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Biomedical subjects

A J Atkinson

Publications and source records attributed to A J Atkinson.

At least 37 records · Page 2Linked to original sources

Characterization of theophylline binding to serum proteins in pregnant and nonpregnant women.

Sera from 10 subjects in the third trimester of pregnancy and from 10 nonpregnant women were studied to elucidate the mechanism underlying decreased theophylline protein binding during pregnancy. Consistent with the physiologic hypoalbuminemia of pregnancy, serum albumin concentrations averaged only 3.2 +/- 0.3 gm/dl (+/- SD) in pregnant subjects, compared with 4.4 +/- 0.3 gm/dl in control subjects (p less than 1 x 10(-6], and this was the main cause of decreased theophylline binding. Saturation binding studies indicated a single class of theophylline binding sites. Theophylline binding capacity (N) was greater in pregnant (N = 4.3 +/- 1.0) than in nonpregnant (N = 3.3 +/- 0.4) subjects, but binding affinity (ka) averaged only 227 +/- 69 (mol/L)-1 in pregnant subjects, compared with 303 +/- 44 (mol/L)-1 in control subjects (F2,17 = 4.26; p = 0.032). At a theophylline plasma concentration of 10 micrograms/ml, the combined effects of hypoalbuminemia and lowered ka would reduce theophylline binding to 31% +/- 3% in pregnant women, compared to 39% +/- 3% in nonpregnant control subjects (p less than 1 x 10(-5]. Nonesterified fatty acid concentrations were similar in both subject groups and did not contribute to the pregnancy-associated decrease in theophylline binding.

Adult↗

Activation of renin-angiotensin system does not cause skeletal muscle cramps during hemodialysis.

Activation of the renin-angiotensin system usually occurs during hemodialysis and in hemodialyzed normal dogs parallels reductions in blood flow to a tissue group that is largely composed of skeletal muscle. To determine if excessive activation of this system might cause dialysis-associated skeletal muscle cramps in some patients, we conducted a double-blind, randomized and balanced trial in which 5 patients with frequent dialysis-associated cramps were each given either a 25 mg oral dose of captopril or placebo 1 h before 8 consecutive dialyses. Captopril increased the frequency of dialyses complicated by skeletal muscle cramps in 1 patient and did not affect cramp frequency in the other 4 patients. Predialysis plasma renin activity (PRA) averaged 3.9 ng/ml/h (+/- SD) and was the same as in unselected hemodialysis patients. Following captopril, PRA increased by an average of 2.2 +/- 0.7 times, similar to the 2.6-fold increase that was reported when this drug was used to prevent dialysis-associated hypertensive crises. However, hemodialysis by itself did not activate the renin-angiotensin system as consistently in patients with frequent dialysis-associated skeletal muscle cramps as in unselected hemodialysis patients and the ratio of post- to predialysis PRA averaged 1.0 +/- 0.6. We conclude that the renin-angiotensin system does not mediate, and that its activation during hemodialysis may actually help prevent, dialysis-associated skeletal muscle cramps.

Aged↗

Pharmacokinetics of N-acetylprocainamide in patients profiled with a stable isotope method.

N-Acetylprocainamide (NAPA) absorption and disposition were profiled in five patients with ventricular arrhythmias by the simultaneous intravenous administration of NAPA-13C and oral administration of a 500 mg NAPA hydrochloride tablet. NAPA distribution was modeled with a three compartment mammillary system. The central compartment volume of 14.1 +/- 2.6 L (mean +/- SD) was similar to expected intravascular space, corrected for NAPA partitioning between erythrocytes and plasma. Other compartment volumes, intercompartmental and nonrenal clearances, and the steady-state distribution volume of 1.45 +/- 0.09 L/kg were similar to normal subject values. The least-squares estimate of 1.67 for the NAPA renal clearance/creatinine clearance ratio was similar to the value of 1.68 previously reported for functionally anephric patients and showed the expected age-associated decrease. The oral NAPA dose was 78.0% +/- 11.7% absorbed and interindividual variation in NAPA absorption was correlated with fast intercompartmental clearance (r = 0.89, p = 0.045). Because fast intercompartmental clearance partly reflects splanchnic blood flow, hemodynamic changes may affect NAPA bioavailability, as has been found for procainamide.

Absorption↗

Splanchnic tissues are a major part of the rapid distribution spaces of inulin, urea and theophylline.

Distribution of kinetics of inulin, [14C]urea and theophylline were studied in five anesthetized dogs after splenectomy and gastrointestinal resection. Distribution was modeled with three-compartment mammillary systems in which the central compartment corresponds to intravascular space and the two peripheral compartments have different rates of transcapillary exchange. Compared with results in intact dogs, the surgical procedure removed between 41 and 55% of the rapidly equilibrating tissues and reduced the permeability coefficient-surface area products for the rapidly equilibrating inulin and urea compartments proportionately. This is consistent with the concept that splanchnic organs equilibrate rapidly with inulin and urea because they are supplied by fenestrated and discontinuous capillaries that are prominent in the splanchnic vascular bed. However, splanchnic organs probably do not contain all rapidly equilibrating tissues, and somatic tissues may contribute as much as 36 and 22%, respectively, of the rapidly equilibrating inulin and urea compartments. Cardiac output averaged 2.87 +/- 0.86 liters/min and was similar to the sum of compartmental blood flows estimated from the intercompartmental clearances of urea and inulin (2.74 +/- 0.96 liters/min) and to the sum of theophylline intercompartmental clearances (2.62 +/- 0.74 liters/min). Theophylline intercompartmental clearance to each peripheral compartment was similar to estimated compartmental blood flow.

Animals↗

D-xylose testing: a review.

The efficacy of D-xylose testing in clinical situations has been reviewed in the light of recent kinetic studies. The standard 25-g D-xylose test in adults, based on analysis of 5-h urine collection and a 1-h serum sample, discriminates between normal subjects and patients with proximal small intestinal malabsorption with greater than 95% specificity and sensitivity. The 1-h serum level measured after administering this dose is also useful in evaluating malabsorption in patients with intermediate degrees of renal insufficiency and in the elderly. The 1-h serum test after administration of 5 g of D-xylose should be used in pediatrics and is greater than 91% sensitive and close to 100% specific. The [14C]D-xylose breath test with 1 g of D-xylose has been useful in identifying malabsorption caused by bacterial overgrowth in the small intestine.

Breath Tests↗

Acute tolerance to cocaine in humans.

There is controversy as to whether acute tolerance develops to the principal effects of cocaine in humans. The studies described here demonstrate the phenomenon of acute tolerance to cocaine chronotropic and subjective effects and the rate and extent of tolerance development. Stable plasma cocaine concentrations were produced and then maintained in volunteer cocaine users by administering an intravenous cocaine injection followed by a cocaine infusion designed to compensate for the plasma clearance of cocaine. The euphoric effect (high) intensified to a peak at about 1 hour and then declined toward baseline at 4 hours despite the presence of constant plasma cocaine levels. The chronotropic effect reached a peak within 10 minutes and then declined, with a half-life of 31 +/- 13 (mean +/- SD) minutes toward a plateau at 33% +/- 21% of its peak intensity. Tolerance development was quantified as an exponential process, with a rate constant (tolerance factor) accounting for the progressive alteration of the cocaine concentration-effect relationship.

Adult↗

Comparison of the pharmacokinetic and pharmacodynamic properties of procainamide and N-acetylprocainamide.

Although procainamide (PA) has been widely used to treat patients with both ventricular and supraventricular arrhythmias since 1951, more than twenty years elapsed before N-acetylprocainamide (NAPA) was identified as a major PA metabolite and shown in PA-treated patients to have plasma concentrations generally equaling or being 2 to 3 times greater than those of the parent drug. Numerous investigations have been conducted since then to characterize the pharmacokinetics and pharmacodynamics of NAPA and to compare these properties with those of PA. Salient differences have been that the elimination half-life of NAPA is 2.5 times that of PA, even when renal function is normal; that NAPA has a spectrum of electrophysiologic action that differs from PA in that NAPA only prolongs action potential duration; and that NAPA is less likely than PA to cause a syndrome resembling systemic lupus erythematosus. Although these properties have provided an impetus for the development of NAPA as an antiarrhythmic drug in its own right, emphasis is placed in this review on the implications of these findings for individualizing PA therapy.

Acecainide↗

Use of kinetic methods to evaluate D-xylose malabsorption in patients.

D-Xylose kinetics were studied after administering 25 gm oral and 10 gm intravenous doses to six normal subjects and to 12 patients who were being evaluated for the presence of intestinal malabsorption. D-Xylose absorption was characterized by an absorption rate constant (ka) and a rate constant reflecting nonabsorptive removal of D-xylose from the small bowel (ko). In normal subjects, mean ka was 0.915 +/- 0.228/hr (+/- SD), and the extent of oral D-xylose absorption averaged 81.0% +/- 11.6%. In seven of the 12 patients, D-xylose absorption was less than 60% complete. In four of them, ka was below the normal limit of 0.367/hr and was consistent with a primary defect in intestinal D-xylose absorption. Two patients with low ka values and the remaining three patients with less than 60% D-xylose absorption had ko values exceeding 0.650/hr, suggesting that excessive nonabsorptive loss contributed to low D-xylose bioavailability. We found that standard tests may identify some patients as having primary defects in D-xylose absorption rate or nonabsorptive loss and propose that breath H2 concentration measurements may also help distinguish between bacterial overgrowth and rapid intestinal transit as causes of excessive nonabsorptive loss.

Adult↗

Effect kinetics of N-acetylprocainamide-induced QT interval prolongation.

We attempted to correlate clinical response with the effects of N-acetylprocainamide (NAPA) on the QT interval in five patients with stable chronic ventricular arrhythmias. A 15 mg/kg dose of NAPA was administered and a pharmacokinetic-pharmacodynamic model was used to relate plasma NAPA concentrations to changes in corrected QT interval (QTc). NAPA volume of distribution, elimination clearance, and elimination half-life averaged 1.37 +/- 0.19 L/kg, 174 +/- 63 ml/min, and 8.2 +/- 1.4 hours, respectively (mean +/- SD), and NAPA renal clearance averaged 1.9 +/- 0.6 times creatinine clearance. QTc prolongation was characterized by a linear-effect model in the first four patients and averaged 2.4 msec for every microgram per milliliter NAPA in a hypothetic biophase. QTc prolongation in patient 5 was exaggerated and was analyzed with an Emax model. Nonetheless, NAPA did not control this patient's arrhythmia. Conversely, patient 1 subsequently developed torsade de pointes even though QTc prolongation in this patient was comparable to that in patients 2 through 4, who responded satisfactorily to NAPA. We conclude that QT interval changes during initial NAPA administration do not reliably predict subsequent clinical response.

Acecainide↗

D-xylose absorption and disposition in patients with moderately impaired renal function.

D-Xylose kinetics were studied after oral and intravenous administration to 10 patients with impaired renal function, three of whom were being evaluated for intestinal malabsorption. The 0.32 +/- 0.06 L/kg (mean +/- SD) distribution volume of D-xylose in patients with uncomplicated renal impairment was larger than the value of 0.23 +/- 0.04 L/kg that we reported previously for normal subjects (P less than 0.01). Renal clearance was also reduced, averaging 87% of glomerular filtration rate estimated from creatinine clearance, so that the elimination-phase half-life was prolonged to 138 +/- 39 minutes from 75 +/- 11 minutes in normal individuals (P less than 0.01). The 25 gm oral D-xylose dose was 77.4% +/- 14.8% absorbed in the patients with uncomplicated renal impairment, similar to the 69.4% +/- 13.6% absorption reported in normal individuals. However, the absorption half-life was prolonged from 31 +/- 12 minutes in normal subjects to a value of 62 +/- 23 minutes (P less than 0.02). Of the usual clinical indexes of D-xylose absorption, the serum concentration measured 1 hour after the oral dose was best correlated with the extent of D-xylose absorption (r = 0.76; P less than 0.01), and the standard lower normal limit of 0.2 mg/ml was satisfactory.

Adult↗

Theophylline distribution kinetics analyzed by reference to simultaneously injected urea and inulin.

Theophylline distribution kinetics were studied after i.v. injection in five anesthetized dogs. [14C]Urea and inulin were injected simultaneously as reference compounds to measure body fluid spaces and to calculate compartmental blood flows and permeability coefficient-surface area products for transcapillary exchange. The distribution of all three compounds was modeled with three-compartment systems in which the central compartment corresponds to intravascular space. The total volume of theophylline distribution averaged 0.72 +/- 0.09 liters/kg (+/- S.D.), indicating net tissue binding as reflected in a tissue/intracellular water partition coefficient of 1.17 +/- 0.10. Cardiac output measurements averaged 4.78 +/- 0.95 liters/min and were similar to the sum of compartmental blood flows estimated from the intercompartmental clearances of urea and inulin (4.62 +/- 1.10 liters/min) and to the sum of theophylline intercompartmental clearances (5.10 +/- 1.29 liters/min). Theophylline intercompartmental clearance to each peripheral compartment was faster than expected from its free-water diffusion coefficient and was similar to estimated compartmental blood flow. It is possible that theophylline transcapillary exchange is carrier mediated and that its rapidity contributes to the frequency of adverse reactions after i.v. administration of this drug.

Animals↗

Theophylline pharmacokinetics in pregnancy.

Theophylline pharmacokinetics were studied serially in five women during and after pregnancy. Theophylline protein binding was reduced to 11.1% +/- 4.7% (P less than 0.01) and 13.0% +/- 5.9% (P less than 0.01) during the second and third trimesters of pregnancy, respectively, compared with 28.1% +/- 2.8% when the patients were more than 6 months postpartum. Similar comparisons indicate that theophylline distribution volume and elimination t1/2 were increased from 30.7 +/- 4.4 L and 262 +/- 57 minutes to 36.8 +/- 4.2 L (P less than 0.05) and 389 +/- 73 minutes (P less than 0.01) in the third trimester of pregnancy. In the second and third trimesters, intrinsic nonrenal clearance was reduced to 0.82 +/- 0.25 ml/min X kg (P less than 0.05) and 0.67 +/- 0.18 ml/min X kg (P less than 0.01) compared with a remote postpartum value of 1.25 +/- 0.37 ml/min X kg. However, these reductions were offset by increases in theophylline intrinsic renal clearance so that apparent reductions in the overall unbound clearance of this drug did not reach statistical significance either during pregnancy or in the early postpartum period.

Asthma↗

Comparison of prednisolone kinetics in patients receiving daily or alternate-day prednisone for asthma.

Prednisolone pharmacokinetics were compared in seven patients with asthma managed by alternate-day prednisone therapy and in seven patients with asthma requiring daily doses of prednisone. Steroid requirements of these patients were carefully characterized and had been stable for at least 12 months. Prednisolone volume of distribution, elimination clearance, and elimination t1/2 averaged 0.606 +/- 0.061 and 0.553 +/- 0.162 L/kg, 2.28 +/- 0.43 and 1.93 +/- 0.54 ml/min/kg, and 204 +/- 44 and 214 +/- 19 minutes in patients receiving alternate-day or daily prednisone therapy, respectively. These results indicate that differences in these pharmacokinetic parameters do not account for the well-established clinical observation that some patients require daily prednisone doses and that their disease cannot be managed with alternate-day steroid therapy.

Adult↗

Pharmacokinetics of N-acetylprocainamide.

Shortly after Dreyfus and his colleagues demonstrated that procainamide was metabolized by acetylation to N-acetylprocainamide (NAPA), Drayer, Reidenberg and Sevy reported that NAPA had antiarrhythmic activity in an animal model. We confirmed these findings and found that plasma levels of NAPA were high enough to warrant consideration in managing patients requiring procainamide therapy. However, the actual impetus for developing NAPA as an antiarrhythmic drug in its own right was provided by the initial studies of NAPA pharmacokinetics in normal subjects. In these studies, we showed that NAPA has an elimination-phase half-life that is more than twice as long as procainamide and suggested that patient compliance and arrhythmia suppression might be improved if NAPA were used to circumvent the inconvenience of the frequent dosing schedule that has been recommended for procainamide. From the standpoint of managing individual patients with NAPA, the pharmacokinetics of this drug continue to provide the scientific basis for designing dose regimens that will have maximal antiarrhythmic efficacy and minimal toxicity. This review summarizes the salient features of NAPA pharmacokinetics and outlines an approach for individualizing therapy with this drug.

Acecainide↗

Kinetics of cocaine distribution, elimination, and chronotropic effects.

The pharmacokinetics of cocaine were studied in five subjects with histories of drug abuse who were otherwise healthy. A two-compartment system was used to model the distribution kinetics of the drug. The steady-state volume of distribution averaged 131.8 L or 1.96 L/kg, elimination clearance was 2.10 L/min, and the t 1/2 was 48 minutes. Cocaine concentrations in a hypothetic biophase were estimated to correlate the chronotropic effects of this drug with its pharmacokinetics. The experimentally determined kinetic parameters indicate that the peak chronotropic effect would occur 7.3 minutes after intravenous bolus injection of cocaine, and that biophase cocaine concentrations would initially accelerate the heart rate by 0.3 bpm for each 1 ng/ml. The kinetic analysis also demonstrated that the chronotropic effects of cocaine decline more rapidly than either plasma levels or biophase concentrations. This progressive attenuation in intensity of the chronotropic effect of a given biophase cocaine concentration could be modeled as a first-order process and is compatible with either the intervention of homeostatic reflex mechanisms or the phenomenon of acute tolerance.

Adult↗

Clinical and laboratory investigation of the effects of epsilon-aminocaproic acid on hemostasis.

We previously reported that epsilon-aminocaproic acid (EACA) prolonged the bleeding time in patients with intracranial aneurysms when given in doses of 36 to 48 gm/day. We now show that doses of 24 gm/day also prolong the bleeding time, but only after 72 hours of continuous infusion. The effect on the bleeding time correlates with the duration of EACA therapy but not with the plasma level of the drug. Bleeding times return toward normal within 72 hours of discontinuing EACA infusions. The factors responsible for the bleeding time prolongation were investigated. In vitro, EACA inhibited adenosine diphosphate- and collagen-induced platelet aggregation and the release of platelet adenosine triphosphate and serotonin. It also prevented the adenosine diphosphate-stimulated binding of fibrinogen to intact as well as to chymotrypsin-treated platelets. However, platelets obtained from patients who had received EACA showed little functional impairment. This observation indicates that the focus of EACA activity in vivo is probably not the platelet per se, but the platelet-vessel wall interaction or a vascular component alone. EACA did not enhance prostacyclin production or release from cultured bovine endothelial cells. The fact that the effects of the drug on the bleeding time were related to the duration of EACA therapy suggests that an accumulation of the drug on the vessel wall may be required before alterations in hemostasis are observed. EACA in a daily dose of 24 gm significantly impaired fibrinolysis, but supranormal levels of fibrinolytic activity were observed within 72 hours of stopping the drug.(ABSTRACT TRUNCATED AT 250 WORDS)

Aminocaproates↗