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The metabolic disposition of aprepitant, a substance P receptor antagonist, in rats and dogs.

The absorption, metabolism, and excretion of [14C]aprepitant, a potent and selective human substance P receptor antagonist for the treatment of chemotherapy-induced nausea and vomiting, was evaluated in rats and dogs. Aprepitant was metabolized extensively and no parent drug was detected in the urine of either species. The elimination of drug-related radioactivity, after i.v. or p.o. administration of [14C]aprepitant, was mainly via biliary excretion in rats and by way of both biliary and urinary excretion in dogs. Aprepitant was the major component in the plasma at the early time points (up to 8 h), and plasma metabolite profiles of aprepitant were qualitatively similar in rats and dogs. Several oxidative metabolites of aprepitant, derived from N-dealkylation, oxidation, and opening of the morpholine ring, were detected in the plasma. Glucuronidation represented an important pathway in the metabolism and excretion of aprepitant in rats and dogs. An acid-labile glucuronide of [14C]aprepitant accounted for approximately 18% of the oral dose in rat bile. The instability of this glucuronide, coupled with its presence in bile but absence in feces, suggested the potential for enterohepatic circulation of aprepitant via this conjugate. In dogs, the glucuronide of [14C]aprepitant, together with four glucuronides derived from phase I metabolites, were present as major metabolites in the bile, accounting collectively for approximately 14% of the radioactive dose over a 4- to 24-h period after i.v. dosing. Two very polar carboxylic acids, namely, 4-fluoro-alpha-hydroxybenzeneacetic acid and 4-fluoro-alpha-oxobenzeneacetic acid, were the predominant drug-related entities in rat and dog urine.

Administration, Oral↗

Catecholamine metabolite excretion in spina bifida.

The urinary excretion of vanilmandelic acid (VMA), homovanillic acid (HVA), and parahydroxyphenylacetic acid (pHPAA) was measured in 55 children with meningomyelocoele selected at random. In 96% of the children the levels of one or other of these compounds was significantly raised above the normal, usually by a factor of about 3. High VMA levels usually meant high HVA levels but the values for pHPAA appeared to be quite independent of the others. These results suggest a disorder of tyrosine metabolism, and the possible implications are discussed.

Catecholamines↗

[A study on the adduct characteristics of styrene and DNA].

OBJECTIVE: To explore the adduct characteristics of styrene and DNA. METHODS: The adduct reactions between styrene, urinary mandalic acid(MA), phenylglyoxalic acid(PGA), mercapturic acid of styrene (UMA) and DNA were studied by ultraviolet spectral analysis. The SO-DNA adducts by 32P-post labeled method, the chemical structures of SO-DNA adducts by GC-MS and NMR were also studied. RESULTS: SO combined with DNA at O6, N2 positions of dGMP to form six adducts, but styrene, urinary mandalic acid, phenylglyoxalic acid and mercapturic acid of styrene did not react with DNA to form adduct. CONCLUSIONS: Styrene formed adduct with DNA through its active center metabolite--SO after entering the body. SO combined with DNA at O6, N2 positions of dGMP to form adducts. If these DNA adducts are not repaired or are mis-repaired before cell duplication, the gene mutation and chemical damage would happen. No adduct reactions are seen among other metabolites of styrene.

Acetylcysteine↗

Determination of m-hydroxymandelic acid, m-hydroxyphenylglycol and their conjugates in human plasma using liquid chromatography with electrochemical detection.

An LC method for the analysis of m-hydroxymandelic acid (MHMA) and m-hydroxyphenylglycol (MHPG) and their conjugates in human plasma was developed and validated. The method for the quantitation involved extraction of acidified plasma (subject to hydrolysis with beta-glucuronidase for 120 min with 500 units of enzyme/0.25 ml of plasma at 37 degrees C for the conjugates) with an organic phase (methyl-tert-butyl ether). Analysis of MHMA, MHPG and the internal standard (3-hydroxy-4-methoxymandelic acid) was carried out on an ODS stationary phase: 100 x 4.6 mm, 5 mu followed by a 75 x 4.6 mm, 3 mu using 1% acetonitrile in 0.1 M acetic acid as the mobile phase. An electrochemical detector operated at +1.15 V vs Ag/AgCl was employed for the detection. The standard curves were linear in the range of 10.0-250.0 ng ml-1 for MHMA and 5.0-125.0 ng ml-1 for MHPG. The limit of quantitation was 10.0 ng ml-1 for MHMA and MHPG. Acceptable accuracy and precision were obtained during the intra-batch and inter-batch analysis for both the assays.

Chromatography, High Pressure Liquid↗

Intermittent catheterization to obtain catheter-free bladder function in spinal cord injury.

The intermittent bladder catheterization technique has been proposed as an effective way of eliminating the need for an inlying. Foley catheter in patients with neurovesical dysfunction following spinal cord injury. In the study reported here, a group of 41 male patients with spinal cord injuries achieved a catheter-free state with this method. Of these 41 patients, 19 have been followed for 1 year. Data obtained from the 19 patients are presented here for comparison with data from other recent studies. In the present study, the patients' fluid intake was restricted to 2,000 cc daily. A detrusor reflex was triggered by lower abdominal percussion followed by a Credé maneuver. A 6-hour catheterization schedule was used unless autonomic dysreflexia required more frequent catheterizations. Ascorbic acid, methenamine mandelate and nitrofurantoin were routinely administered, and specific antibiotics were also given following trial off-catheter, depending on the results of urine cultures and sensitivity studies. All patients achieved a catheter-free state in an average time of 17.1 days; no late failures have occurred. Two patients developed vesicoureteral reflux, but no evidence of hydronephrosis was observed. At 1 year only 16% of the patients were found to have infected urine, as compared to 100% at initiation of the trial off-catheter.

Ascorbic Acid↗

2-Chloro-1,4-dimethoxybenzene as a mediator of lignin peroxidase catalyzed oxidations.

Poly R478, 4-methoxymandelic acid and oxalic acid were oxidized by lignin peroxidase (LiP) in the presence of the fungal metabolite 2-chloro-1,4-dimethoxybenzene (2Cl-14DMB), whereas no oxidation occurred in the absence of 2Cl-14DMB. These substrates clearly inhibited the consumption of 2Cl-14DMB and the formation of 2-chloro-1,4-benzoquinone from 2Cl-14DMB by LiP. The results suggest that 2Cl-14DMB can replace the function of veratryl alcohol as a redox mediator in lignin peroxidase catalyzed oxidations.

Anisoles↗

Urodynamics in a rat neurogenic bladder model with a unilateral electrolytic lesion of the basal forebrain.

OBJECTIVE: To investigate the changes in bladder function in rats with an electrolytic lesion of the right basal forebrain (RBF) and to determine the effects of AH-9700, a novel sigma receptor ligand, on cystometry in RBF-lesioned rats. MATERIALS AND METHODS: A lesion was made electrolytically in the RBF of male Wistar rats. At 7 or 8 days after the lesion or sham surgery, continuous cystometry was performed in awake rats. In addition, contractile responses to electrical field stimulation or carbachol were measured in isolated bladder strips, as were the forebrain contents of acetylcholine, monoamine neurotransmitters and their metabolites. RESULTS: RBF-lesioned rats showed a remarkable increase in voiding frequency, with a decrease in voiding threshold pressure but no change in voiding pressure, compared with sham-operated rats. However, contractile responses in bladder strips isolated from RBF-lesioned rats were no different from those in strips isolated from sham-operated rats. In RBF-lesioned rats, the contents of acetylcholine, dopamine, 4-dihidroxyphenylacetic acid and homovanillic acid were significantly decreased in the right forebrain. AH-9700 dose-dependently decreased the voiding frequency and increased the threshold pressure in RBF-lesioned rats. Anti-muscarinic agents (oxybutynin and propiverine) also decreased the voiding frequency, but their effects were less potent than that of AH-9700. CONCLUSIONS: The RBF-lesioned rat may be a useful model for the neurogenic bladder of supraspinal origin. Moreover, AH-9700 effectively improves bladder dysfunction in this model.

Animals↗

Thiomandelic acid, a broad spectrum inhibitor of zinc beta-lactamases: kinetic and spectroscopic studies.

Resistance to beta-lactam antibiotics mediated by metallo-beta-lactamases is an increasingly worrying clinical problem. Candidate inhibitors include mercaptocarboxylic acids, and we report studies of a simple such compound, thiomandelic acid. A series of 35 analogues were synthesized and examined as metallo-beta-lactamase inhibitors. The K(i) values (Bacillus cereus enzyme) are 0.09 microm for R-thiomandelic acid and 1.28 microm for the S-isomer. Structure-activity relationships show that the thiol is essential for activity and the carboxylate increases potency; the affinity is greatest when these groups are close together. Thioesters of thiomandelic acid are substrates for the enzyme, liberating thiomandelic acid, suggesting a starting point for the design of "pro-drugs." Importantly, thiomandelic acid is a broad spectrum inhibitor of metallo-beta-lactamases, with a submicromolar K(i) value for all nine enzymes tested, except the Aeromonas hydrophila enzyme; such a wide spectrum of activity is unprecedented. The binding of thiomandelic acid to the B. cereus enzyme was studied by NMR; the results are consistent with the idea that the inhibitor thiol binds to both zinc ions, while its carboxylate binds to Arg(91). Amide chemical shift perturbations for residues 30-40 (the beta(3)-beta(4) loop) suggest that this small inhibitor induces a movement of this loop of the kind seen for other larger inhibitors.

Arginine↗

The influence of cyclandelate on Ca++ translocation in human platelets.

A major event in signal transduction in platelets is the mobilisation of Ca++ ions by 2 mechanisms: influx of Ca++ from the extracellular medium and release from intracellular storage sites. The calcium modulating drug cyclandelate is known to inhibit platelet aggregation induced by various agonists. Thus, by studying the effects of cyclandelate on cytosolic Ca++ concentrations in gel-filtered human platelets, an explanation was sought of the mechanism which couples receptor stimulation with the processes that execute aggregation and secretion. Cyclandelate in concentrations between 10 and 50 mumol/L induced a dose-dependent increase in the basal level of cytosolic Ca++ of unstimulated platelets. In platelets stimulated with thrombin (5 U/ml) or platelet activating factor (1 mumol/L), cyclandelate strongly inhibited the increase of cystolic Ca++ in the presence of extracellular Ca++, but in the absence of extracellular Ca++ only a weak inhibition was observed. This inhibition was dose dependent and optimal at about 50 mumol/L, the concentration at which Ca++ mobilisation was suppressed to about 10% of control values, and at which cyclandelate inhibits platelet aggregation. In contrast, the metabolites cyclandelate alcohol and cyclandelate acid were without effect at the same concentrations (50 mumol/L). Concentrations of cyclandelate greater than 50 mumol/L were found to further increase the concentration of Ca++ in the unstimulated platelet, an effect which interfered with the stimulus-induced Ca++ translocation. Thus, at concentrations which inhibit platelet aggregation, cyclandelate prevents the mobilisation of Ca++ ions induced by such agonists as thrombin and platelet activating factor. Further study is required to determine the mechanism by which cyclandelate inhibits these platelet responses.

Biological Transport↗

Influence of cyclandelate on in vitro red blood cell deformability.

Using filtration and viscosity techniques, cyclandelate, some of its metabolites and flunarizine were evaluated to determine their ability to maintain human red blood cell (RBC) deformability. In filtration studies, RBC suspensions were metabolically depleted, which decreased the capacity of the cells to pass through narrow filter pores. In viscosity measurements performed with whole blood, metabolic depletion resulted in an increase of blood viscosity values. The results of these experiments appeared to indicate that cyclandelate, cyclandelate alcohol and flunarizine were approximately equipotent in maintaining RBC filtration and blood viscosity values. Cyclandelate acid appeared to be less active in both studies. By measuring the adenosine triphosphate content of red blood cells it has been shown that this activity is not due to an action on red blood cell energy metabolism. Finally, experiments conducted with the calcium chelator EGTA showed that the activity of cyclandelate was reduced in the absence of Ca++ ions. The results strengthen the hypothesis that cyclandelate maintains red cell deformability by inhibiting calcium entry through the red cell membrane.

Adenosine Triphosphate↗

Identification and quantitative determination of m-hydroxyphenylglycol in mammalian urine.

m-Hydroxyphenylglycol (MHPG) has been identified in mammalian urine by gas chromatography mass spectrometry selected ion monitoring. (2H0) MHPG and (2H5) MHPG were synthesized for use as authentic sample and internal standard, respectively. After acid hydrolysis or treatment with sulfatase, the glycol was extracted from urine with ethyl acetate, converted to its tris-pentafluoropropionyl (PFP) derivative and identified by comparison of the retention times and relative intensities of the characteristic ions, m/z 592, m/z 428 and m/z 415, with those from the authentic sample. Using the internal standard the following quantitative results were obtained: 10 normal human adults excreted 7 ng MHPG mg-1 creatinine (range 2-18) as a sulfate conjugate. Ten rats excreted 0.8 micrograms day-1 (range 0.5-1.1) of MHPG also in the conjugated form. Urinary m-hydroxymandelic acid (MHMA) was also measured quantitatively. The ratio MHMA:MHPG was 1:1 in the rat and 6:1 in the human. This indicates that the overall reductive pathway of m-octopamine and m-synephrine metabolism is more important in the rat than in the human. o-Hydroxyphenylglycol (OHPG) and the three isomeric monomethoxy phenylglycols could not be detected in human or rat urine by these techniques.

2-Hydroxyphenethylamine↗

The circadian variation of catecholamine metabolism in the subhuman primate.

Cerebrospinal fluid (CSF) was removed continuously in 2- or 3-h aliquots from the lateral and fourth cerebral ventricles of chronic chair restrained rhesus monkeys. Under conditions of 12 h light (06.00-18.00 h) and 12 h darkness (18.00-06.00 h) the concentrations of norepinephrine (NE) were found to describe a circadian pattern, with maximal concentrations occurring during the light hours and minimal concentrations occurring during the dark hours. The patterns were generally coincident with the circadian patterns of brain temperature and body activity. When assayed for 3-methoxy-4-hydroxyphenylethylene glycol (MHPG) and 3-methoxy-4-hydroxymandelic acid (VMA), samples of CSF collected over 3-4 days demonstrated no reproducible pattern of change. Fluctuation in the concentration of MHPG did not correspond in direction or magnitude to changes in the concentration of VMA. These random fluctuations may in part be accounted for by the influx of the metabolites from peripheral sources to the brain and CSF, and by the relatively slow movement of these metabolites as they diffuse from brain parenchyma to the CSF.

Animals↗

The use of enzyme immunoassays for the detection of abzymatic activities. Application to an enantioselective thioacetal hydrolysis activity.

Relying on the particularly high specificity displayed by antibodies, enzyme immunoassays have proved to be one of the most efficient tools for early detection of the catalytic activities displayed by antibodies. We took advantage of such an assay, namely the Cat-enzyme-linked immunoassay (EIA) approach developed in our laboratories, both to exhibit and characterise an antibody-catalysed thioacetal hydrolysis. Monoclonal antibody (mAb) H3-32 was thus identified to accelerate the hydrolysis reaction of thioacetal substrate (NC9) to vanillylmandelic acid (VMA), with a k(cat) of 0.148 h(-1) (k(uncat) = 6.85 x 10(-5) h(-1)), and a K(M) of 720 microM. Taking advantage of the enantiomeric discrimination between (R)- and (S)-VMA displayed by some of the anti-H3 monoclonal antibodies, we were also able to determine that (S)-VMA was preferentially formed during this abzymatic hydrolysis with a 47% enantiomeric excess. All these EIA measurements were confirmed through HPLC analyses.

Acetates↗

The mammalian metabolism of R-(-)-m-synephrine.

The metabolism of R-(-)-m-synephrine (administered orally and by inhalation in man and intraperitoneally in rats) was studied quantitatively by a gas chromatography-mass spectrometry-selected ion monitoring (g.c.-m.s.-s.i.m.) method using deuterated internal standards. When m-synephrine hydrochloride was administered orally to humans in normal dosage regimens four main metabolites were excreted in urine: (i) unconjugated m-hydroxymandelic acid (MHMA, 30%), (ii) m-hydroxyphenylglycol (MHPG) sulphate (6%), (iii) m-synephrine sulphate (47%) and (iv) m-synephrine glucuronide (12%). The comparable figures after inhalation of the drug were 24, 6, 56 and 5%. Intraperitoneal injection of m-synephrine into rats gave: unconjugated MHMA (5%), MHPG sulphate (35%), unconjugated m-synephrine (7%) and conjugates of m-synephrine (9%:4% as the glucuronide and 5% as the sulphate).

Administration, Oral↗

Cyclandelate as a calcium modulating agent in rat cerebral cortex.

Cyclandelate is clinically effective in a variety of cerebrovascular indications, but its precise mode of action is unclear. Hence, this study investigated the interaction of cyclandelate, cyclandelate alcohol and cyclandelate acid with the binding sites for radioactively labelled 3H-nitrendipine, a Ca++ entry blocker of the 1,4-dihydropyridine type, on rat cerebral cortex membranes. Cyclandelate showed a dissociation constant (Kd) of 7.1 +/- 1.4 X 10(-5) mol/L (35% inhibition of 3H-nitrendipine binding at 2 X 10(-4) mol/L cyclandelate), cyclandelate alcohol had a Kd value of 1.7 +/- 0.1 X 10(-4) mol/L (maximal 70% inhibition of 3H-nitrendipine binding) whereas cyclandelate acid was inactive. For comparison, nifedipine (Kd of 2.6 +/- 0.3 X 10(-9) mol/L inhibition of 68% of 3H-nitrendipine binding), d-cis diltiazem (Kd of 1.1 +/- 0.1 X 10(-7) mol/L enhancement of 39% of 3H nitrendipine binding) and +/- -verapamil [Kd values of 1.4 +/- 0.4 X 10(-7) mol/L (38% inhibition) and 5.3 +/- 1.7 X 10(-4) mol/L (62% inhibition)] were used. Thus, cyclandelate may exert its clinical activity in cerebral ischaemia or hypoxia at least in part through a calcium modulatory effect.

Animals↗

Inhibition of human platelet functions by cyclandelate.

The effects of cyclandelate and two of its metabolites, cyclandelate alcohol and acid, on several human platelet functions in vitro were investigated. Platelet aggregation was measured turbidimetrically using platelet-rich plasma. 14C-Serotonin (5-hydroxytryptamine) release from preloaded platelets, and thromboxane B2 (TxB2) formation were evaluated simultaneously with platelet aggregation. Cyclandelate and cyclandelate alcohol, but not cyclandelate acid, in a dose-dependent fashion prevented platelet aggregation and the concomitant 14C-serotonin release and TxB2 formation induced by adenosine diphosphate, platelet activating factor and collagen. In other experiments, inhibitory synergistic activities of cyclandelate and prostacyclin (PGI2) on platelet aggregation were demonstrated; cyclandelate alcohol and PGI2 showed a somewhat less pronounced synergism. The hypothesis that the calcium modulating property of cyclandelate is responsible for the inhibition of blood platelet functions is strengthened by the inability of the drug to inhibit the calcium-independent platelet aggregation induced by ristocetin.

Blood Platelets↗

Lysosomal hydrolases in neuronal, astroglial, and olidodendroglial enriched fractions of rabbit and beef brain.

Arylsulfatases A, B, and C, beta-galactosidase, and acid phosphatase were assayed in neuronal, astroglial, and oligodendroglial fractions isolated from adult rabbit and beef brains. The specific activities of all acid hydrolases were lower in beef cells compared to rabbit cells. The lysosomal enzymes of the rabbit neuronal fraction showed 10--25 time higher activities than the oligodendroglial fraction and 5-fold higher activities than the astroglial fraction. In beef brain, the specific activities of these enzymes were similar in oligodendroglia and astrocytes but 4--10 times lower than in neurons. The low activity of arylsulfatase A and beta-galactosidase in oligodendroglial cells may suggest that the low turnover of cerebroside and sulfatide in myelin may be regulated in part by the enzymes that catalyze their degradation.

Acid Phosphatase↗

[Pharmacokinetics and metabolism of 3H-synephrine (author's transl)].

The physiological disposition of 1-(4-hydroxyphenyl)-2-methylamino-ethanol-tartrate (synephrine, Sympatol) in man had not been investigated to date. Therefore, we studied pharmacokinetics and metabolism of tritiated synephrine in man. Following short i.v. infusion in six patients about 80% of the administered radioactivity was recovered in urine. Two-thirds of the urinary tritium activity consisted of the deaminated p-hydroxymandelic acid. 10% were excreted as unchanged synephrine only. Following oral ingestion in ten patients the total urinary radioactivity was quite comparable to the i.v. experiments. Therefore, complete enteric absorption has to be stated. The amount of unchanged synephrine amounted, however, only to 2.5% of the dose. The resulting bioavailability has to be calculated to 22% only. The pharmacokinetic parameters are quite comparable to the sympathomimetics similar in structure. The biological half-life was about 2 h. After oral ingestion absorption was fast, the peak concentrations were observed between 1 and 2 h after administration.

Administration, Oral↗