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Biomedical subjects

M Garty

Publications and source records attributed to M Garty.

At least 19 recordsLinked to original sources

Bioequivalence of quinidine in two sustained-release preparations.

The bioequivalence of two sustained-release preparations of quinidine bisulphate from Teva (Israel) and from Astra (Sweden) was assessed in an acute, single-dose randomized cross-over study in seven healthy subjects. There was no significant difference in time to peak, peak serum concentration, area under the concentration time curve from 0 to infinity, and the fraction absorbed between quinidine bisulphate 500 mg from Teva and from Astra. In addition, quinidine bisulphate 250 mg from Teva was compared with the short-acting quinidine sulphate 200 mg. The quinidine bisulphate from Teva had a significantly P less than 0.025) decreased peak serum concentration and an increased time to peak compared with the short-acting quinidine sulphate, although these two drugs are similar for the area under the curve from 0 to infinity. Our pharmaceutical records show that 85% of outpatients receiving quinidine are given the sustained-release quinidine bisulphate. However, only 36% of the outpatients prescribed sustained-release quinidine bisulphate are appropriately prescribed for twice-daily treatment. Thus the quinidine bisulphate from Teva is a sustained-release preparation with bioequivalence to the reference sustained-release preparation and can be administered twice daily.

Administration, Oral

Elimination characteristics of intravenously administered rIGF-I in Laron-type dwarfs.

The distribution and elimination characteristics (Ke alpha, Ke beta, t1/2) of an intravenous bolus of biosynthetic IGF-I administered to 10 patients with Laron-type dwarfism (LTD, 3 children and 7 adults) and 6 healthy volunteers (3 children and 3 adults) are reported. The mean (+/- SD) endogenous level of IGF-I in the LTD patients was 5.24 +/- 2.77 nM/l and in the controls 27.2 +/- 9.4 nM/l. In the LTD patients the mean elimination constant (Ke beta) was 0.004 +/- 0.001 min-1 and t1/2 = 2.6 +/- 0.7 h, whereas in the controls, Ke beta was 0.003 +/- 0.009 min-1 and the t1/2 = 4.4 +/- 0.5 h (p less than 0.05). The more rapid elimination of injected IGF-I in the LTD patients is assumed to be due to the absence of the GH-dependent 150 kDa IGF-I binding protein.

Adolescent

Effects of clonidine on renal sympathetic nerve activity and norepinephrine spillover.

The antihypertensive action of clonidine (CLO) depends mainly on decreased release of the sympathetic neurotransmitter, norepinephrine (NE), at vascular neuroeffector junctions. The decreased release can be due to stimulation of alpha-2 adrenoceptors or other receptors in the brain or due to stimulation of presynaptic inhibitory alpha-2 adrenoceptors on sympathetic nerve endings. To compare central and peripheral contributions to the depressor action of CLO, renal sympathetic nerve activity (RSNA) and renal spillover of NE (RNEs) were measured at baseline and during reflexive increases in RSNA evoked by nitroprusside-induced hypotension (27, 50 and 105 micrograms/kg/min) before and after CLO treatment in adrenal-demedullated, anesthetized rats. Administration of CLO decreased RSNA by 52 +/- 8% and RNEs by 32 +/- 13% (means +/- S.E.M.). At levels of RSNA less than 50% above control, there were no significant changes in RNEs; above this level of activity RNEs increased, regardless of CLO treatment. CLO treatment did not alter significantly the relationship between increases in RSNA and in RNEs during nitroprusside-induced hypotension. The results suggest that in neurologically intact, anesthetized animals, CLO decreases renal NE release mainly by inhibiting sympathetic outflow, with little if any peripheral presynaptic action.

Adrenal Medulla

Patterns of plasma levels of catechols in neurogenic orthostatic hypotension.

Patients with neurogenic orthostatic hypotension can have deficits in sympathetic neural function at any of several levels of the sympathetic neuraxis. We determined whether patterns of plasma levels of dopa, norepinephrine, dihydroxyphenylglycol, and dihydroxyphenylacetic acid would distinguish patients with orthostatic hypotension associated with multiple system atrophy, pure autonomic failure, or deficiency of dopamine-beta-hydroxylase. Plasma levels of catechols were normal in most patients with multiple system atrophy, consistent with relatively intact peripheral sympathetic neurons; in contrast, most patients with pure autonomic failure had decreased levels of all four catechols, consistent with degenerative loss of sympathetic nerve endings. Patients with deficiency of dopamine-beta-hydroxylase had increased levels of dopa and dihydroxyphenylacetic acid and markedly decreased levels of norepinephrine and dihydroxyphenylglycol, suggesting compensatory increases in sympathetic nerve activity in the absence of norepinephrine biosynthesis. Subgroups of patients with pure autonomic failure or multiple system atrophy had low levels of norepinephrine with normal levels of dopa, dihydroxyphenylglycol, and dihydroxyphenylacetic acid, consistent with normal catecholamine biosynthesis and decreased postganglionic sympathetic nerve traffic or decreased exocytotic release from sympathetic nerve endings. The results demonstrate the value of examining patterns of plasma levels of catechols to elucidate mechanisms of neurogenic orthostatic hypotension.

3,4-Dihydroxyphenylacetic Acid

Increased theophylline clearance in asthmatic patients due to terbutaline.

The pharmacokinetic mechanism of the theophylline-terbutaline interaction has been studied. Sustained release theophylline 200-400 mg b.d. was given with placebo or terbutaline 2.5 mg t.d.s. to six adult asthmatic patients. Terbutaline decreased the serum trough theophylline levels from 8.1 to 7.3 micrograms/ml, improved daily the clinical score from 1.51 to 1.26 and increased the peak expiratory flow rate from 316 to 370 l/min. In a single dose study following the chronic therapy, it was shown that there was no change in the peak theophylline concentration or in the timing of the peak, but the t1/2 was reduced from 9.0 to 7.5 h, and the systemic clearance was increased from 20.2 to 24.8 ml.h-1.kg-1. Thus, terbutaline reduced the serum theophylline concentration by increasing its systemic clearance.

Adult

Plasma levels of catechols during reflexive changes in sympathetic nerve activity.

Relationships between changes in levels of catechols and directly recorded sympathetic nerve activity were examined using simultaneous measurements of renal sympathetic nerve activity and arterial and renal venous concentrations of norepinephrine (NE), dihydroxyphenylalanine (dopa), and dihyroxyphenylglycol (DHPG) during reflexive alterations in renal sympathetic nerve activity in anesthetized, adrenal-demedullated rats. Nitroprusside infusion increased renal sympathetic nerve activity by 90%, arterial levels of dopa by 96%, NE by 326%, and DHPG by 141%. Phenylephrine infusion increased arterial DHPG levels by 81% and decreased renal sympathetic nerve activity by 37% and NE levels by 26%; arterial dopa levels were unchanged. Ganglionic blockade by chlorisondamine (with concomitant phenylephrine infusion to maintain MAP) decreased renal sympathetic nerve activity by 65% and NE concentrations by 37%; arterial dopa concentrations were unchanged, and DHPG concentrations increased by 60%. Proportionate responses of arterial levels of NE were strongly related to proportionate changes in renal sympathetic nerve activity. Clearance of DHPG from arterial plasma was prolonged by phenylephrine-induced hypertension and by nitroprusside-induced hypotension. The results suggest that changes in arterial NE levels reflect changes in sympathetic activity; changes in dopa levels reflect changes in catecholamine biosynthesis; and changes in DHPG levels depend on reuptake of released NE and on hemodynamic factors affecting DHPG clearance.

Animals

Interaction of clonidine and morphine with lidocaine in mice and rats.

Morphine and clonidine both elevated plasma levels of lidocaine to the same extent in mice while slowing lidocaine metabolism to deethylated products. The effects of clonidine on lidocaine disposition were reversed by yohimbine. Mice given morphine, 20 mg/kg sc, or clonidine, 0.2 mg/kg sc, had similar, 30-50%, elevation of plasma lidocaine levels at 15 min after lidocaine, 15 mg/kg iv, when compared to saline-treated animals. Despite similarity of effect on plasma lidocaine, mice treated with morphine were much more susceptible to lethal effects of lidocaine than were mice given clonidine. At iv doses of 22 mg/kg or higher, lidocaine caused death in nearly all morphine-treated mice, while even 32 mg/kg lidocaine caused only 11% mortality after saline or clonidine. Clonidine, 0.5 mg/kg sc, and morphine, 20 mg/kg sc, both raised plasma lidocaine levels in rats, but only morphine depressed respiration, causing hypoxia, hypercapnia, and acidosis and increasing lidocaine lethality. These data suggest that potentiation of lidocaine toxicity by morphine is due primarily to changes in blood gases rather than to elevation in lidocaine levels.

Animals

Plasma levels of catechols after fasting in intact or adrenal-demedullated rats.

We compared arterial plasma levels of catechols after a 24-h fast with levels after 24 h of an ad libitum diet in conscious rats. Epinephrine concentrations were significantly decreased after the fast; levels of norepinephrine, dopa, and dihydroxyphenylglycol were unaffected. Adrenal-demedullated rats had decreased levels of dopa regardless of dietary intake and lower levels of norepinephrine after fasting than during the usual diet. The results indicate that fasting decreases adrenomedullary activity in intact animals, with little or no effect on sympathoneural activity.

Adrenal Medulla

Skin color, aging, and plasma L-dopa levels.

Although plasma levels of L-dopa are derived substantially from catecholamine-synthesizing tissues, melanocytes--which produce L-dopa as part of the melanin synthetic cascade--also may be a source of circulating L-dopa. We compared plasma L-dopa levels in albino subjects and in Caucasian and Black normal volunteers and patients with essential hypertension. DOPA levels were similar among the subject groups. Among Caucasian normal volunteers, L-dopa levels were negatively correlated with subject age (r = -0.30, P less than 0.05), whereas norepinephrine levels tended to increase with subject age (r = 0.25, 0.05 less than P less than 0.10), so that the L-dopa:norepinephrine ratio was highly negatively correlated with subject age (r = -0.50, P less than 0.01). Skin pigmentation does not contribute importantly to plasma L-dopa levels in humans. In contrast with levels of norepinephrine, L-dopa levels appear to decrease during normal aging.

Adolescent

Implications of plasma levels of catechols in the evaluation of sympathoadrenomedullary function.

This report summarizes new techniques for examining aspects of sympathoadrenomedullary function. Tracer pharmacokinetic methods are more accurate than measurements of antecubital venous norepinephrine (NE) in assessing sympathoneural responsiveness. During mental challenge (playing a video game), patients with essential hypertension had significantly larger increments of NE spillover into arterial blood than did normotensive control subjects, whereas responses of antecubital venous and even arterial NE did not differ significantly between the groups. The rate of neuronal reuptake of endogenous NE can be measured in vivo using plasma levels of NE and of the intraneuronal NE metabolite, dihydroxyphenylglycol (DHPG). Regional production of dihydroxyphenylalanine (DOPA) may reflect catecholamine biosynthesis, and DOPA may be an indirectly acting natriuretic neurohormone. Positron emission tomography after injection of positron-emitting fluorodopamine may allow in vivo, noninvasive assessments of regional sympathetic function.

Catechols

Renal sympathetic nerve activity and norepinephrine release in rats.

We examined relationships between changes in directly recorded renal sympathetic nerve activity (RSNA) and renal and total body spillover of norepinephrine into the bloodstream (RNEs and TBNEs, respectively) in anesthetized, adrenal-demedullated rats. Intravenous infusions of nitroprusside (NP) or phenylephrine (PH) produced reflexive, dose-dependent changes in RSNA. High-doses of NP significantly increased RSNA by 90%, RNEs by 155%, and TBNEs by 268%. High doses of PH significantly decreased RSNA by 37%, RNEs by 35%, and TBNEs by 33%. Ganglionic blockade with chlorisondamine decreased RSNA by 65% (P less than 0.05), RNEs by 10%, and TBNEs by 51% (P less than 0.05). There was a significant curvilinear relationship between mean changes in RSNA and mean changes in RNEs (r = 0.99). Simultaneous in vivo measurement of sympathetic nerve traffic and regional release of norepinephrine therefore may be useful in the assessment of presynaptic actions of drugs and hormones and in the evaluation of abnormal sympathetic neurotransmission in disease states.

Afferent Pathways

Cardiac norepinephrine kinetics in hypertrophic cardiomyopathy.

We examined the uptake and release of norepinephrine in the cardiac circulation and other regional vascular beds in 11 patients with hypertrophic cardiomyopathy (HCM) and in 10 control subjects during simultaneous infusion of tracer-labeled norepinephrine and isoproterenol. Cardiac neuronal uptake of norepinephrine was assessed by comparing regional removal of tracer-labeled norepinephrine with that of tracer-labeled isoproterenol (which is not a substrate for neuronal uptake) and by the relation between production of dihydroxyphenylglycol (DHPG), an exclusively intraneuronal metabolite of norepinephrine, and regional spillover of norepinephrine. Cardiac extraction of norepinephrine averaged 59 +/- 17% in the patients with HCM, significantly less than in the control subjects (79 +/- 13%, p less than 0.05), whereas cardiac extraction of isoproterenol was similar in the two groups (13 +/- 23% versus 13 +/- 14%), indicating that neuronal uptake of norepinephrine was decreased in the patients with HCM. The cardiac arteriovenous difference in norepinephrine was significantly larger in the patients with HCM than in the control subjects (73 +/- 77 versus 13 +/- 50 pg/ml, p less than 0.05), as was the product of the arteriovenous difference in norepinephrine and coronary blood flow (7.3 +/- 7.3 versus 0.8 +/- 3.0 ng/min, p less than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Pharmacologic and tracer methods to study sympathetic function in primary hypertension.

Systemically infused tritiated norepinephrine (NE) was used to estimate total body NE spillover into arterial blood during mental challenge (playing a video game) in 18 young (mean age 35 years old) patients with essential hypertension and 20 normotensives of similar age. Arterial NE, epinephrine (E), and total body NE spillover at baseline did not differ between the groups. During the game, total body NE spillover increased significantly in both groups, with the increments related directly to the pressor responses. Mean increments in total body NE spillover, arterial E, and mean arterial pressure were larger in the hypertensives (204 vs 91 ng/min, 33 vs 9 pg/ml, and 16 vs 12 mm Hg). The hypertensives increased total peripheral resistance during the game, whereas the normotensive group did not. Intravenous administration of yohimbine was used to increase NE spillover. Pressor responses to yohimbine were related to responses of arterial NE. The hypertensive group had a larger mean increment in blood pressure and arterial NE than did the normotensive group during yohimbine, due to excessive responses in a subgroup of about 1/3 of the patients. Patients with essential hypertension can have excessive sympathoadrenomedullary responsiveness related to excessive pressor responses, even when sympathoadrenomedullary activity at rest is normal.

Adult

Lymphoma presenting with adrenal insufficiency. Adrenal enlargement on computed tomographic scanning as a clue to diagnosis.

A 73-year-old woman who presented with primary adrenal insufficiency and enlarged adrenal glands on computed tomographic scanning was ultimately found to have a large-cell lymphoma that had initially involved the adrenals and the stomach. A search of the English language medical literature revealed only seven other cases of lymphoma presenting with hypoadrenalism, none of which involved the stomach. As in this case, in most of those cases adrenal enlargement was documented on computed tomographic scanning. Despite its rare occurrence, lymphoma should be searched for in patients presenting with Addison's disease and enlarged adrenal glands.

Adrenal Glands

Morphine effects on gentamicin disposition and toxicity in mice.

Morphine has been shown to reduce renal and hepatic clearance of several xenobiotics in rodents. After iv administration of gentamicin, 10 to 30 mg/kg, its plasma levels were elevated in mice given morphine, 20 mg/kg sc. Plasma clearance of gentamicin was nearly halved by morphine, due primarily to lowering of the elimination constant of gentamicin from 0.03 to 0.02 min-1 (p less than 0.01). Morphine also significantly reduced urine levels of gentamicin and urine volume. In mice given naloxone, 2 mg/kg sc, morphine did not significantly raise plasma levels of gentamicin nor reduce its elimination into urine. Mice were made tolerant by morphine administration for 9 days at ascending doses to 100 mg/kg twice daily. An acute challenge with morphine, 20 mg/kg, was less effective in raising plasma levels of gentamicin or lowering its urinary elimination in tolerant mice than after chronic saline treatment. Partial tolerance to acutely administered morphine and reversal of morphine effects by naloxone suggest opioid receptor-mediated reduction of glomerular filtration by morphine in mice. Despite marked elevation of plasma gentamicin levels in morphine-treated mice, narcotic administration did not significantly increase the acute toxicity of a single dose of gentamicin. LD50 of acutely administered iv gentamicin was 51.6 mg/kg after saline and 45.3 mg/kg after treatment with morphine, 20 mg/kg sc. However, this dose of morphine enhanced the lethality of intravenously infused gentamicin. Morphine administration significantly reduced the dose of infused gentamicin needed to achieve the critical lethal plasma level.

Animals

Non-interaction of ketotifen and theophylline in children with asthma--an acute study.

Six asthmatic children participated in an acute crossover randomized study. They received a single dose of aminophylline syrup 6 mg/kg after having received ketotifen syrup 1 mg b.i.d. or placebo for 8 days. Ketotifen did not significantly affect the heart rate, pulse pressure or such pharmacokinetic parameters of theophylline as peak serum level, time to peak, half life and AUC. Thus, ketotifen had no significant effect on the disposition of theophylline.

Adolescent