhosis.

The pharmacokinetics of theophylline were studied in 12 patients with hepatosplenic mansoniasis, 14 patients with cirrhosis and 16 normal controls. Following a single intravenous dose of aminophylline volumes of distribution, serum half-lives and body clearances were determined. Volumes of distribution of theophylline in patients with schistosomiasis (mean 0.624 l/kg) did not differ from cirrhotic patients (mean 0.616 l/kg) or normal controls (mean 0.593 l/kg). Cirrhotic patients had a prolonged half-life compared to normal subjects (mean 22.1 vs. 9.9 h), while patients with schistosomiasis did not substantially differ from normal controls (15.8 vs. 9.9 h). Body clearance in patients with schistosomiasis was similar to controls (34.02 vs. 49.20 ml/h per kg) but decreased (29.24 ml/h per kg) in patients with cirrhosis. Individual analysis of the group with schistosomiasis disclosed three patients with reduced theophylline elimination. No relationship was found between laboratory tests of liver function and the pharmacokinetics of theophylline in any group. The administration of theophylline to patients with hepatosplenic schistosomiasis, although less dangerous than in cirrhosis, must be closely followed.

Adolescent

Higher salt consumption, digoxin-like factor, and nifedipine response are associated with salt sensitivity in essential hypertension.

In addition to demonstrating evidences of increased sympathetic nervous system activity and marked left ventricular hypertrophy in salt-sensitive hypertensives, our group has also reported increased weight gain with salt overload in these patients. The increased weight gain suggests volume expansion, a situation already shown to increase plasma levels of a Na, K-ATPase inhibitor. Therefore, in the present study, digoxin-like factor (DLF) serum levels, spontaneous salt ingestion, nifedipine hypotensive effect, and plasma renin activity were evaluated in essential hypertensive subjects. Thirteen essential hypertensive outpatients were studied sequentially on an ad lib diet, a low salt diet (LSD = 30 mEq Na/day), and a high salt diet (HSD = LSD + 171 mmol/L NaCl/day), 1 week each. On the seventh day of LSD and HSD, DLF levels, mean blood pressure (MBP) response to nifedipine (10 mg sublingual), and plasma renin activity were measured. The MBP percent change from the seventh day of LSD to the seventh day of HSD (salt sensitivity) ranged from -13.7 to 20.9%. A positive correlation (r = 0.64, P < .01) was observed between salt sensitivity and 24-h urinary sodium excretion with an ad lib diet. The DLF serum levels correlated with the salt sensitivity both on LSD (r = 0.50, P < .05) and on HSD (r = 0.53, P < .05). Salt sensitivity was positively correlated with the difference of response to nifedipine between HSD and LSD (r = 0.78, P < .001). Plasma renin activity correlated inversely with DLF on LSD (r = -0.51, P < .05).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Simplified micromethod for the HPLC measurement of diclofenac in plasma.

A simple and sensitive micromethod based on HPLC is described for the measurement of diclofenac in 200 microliters plasma. A single extraction with dichloromethane in acidic medium was an essential clean-up step. Diclofenac and its internal standard (cyclohexendiphenyl propionic acid) was eluted at 3.3 and 6.5 min from a 4-micron C18 reverse-phase column using a mobile phase consisting of 0.75 M sodium acetate buffer, pH 5.0, and acetonitrile (55:45, v/v) at a flow rate of 0.9 ml/min with detection at 282 nm. The method, validated on the basis of parameters evaluated for the confidence limits of diclofenac measurements in spiked plasma, presented 1 ng/ml sensitivity, 10-10,000 ng/ml linearity, and 3.5% and 5.7% intra- and interassay precision, respectively. Peak plasma diclofenac levels ranging from 177 to 841 ng/ml and from 276 to 1008 ng/ml were obtained for two slow-release formulations. A wide range (1 ng/ml-3 micrograms/ml) was observed for plasma diclofenac levels of volunteers during a 24-h study period.

Chromatography, High Pressure Liquid

Ranitidine increases the bioavailability of nitrendipine in patients with arterial hypertension.

1. In a randomized placebo-controlled study, 12 hypertensive patients were treated po for one week with 20 mg nitrendipine once daily plus placebo, twice daily and later with the same dose of nitrendipine plus 300 mg ranitidine (150 mg twice a day). 2. When ranitidine was coadministered, plasma nitrendipine levels (0-24 h) were significantly increased (P < 0.001), although no significant increase in peak plasma nitrendipine level (Cmax) was observed due to the wide range of variation of this parameter (Cmax) in hypertensive patients. 3. Ranitidine coadministration increased the area under the curve for 24-h (AUC0-24) plasma concentration vs time, from 49.07 +/- 6.28 micrograms.h/l to 82.35 +/- 2.57 micrograms.h/l (P < 0.01). This significant increase caused a reduction in total body clearance from 2008.33 +/- 246.33 to 1284.00 +/- 182.16 ml/min (P < 0.002). 4. Nitrendipine bioavailability was increased by 89% when ranitidine was coadministered but the kinetic effect of this drug interaction is unlikely to be of clinical relevance since no adverse effects were observed in patients evaluated after ranitidine association.

Adult

Elimination and haemodynamic effects of nitrendipine in patients with chronic renal failure.

In sixteen patients with arterial hypertension and differing degrees of renal function the pharmacokinetics and haemodynamic effects of nitrendipine have been studied after treatment for 7 days. The AUC (0-24) and the elimination half-life of nitrendipine were significantly increased; the AUC (0-24) in patients with renal failure (median creatinine clearance 27.1 ml x min-1) was 196 ng x ml-1 x h compared to 97.8 ng x ml-1 x h in control subjects (median creatinine clearance 94.4 ml x min-1). The corresponding elimination half-lives were 13.5 h in renal failure and 4.4 h in the controls. The haemodynamic effects of nitrendipine were not enhanced in the patients.

Aged

Negative effects of famotidine on cardiac performance assessed by noninvasive hemodynamic measurements.

In a randomized placebo-controlled study 12 healthy volunteers were treated for 1 wk each with 10 mg of nifedipine four times daily plus placebo or the same dose of nifedipine concurrently with 40 mg of famotidine once a day. Famotidine did not significantly alter pharmacokinetic parameters of nifedipine. Determination of systolic time intervals showed that the preejection period and the ratio of the preejection period and the left ventricular ejection time were significantly reduced by administration of nifedipine plus placebo. Coadministration of famotidine and nifedipine, however, led to a significant increase of these parameters. In an additional double-blind study, a significant rise of the preejection period and of the ratio was detected after administration of famotidine alone. In impedance cardiography stroke volume and cardiac output were significantly reduced by famotidine. Heart rate and blood pressure values were not altered by the H2-antagonist. For the first time, to our knowledge, the observed changes of hemodynamic parameters appear to indicate that famotidine may exert negative effects on cardiac performance which, in our opinion, could be of clinical relevance in elderly subjects or in patients with heart failure.

Adult

Influence of nitrendipine and verapamil on plasma levels, urinary excretion, and beta-blocking effect of metoprolol.

Following randomized allocation eight healthy volunteers were treated for 1 week each with metoprolol alone (100 mg twice daily), verapamil 80 mg three times a day plus metoprolol 100 mg twice daily, and with nitrendipine 20 mg twice daily. Plasma levels and urinary recovery of the beta-blocker, antipyrine clearance, and heart rate on exercise were measured. Verapamil and nitrendipine slightly prolonged elimination half-life of metoprolol. The urinary recovery of the parent beta-blocker and of its alpha-hydroxy metabolite was elevated by both calcium antagonists (verapamil and nitrendipine). Exercise tachycardia (150 beats/min without drugs) was inhibited more pronounced on the combination therapies than under metoprolol administration alone. Results of the present study indicate that calcium antagonists enhance inhibition of exercise tachycardia caused by metoprolol, possibly due to their binding to myocardial beta-adrenergic receptors which is known from the literature. As both calcium antagonists did not increase plasma levels of metoprolol, in the present study a kinetic interaction between the beta-blocker and the calcium channel blockers investigated does not appear to be responsible for the pharmacodynamic effects observed.

Adult

Simultaneous analysis of digitoxin and its clinically relevant metabolites using high-performance liquid chromatography and radioimmunoassay.

A specific assay for determining the urinary excretion of unchanged digitoxin and its metabolites is described. The procedure includes solvent extraction of urine at pH 8.5, reversed-phase high-performance liquid chromatography (HPLC) and radioimmunoassay (RIA) of equivalent fractions. Confidence limits showed good linearity and precision of recovery and high sensitivity, accuracy and specificity. Cross-reactivities were high for digitoxigenin (DGTN) and digitoxigenin bisdigitoxoside (Bis-DGTN), they were low for digitoxigenin monodigitoxoside (Mono-DGTN) or digoxin when [125I]digitoxin RIA was used. The interference of endogenous compounds in urine in the RIA was overcome by using HPLC. Compared with results reported in the literature, the urinary recovery of unchanged digitoxin was lower, being only 8.11 +/- 1.51% of the dose administered. Amounts of 6.52 +/- 1.31% were excreted hydrolysed as Bis-DGTN, Mono-DGTN, DGTN or C12-hydroxylated as digoxin.

Adult

Bioavailability and elimination of nitrendipine in liver disease.

Twenty one patients with liver disease (cirrhosis 11, chronic hepatitis 5 and acute hepatitis 5) and 6 healthy volunteers were given a single i.v. dose of nitrendipine 5 mg. Afterwards nitrendipine 20 mg once daily were administered orally for seven days. With the intravenous injection a significant increase in the AUC and elimination half-life of nitrendipine was found in patients with cirrhosis as compared to the normal volunteers. After chronic oral dosing, the area under the plasma concentration-time curve, AUC (0-24), was 94.5 ng ml-1 h and the plasma clearance CL was 1380.6 ml/min in the healthy controls; in patients with cirrhosis the AUC (0-24) h was significantly greater at 309.4 ng ml-1 h and CL had fallen to 686.6 ml/min. Considerable accumulation of nitrendipine was also found in the patients with chronic hepatitis. Nitrendipine could not be detected in urine from any of the subjects. Blood pressure and heart rate were not significantly influenced by the treatment in the various groups investigated. Antipyrine clearance in the patients with cirrhosis was correlated with the nitrendipine plasma clearance. Thus, accumulation of nitrendipine has been demonstrated in the patients with cirrhosis and chronic hepatitis.

Administration, Oral

Nitrendipine/digoxin interaction.

The effect of nitrendipine in two different dosages on digoxin plasma levels, urinary recovery, and systolic time intervals was investigated in eight healthy volunteers. Following an adequate loading dose of the glycoside, 0.25 mg digoxin twice daily was given alone for 2 weeks orally. After that, 0.25 mg digoxin twice daily was administered for two 1-week periods combined with nitrendipine, 10 mg or 20 mg once daily. The study was completed with a second digoxin monotherapy phase lasting seven days. Nitrendipine, 20 mg daily, led to a significant increase of the digoxin plasma concentration and of its area under the plasma concentration-time curve (AUC0-12) compared with digoxin monotherapy. Thus, AUC0-12 was 9.7 +/- 0.75 ng ml-1 h (X +/- SEM) when digoxin was given alone and was 11.2 +/- 0.92 ng ml-1 h under coadministration of the calcium antagonist (p less than 0.05). Nitrendipine in the dosage of 10 mg once daily caused a small, insignificant tendency to elevate digoxin plasma levels. In conclusion, nitrendipine, 20 mg daily, causes a significant increase of digoxin plasma concentration and of its AUC, which in certain patients might be of clinical relevance.

Adult

Effect of two different doses of nitrendipine on steady-state plasma digoxin level and systolic time intervals.

The effect of two different doses of nitrendipine on plasma digoxin levels, urinary recovery and systolic time intervals was investigated in 8 healthy volunteers. Following a loading dose, digoxin 0.25 mg b.d.p.o. was given alone for 2 weeks. Then 0.25 mg digoxin b.d. was administered for two 1-week periods combined with nitrendipine 10 mg or 20 mg once daily. The study was completed with another digoxin monotherapy phase lasting 7 days. Nitrendipine 20 mg daily led to a significant increase in plasma digoxin levels and in its area under the plasma concentration-time curve AUC (0-12) was 9.7 ng ml-1h when digoxin alone was given and 11.2 ng ml-1h on co-administration of the calcium antagonist. Urinary recovery and renal clearance of digoxin were slightly but not significantly increased by nitrendipine. Nitrendipine 10 mg once daily caused a small, insignificant tendency to elevate the plasma digoxin level. Nitrendipine co-administration (10 and 20 mg once daily) did not significantly alter systolic time intervals, as non-invasively measured haemodynamic parameters, compared to digoxin treatment alone. Thus, nitrendipine 20 mg daily caused a significant increase in plasma digoxin concentrations and in its AUC, which would rarely be of clinical relevance.

Adult

Influence of nisoldipine on haemodynamic effects and plasma levels of digoxin.

In a placebo controlled double-blind study including 10 patients with heart failure the nisoldipine/digoxin interaction was studied. Nisoldipine was shown to elevate digoxin plasma concentrations significantly by about 15% (trough levels). During chronic combination therapy with nisoldipine trough levels and plasma concentrations 4 h after the morning dose of digoxin were 1.35 +/- 0.14 and 1.92 +/- 0.16 ng ml-1 respectively, whereas they averaged to 1.16 +/- 0.14 and 1.52 +/- 0.16 ng ml-1 with digoxin and placebo (P less than 0.05; mean +/- s.e. mean). Systolic time intervals were significantly altered by nisoldipine co-administration compared with digoxin plus placebo. In certain patients the elevation of digoxin plasma levels due to nisoldipine co-administration could be of clinical relevance.

Adult

Effect of cisapride and metoclopramide on digoxin bioavailability.

Pharmacokinetics of digoxin were investigated in six healthy volunteers following one week of digoxin monotherapy 0.25 mg b.i.d., and during coadministration of metoclopramide 10 mg t.i.d. or cisapride 10 mg t.i.d.. Metoclopramide reduced the peak plasma concentration of digoxin from 1.5 +/- 0.2 ng/ml to 1.1 +/- 0.1 ng/ml (mean +/- SEM) (p = 0.05), cisapride lowered the peak concentration to 1.3 +/- 0.1 ng/ml (p = 0.14). Metoclopramide prolonged the time required to reach the peak concentration of digoxin from 2 hr to 2.7 hr (p = 0.17), cisapride did not. Digoxin AUC0-12 (743 +/- 79 ng/ml.min) was reduced by 12% on coadministration of cisapride (653 +/- 38 ng/ml.min, p = 0.22) and by 19% on coadministration of metoclopramide (605 +/- 34 ng/ml.min, p = 0.06). It is concluded that the gastrointestinal absorption of digoxin is reduced by both substances. Monitoring of the patient's clinical status should be recommended when metoclopramide and cisapride are coadministered.

Adult

[Influence of the combination of theophylline and beta 2 agonists by oral route on pulmonary function of patients with chronic obstructive lung disease].

The role of the concurrent use of theophylline and beta-adrenergic agents for relief of bronchial obstruction is controversial. For this reason, we studied the lung function of 9 patients with chronic obstructive pulmonary disease, whose ages ranged from 51 to 69 (average 60.6 +/- 6.6) years, after the oral administration of theophylline and theophylline plus salbutamol. After withdrawal of all bronchodilators for 24 hours, the basal values of forced vital capacity (FVC) and forced expiratory volume in one second (FEV1) were obtained. Oral slow release theophylline (600 mg/day) was then administered for 7 days, followed by 7 days of the concurrent use of the same dose of theophylline plus salbutamol (16 mg/day). Spirometry was reevaluated at the end of each week. Pretreatment FVC ranged from 0.85 to 2.57 (average 1.78 +/- 0.64) liters, FEV1 from 0.70 to 1.64 (average 1.15 +/- 0.30) liters and theophylline serum levels from 0.1 to 3.1 (average 1.81 +/- 1.01) micrograms/ml. At the end of the first week, FVC was 1.38 to 3.26 (average 2.03 +/- 0.65) liters, FEV1 0.85 to 1.73 (average, 1.40 +/- 0.29) liters and theophylline serum levels 8.1 to 21.0 (average 13.40 +/- 4.18) micrograms/ml. With the concurrent use of theophylline and salbutamol FVC ranged from 1.24 to 2.57 (average 1.90 +/- 0.50) liters and FEV1 from 0.96 to 1.90 (average 1.46 +/- 0.33) liters, values not statistically different from theophylline alone.

Administration, Oral