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M Dey

Publications and source records attributed to M Dey.

33 records · Page 2Linked to original sources

The dissolution and bioavailability of etodolac from capsules exposed to conditions of high relative humidity and temperatures.

The dissolution and bioavailability of etodolac from capsules exposed to high relative humidity and temperature were compared to those from capsules stored at room temperature (RT). Dissolution of stressed and control capsules was evaluated using a USP basket apparatus at 100 rpm with 900 mL pH 7.5 phosphate buffer (0.05 M) at 37 degrees C. The dissolution of etodolac from capsules exposed to stressed conditions was also evaluated with enzymes (pancreatin, 1%, w/v) added to the dissolution medium. The bioavailability of etodolac from capsules exposed to stressed conditions was compared in both dogs and humans to capsules stored at RT conditions. Capsules, 200 and 300 mg, exposed to stressed conditions failed the dissolution (without enzymes) specification [not less than 85% released (80% Q) in 30 min]. However, upon enzyme addition, all capsules met the specification. The rate and extent of absorption from these 200 and 300 mg etodolac capsules in dogs were equivalent to those from capsules stored at RT conditions that passed the dissolution specification. Similarly, the bioavailability of etodolac from 300 mg capsules that failed the dissolution specification upon exposure to stressed conditions was equivalent to that of control capsules in 24 adult male volunteers. Thus, an in vitro dissolution test with enzymes provides a better indication of stressed capsule performance in vivo.

Animals↗

Thyroidal vascular responsiveness to parasympathetic stimulation is increased in hyperthyroidism.

It has been suggested that thyroid blood flow (TBF) is regulated by both parasympathetic and sympathetic nerves. Because thyroxine (T4) pretreatment increases the sensitivity of the thyroid to the effects of thyrotropin, the present study was conducted to determine whether T4 pretreatment can also sensitize the thyroid to the effect of parasympathetic stimulation on TBF. Untreated or T4-pretreated rats were anesthetized, and both superior laryngeal nerves (SLN) were transected. TBF was continuously monitored by laser Doppler flowmetry (LDF), and thyroid vascular conductance (TVC) was also determined by the microsphere technique. Stimulation of the SLN had no effect on TBF or TVC in untreated rats when measured by LDF or microspheres. In contrast, stimulation of the SLN after T4 pretreatment increased TBF by 65 +/- 21% over prestimulus levels as measured by LDF. TVC was also increased significantly (P < 0.05) in these rats compared with TVC in a nonstimulated T4-pretreated group. To examine the role of muscarinic receptor activation in the mediation of these increases in TVC, T4 pretreated rats were given saline or atropine prior to SLN transection. Stimulation of the SLN in T4-pretreated rats given saline increased TVC significantly (P < 0.05) compared with TVC in the nonstimulated saline-treated or atropine-treated group. In contrast, TVC in the stimulated group given saline was not significantly different from the group that was stimulated after atropine injection. Our results suggest that the thyroidal vascular responsiveness to parasympathetic stimulation is increased in the hyperthyroid condition.

Animals↗

Endogenous neuropeptide Y regulates thyroid blood flow.

Neuropeptide Y (NPY) is present in thyroid sympathetic nerve fibers. To assess the involvement of endogenous NPY in the regulation of thyroid function, a NPY antiserum was produced in a rabbit, characterized, and used for immunization of normal and hyperthyroid rats. Plasma thyroxine, thyroid-stimulating hormone (TSH), thyroidal, and other organ blood flows (BF) were measured in anesthetized (ketamine and pentobarbital sodium) male Sprague-Dawley rats at 1 h after intravenous administration of 1 ml of the antiserum, normal rabbit serum, or saline. Immunization against NPY had no effect on the plasma levels of thyroxine, TSH, or arterial blood pressure, but it significantly increased thyroidal BF in normal rats. In the hyperthyroid rats (treated with 5 micrograms.100 g body wt-.day-1 thyroxine for 6 days), the NPY antiserum reversed the hyperthyroidism-induced decrease in thyroid BF and significantly increased duodenal and testicular BF values, but it did not alter BF values in four other organs. These results indicate that endogenous NPY regulates thyroid BF in normal rats. They also provide an example of NPY involvement in the pathophysiological adjustment of some organs to hyperthyroidism.

Animals↗

NPY is not a primary mediator of the acute thyroid blood flow response to sympathetic nerve stimulation.

It has been suggested that thyroid blood flow is regulated by both sympathetic and parasympathetic nerves. The purpose of our experiments was to study the role of neuropeptide Y (NPY) in the sympathetic neural control of thyroid blood flow. Sympathetic nerve fibers to the thyroid contain both norepinephrine (NE) and NPY. Therefore, NE (15 nmol iv bolus) and NPY (12 or 1.7 nmol/kg body wt iv infusion; 4 min) were administered to anesthetized male rats (250-300 g) either alone or together, with or without an alpha-adrenergic receptor blocker (phentolamine; 10 mg/kg body wt iv bolus). Experiments were also performed in which the cervical sympathetic trunks were stimulated (30 Hz, 10 V; 0.5 ms; 2 min) with or without phentolamine. Thyroid blood flow was monitored continuously by laser-Doppler blood flowmetry. Results are expressed as thyroid vascular conductance (TVC). NE or NPY at both doses decreased TVC relative to that in control saline-infused rats (P < 0.05). No potentiation of the NE effect by NPY was observed when the first dose of NE was injected 2 min after a high or low dose of NPY. However, the effect of a second dose of NE, injected 15 min after the end of the low dose of NPY, was prolonged compared with the effect of a second dose of NE in saline-infused rats. Phentolamine blocked the effect of NE but not that of NPY. Stimulation of the cervical sympathetic trunks decreased TVC (P < 0.01 vs. sham), and this effect was completely blocked by phentolamine.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Importance of photoperiods in determining temporal pattern of annual testicular events in rose-ringed parakeet (Psittacula krameri).

Male rose-ringed parakeets (Psittacula krameri) were transferred to a long photoperiod (LP; LD 16:8) or a short photoperiod (SP; LD 8:16) for 45 or 90 days on four dates corresponding to the beginnings of different reproductive phases in an annual testicular cycle, and testicular responsiveness was evaluated by comparison with the testicular volume, weight, seminiferous tubular diameter, and germ cell profiles of birds in a natural photoperiod (NP). Exposure of birds to LP during the progressive phase (November) led to precocious maturation of testes after 45 days, but induced regression at 90 days. After showing retarded gametogenic functions at 45 days, parallel (November) SP birds exhibited an accelerated rate of germ cell formation at day 90. During the prebreeding phase (January), there were no remarkable differences in any features of testes among NP. LP, and SP birds at 45 days, but gonadal involution in LP parakeets and active spermatogenesis in SP birds occurred after 90 days. The testes did not show any response to LP or SP for 45 and 90 days when the birds were transferred to altered photoperiods during the breeding (March) and preparatory (June) phases, indicating that the parakeets were photorefractory for at least 6 months (March through September). The results also suggest that initiation and termination of seasonal gametogenic activity in parakeets are possibly functions of endogenous rhythmicity or extraphotoperiodic environmental factors. Duration of light may have certain influences on the attainment of annual peak in spermatogenesis, but in all probability the species has a low photoperiod threshold for induction of testicular growth.

Animals↗

Pharmacokinetics and pharmacodynamics of long-acting propranolol 60-mg capsules: a comparative evaluation.

This double-blind, placebo-controlled, four-period cross-over study was undertaken to evaluate the sustained-release characteristics of long-acting propranolol hydrochloride (Inderal LA, Ayerst Laboratories, New York, NY) 60 mg qd, to compare the pharmacokinetic and pharmacodynamic properties of this formulation with conventional propranolol 20 mg tid, and to evaluate the proportionality of long-acting propranolol 60 mg (LA 60 mg) and long-acting propranolol 80 mg (LA 80 mg). Pharmacodynamic effects were evaluated in 34 healthy subjects by assessing heart rate, systolic blood pressure, and the product of heart rate and systolic blood pressure (double product) after exercise-induced tachycardia following both acute (day 1) and steady state (day 4) drug administration. The Cmax following administration of LA 60 mg was 9.5 and 11.4 ng/mL on days 1 and 4, respectively, compared with 18.8 and 20.0 ng/mL with 20 mg tid (P less than .0001). The tmax for LA 60 mg was significantly later (P less than .0001) than for conventional propranolol. Additionally, the apparent plasma half-life was significantly longer (P less than .0001) than with conventional propranolol. The LA 60-mg formulation was dose proportional to the LA 80-mg formulation. Pharmacodynamic evaluations showed no significant differences between LA 60 mg and 20 mg tid at any times tested with either acute or steady state dosing. This study demonstrates that LA 60 mg displays characteristics of a sustained-release formulation, is proportional with LA 80 mg, and produces pharmacodynamic effects that are similar to 20-mg tid dosing.

Administration, Oral↗

Relationship between plasma propranolol concentration and dose in young, healthy volunteers.

The relationship between dose and bioavailability of propranolol was determined in 12 healthy male subjects. The doses employed were 10, 40, 80 or 160 mg of propranolol HCl given three times daily for 4 days. Daily minimum plasma levels showed that there was no accumulation of the drug. In all subjects, non-linear relationships were observed between peak plasma level, or area under the plasma concentration-time curve, and dose. The between subject variation of these parameters was not dose related.

Administration, Oral↗

Sympathetic thyroidal vasoconstriction is not blocked by a neuropeptide Y antagonist or antiserum.

Sympathetic nerve fibers to thyroid blood vessels contain both norepinephrine (NE) and neuropeptide Y (NPY). To assess the involvement of endogenous NPY in the sympathetic neural control of thyroid blood flow, appropriate doses of a selective NPY antagonist, alpha-trinositol, and an NPY antiserum (NPY-AS) were used during cervical sympathetic trunk stimulation in anesthetized rats. During all experiments, thyroid blood flow was continuously monitored by laser Doppler blood flowmetry. Neither alpha-trinositol nor NPY-AS blocked the thyroidal vasoconstriction evoked by either the first or second stimulation of the cervical sympathetic trunks. Our results suggest that NPY is not involved either directly or indirectly during acute sympathetic vasoconstriction in the rat thyroid gland.

Animals↗

When does metoclopramide facilitate transpyloric intubation?

Postpyloric feeding probably reduces the incidence of tracheobronchial aspiration and improves feeding tolerance. However, duodenal intubation is often unsuccessful in critically ill patients due to gastric atony. Metoclopramide improves gastric emptying. In a pilot study, 12 adult patients were administered 10 to 20 mg of intravenous metoclopramide after weighted nasal feeding tubes had failed to spontaneously pass distal to the pylorus. In no patient did metoclopramide induce transpyloric passage of the tube. A randomized prospective study involving 10 adult patients was conducted to examine the effect of preinsertion intravenous metoclopramide on transpyloric intubation. All patients had failed to achieve spontaneous duodenal intubation. Five patients received 20 mg of metoclopramide 10 min prior to nasal insertion of a weighed feeding tube. Five control patients received no premedication. Four metoclopramide patients achieved duodenal intubation immediately. In none of the control patients did transpyloric intubation occur (p = 0.048). Metoclopramide, administered after nasogastric intubation, is ineffective in promoting transpyloric advancement of feeding tubes. There is a significant increase in transpyloric intubation when metoclopramide is administered prior to tube insertion.

Adult↗

A pharmacokinetic model for isosorbidedinitrate, isosorbide-2-mononitrate, and isosorbide-5-mononitrate.

A pharmacokinetic model is proposed to describe the plasma levels of isosorbidedinitrate (ISDN) and its two pharmacologically active metabolites, isosorbide-2-mononitrate (IS-2MN) and isosorbide-5-mononitrate (IS-5MN), following the oral administration of several 20-mg sustained release formulations of ISDN. Absorption of ISDN from the gastrointestinal tract appears first-order. A three compartment model is used to describe ISDN systemic plasma levels with t1/2 alpha = 7 min, t1/2 beta = 48 min and t1/2 gamma = 7.5 hr. The long t1/2 gamma is due to the slow release of ISDN from a peripheral compartment. ISDN undergoes extensive first-pass hepatic metabolism to IS-2MN and IS-5MN. The metabolic pathways appear to be close to saturation at an ISDN dose of 20 mg. Both IS-2MN and IS-5MN systemic plasma levels can be described by one compartment models with first-order elimination (respective elimination half-lives are 1.9 and 5.1 hr). The central compartment volumes of distribution for ISDN, IS-2MN and IS-5MN (116, 57, and 38 liters, respectively) are in agreement with reported literature values. This model is of particular usefulness as a formulation tool in designing sustained release ISDN formulations of the type investigated here since the observed first-order absorption rate constant correlates well with the in vitro first-order dissolution rate constant. Therefore, for these formulations, plasma levels can be simulated using data generated from in vitro dissolution studies, thus obviating the need for multiple human bioavailability studies.

Adult↗