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Biomedical subjects

D W Ashbrook

Publications and source records attributed to D W Ashbrook.

9 recordsLinked to original sources

Initial human experience with ganaxolone, a neuroactive steroid with antiepileptic activity.

PURPOSE: Studies were conducted to establish the safety, tolerability, and pharmacokinetics of the antiepileptic drug (AED) ganaxolone. Ganaxolone belongs to a novel class of neuroactive steroids called epalons, which specifically modulate the gamma-aminobutyric acid type A (GABA[A]) receptor in the central nervous system (CNS). Chemically related to progesterone but devoid of any hormonal activity, the epalons have potent antiepileptic, anxiolytic, sedative, and hypnotic activities in animals. METHODS: Ninety-six healthy male and female volunteers received ganaxolone in a variety of formulations, doses, and dosing regimens. The pharmacokinetics of ganaxolone were systematically characterized, and adverse events associated with drug use were documented. RESULTS: Ganaxolone was well tolerated after single doses (< or =1,500 mg) and after multiple doses (< or =300 mg b.i.d. for 10 days). Steady-state plasma levels (trough) occurred after approximately 7 days of dosing, with mean steady-state plasma concentrations (Cmax) in multiple dose studies of between 32 ng/ml (50-mg doses) and 376 ng/ml (500-mg doses). No serious or life-threatening adverse events attributed to the drug were observed. The majority of adverse events reported were mild (82%) to moderate (14%) and were limited to headache, dizziness, somnolence, gastrointestinal disturbances, and malaise. CONCLUSIONS: Ganaxolone alone or formulated with pharmaceutical-grade excipients is rapidly absorbed from the gastrointestinal tract after oral administration in doses ranging from 50 to 1,500 mg. Pharmacokinetic analysis revealed a linear and proportional increase in the area under the curve (AUC) and Cmax values with increasing dose within the expected therapeutic dose range. Safety and tolerability in the clinical program were unremarkable.

Administration, Oral↗

Soporific effect of the neurosteroid pregnanolone in relation to the substance's plasma level: a pilot study.

The soporific effect of the neuroactive steroid pregnanolone, a metabolite of progesterone, and its relationship with plasma concentrations was assessed in 18 young, healthy, male volunteers for 2 h after administration of a single dose of pregnanolone prepared in two different formulations. Sedation was measured as sleep propensity and power increase in the low frequency delta band of the quantified EEG, based on 5-min polygraphic (EEG, EOG, EMG) recordings under resting conditions, which were performed immediately before, and 30, 60, 90, and 120 min after intake of the study drug. With both formulations, there was a time-dependent increase in plasma concentration of pregnanolone with highest values 1-2 h postdosing. The model of short polygraphic recordings under resting conditions demonstrated soporific effects of pregnanolone. Compared to predosing baseline the number of sleep attempts and the time asleep increased after treatment with a peak 60 min postdosing. Quantitative EEG analysis revealed an increase of absolute amplitude in the delta frequency range with a comparable temporal pattern. Correlations between the soporific effect and plasma concentrations of pregnanolone suggest that the effects were drug-related, although this has to be replicated with placebo control.

Adult↗

Multicenter trial of L-carnitine in maintenance hemodialysis patients. II. Clinical and biochemical effects.

Since carnitine deficiency has been reported in some patients undergoing maintenance hemodialysis, we studied the effects of intravenous infusion of L-carnitine or placebo at the end of each dialysis treatment. The trial, which lasted seven months (one month baseline, 6 months treatment) was multicenter, double blind, placebo controlled, and randomized. Eighty-two long-term hemodialysis patients, who were given either carnitine (N = 38) or placebo (N = 44), completed this study. In each group, clinical and biochemical parameters during treatment were compared with baseline values. Intra-dialytic hypotension and muscle cramps were reduced only in the carnitine treated group, while improvement in post-dialysis asthenia was noticed in both carnitine and placebo groups. Maximal oxygen consumption, measured during a progressive work exercise test, improved significantly in the carnitine group (111 +/- 50 ml/min. P less than 0.03) and was unchanged in the placebo group. L-carnitine treatment was associated with a significant drop in pre-dialysis concentrations of serum urea nitrogen, creatinine and phosphorus (means +/- SEM, 101 +/- 4.5 to 84 +/- 3.9, 16.7 +/- 0.67 to 14.7 +/- 0.64, and 6.4 +/- 0.3 to 5.5 +/- 0.4 mg/dl, respectively, P less than 0.004). No significant changes in any of these variables were noticed in the placebo group. Mid-arm circumference and triceps skinfold thickness were measured in 11 carnitine and 13 placebo treated patients. Calculated mid-arm muscle area increased in the carnitine patients (41.37 +/- 2.68 to 45.6 +/- 2.82 cm2, P = 0.05) and remained unchanged in the placebo patients.(ABSTRACT TRUNCATED AT 250 WORDS)

Carnitine↗

Qualitative and quantitative differences between the postsynaptic alpha adrenoceptors of rabbit ear artery and thoracic aorta.

The alpha adrenoceptor properties of the rabbit ear artery and thoracic aorta were assessed using isolated blood vessel rings mounted in tissue baths. Labetalol, an alpha and beta receptor antagonist, caused dose-dependent contractions in control, reserpinized and surgically denervated ear arteries. This contraction was inhibited by phentolamine and abolished by the irreversible alpha receptor antagonist, N,N'-bis-(O-methoxy-benzylaminohexyl) cystamine tetrahydrochloride. Thoracic aorta failed to respond to labetalol. Using labetalol as an antagonist against methoxamine, labetalol pA2 values were 7.4 +/- 0.3 (95% confidence interval) and 7.13 +/- 0.25 in ear artery and aorta, respectively. Thus, labetalol had the same affinity for the alpha receptors of these two vessels but was an alpha agonist only in the ear artery. Norepinephrine ED50 values and dissociation constants (KA) were determined by analysis of dose-response data with and without partial inactivation of alpha receptors by phenoxybenzamine. Ear artery and aorta norepinephrine ED50 values, 4.24 (2.24-8.03) X 10(-8) M and 2.48(1.64-3.76) X 10(-8) M, respectively, were not significantly different. In contrast, norepinephrine KA values differed by a factor of 32, 4.11 (3.02-5.60) X 10(-6) M and 1.29 (0.85-1.94) X 10(-7) M, respectively. Receptor reserves were also markedly different in these vessels. Thus, ED50 was achieved with 1% receptor occupancy in ear artery as compared to 16% receptor occupancy in aorta. It is concluded that the alpha receptors of ear artery and aorta are both qualitatively and quantitatively different.

Animals↗

Effects of reserpinization, surgical denervation and in vitro chemical denervation with 6-hydroxydopamine on the contractile response of isolated rabbit ear artery to propranolol.

The contractile effect of propranolol in isolated rabbit ear artery was assessed in reserpinized and in surgically and chemically denervated blood vessels. Reserpinization and surgical denervation either had no effect on or enhanced the ear artery contractile response to 10(-6) to 10(-4) M propranolol. In contrast, the contractile response to propranolol was nearly abolished after denervation of the ear artery in vitro with 6-hydroxydopamine (6-OHDA). Dose-response curves to norepinephrine were shifted to the left by factors of 4.9 in 6-OHDA denervated ear arteries and 15.6 in untreated arteries in the presence of 10(-7) M desipramine. The diluent for 6-OHDA shifted both the norepinephrine and propranolol dose-response curves to the right. It is proposed that propranolol caused a contractile response in ear artery by an action on the postsynaptic tissues of this vessel. 6-OHDA denervation caused nonspecific desensitization in rabbit ear artery leading to the loss of response of this vessel to propranolol.

Animals↗

The evaluation of cardiovascular drugs in the anaesthetized, unrestrained rat.

A method is reported which allows continuous long-term drug administration and simultaneous blood pressure measurement in the unanaesthetized unrestrained rat. The external jugular vein and abdominal aorta were cannulated and the opposite ends of the cannulae were passed subcutaneously and exteriorized at the back of the head. They were then passed through a spring attached at the lower end to the skull and, at the upper end, to a counter-weighted cantilever. In rats so prepared, infusion of angiotensin amide 200 ng kg-1 min-1 caused a rise of blood pressure which lasted the 48 h infusion period. Heart rate decreased initially but recovered within 6 h. Angiotensin amde 30 ng kg-1 min-1, infused up to seven days, was without effect on blood pressure or heart rate, and both doses of angiotensin amide failed to alter cardiac catecholamine turnover. Hydralazine, mecamylamine and clonidine reduced blood pressure to 63, 62 and 84% of control respectively while clonidine induced a transient increase before its depressor effect. Heart rate was increased by hydralazine to 138%, and decrease by clonidine to 74% of control, and was unaffected by mecamylamine. The magnitude of pressor response to noradrenaline, tyramine and angiotensin was reduced by hydralazine and increased by mecamylamine. Clonidine increased the pressor response to angiotensin but had no effect on that to noradrenaline or tyramine.

Angiotensin II↗