Search PubMed⌕ Search

Biomedical subjects

I Altieri

Publications and source records attributed to I Altieri.

27 records · Page 2Linked to original sources

Nicotine, cotinine, and trans-3-hydroxycotinine levels in seminal plasma of smokers: effects on sperm parameters.

Sperm samples from 44 cigarette smokers and 50 nonsmokers attending an infertility clinic were examined by high-performance liquid chromatography (HPLC) assay and HPLC-mass spectrometry for the presence of nicotine (NIC), cotinine (COT), and trans-3'-hydroxycotinine (THOC) in seminal plasma. Smokers were found to have levels of COT and THOC in seminal plasma that were similar to those found in serum. The level of NIC was significantly increased in seminal plasma compared to serum. Total motility of spermatozoa was significantly and negatively correlated to COT and THOC levels in seminal plasma. Forward motility of spermatozoa was correlated only with cotinine semen levels. On the basis of these results, we suggest that the presence of tobacco smoke constituents in seminal plasma could provide a warning of the adverse effects of cigarette smoke on the physiology of reproduction.

Adolescent↗

High-performance liquid chromatographic-mass spectrometric assay of busulfan in serum and cerebrospinal fluid.

A liquid chromatographic-mass spectrometric method has been developed to determine busulfan concentrations in the cerebrospinal fluid and serum of some children undergoing bone marrow autotransplantation. After two liquid-liquid extraction steps with dichloromethane on a biological matrix, the separation of busulfan was carried out by isocratic reversed-phase chromatography. The mass spectrometric system was operated in electron-impact mode. Principal ions at m/z 175, 111 and 79 were observed for busulfan, but only m/z 175 was chosen for the quantification of the analyte. The retention time of busulfan was 2.5 min. The detection limit of 100 ng/ml allowed the determination of cerebrospinal fluid and serum busulfan concentrations during the four days of high-dose (1 mg/kg) treatment prior to autotransplantation in five child patients.

Busulfan↗

Simultaneous determination of cotinine and trans-3'-hydroxycotinine in human serum by high-performance liquid chromatography.

A high-performance liquid chromatographic method with ultraviolet photometric detection has been developed for the quantitation of cotinine and trans-3'-hydroxycotinine in human serum. A solid-phase extraction procedure was performed for the analytes and the internal standard, N-ethylnorcotinine, before chromatography. The use of a 30-cm reversed-phase column and a mobile phase of water-methanol-0.1 M sodium acetate-acetonitrile (67:24.5:6.5:2, v/v), pH 4.3, prevented the co-elution of caffeine with cotinine. The limit of quantitation observed with this method was 5 ng/ml for both cotinine and trans-3'-hydroxycotinine. The present method proved useful for the determination of serum levels of these metabolites, correlating with nicotine daily intake.

Chromatography, High Pressure Liquid↗

How the steady-state cotinine concentration in cigarette smokers is directly related to nicotine intake.

The relationship between nicotine intake and steady-state cotinine concentration was studied in a sample of 125 subjects who smoked their usual brands of cigarettes. Nicotine and tar yield of cigarettes was determined with a smoking machine, under standardized conditions. Blood was drawn about 8 hours after the last cigarette was smoked and serum cotinine was measured by high performance liquid chromatography. Cotinine levels ranged from 11 to 400 ng/ml, and nicotine daily intake ranged from 1 to 33 mg/day. Regression analysis and the correlation coefficient, r = 0.919, significant at p less than 0.0001, showed that steady-state cotinine level was linearly and directly related to daily available nicotine, with an increase in correlation coefficient directly related to the increase in tar and nicotine yield. From the findings we also conclude that smokers of low-tar cigarettes do not tend to compensate for lower yields of nicotine.

Adolescent↗

Elimination of caffeine interference in high-performance liquid chromatographic determination of cotinine in human plasma.

A high-performance liquid chromatographic method with ultraviolet photometric detection for the determination of cotinine in human plasma was described. The use of a 30-cm reversed-phase column and of a mobile phase consisting of water-methanol-0.1 M sodium acetate-acetonitrile (72:21:5.6:1.4, v/v), pH 4.1, eliminated caffeine interference. A simplified solid-phase extraction procedure was also performed for plasma samples.

Caffeine↗

Determination of naltrexone and 6 beta-naltrexol in plasma by high-performance liquid chromatography with coulometric detection.

A simple and reliable reversed-phase high-performance liquid chromatographic method with coulometric detection is described for the quantitation of naltrexone and its metabolite, 6 beta-naltrexol, in plasma samples of healthy volunteers who received orally 50 mg of naltrexone. The analytes and the internal standard, naloxone, are extracted with an octadecyl solid-phase extraction column before chromatography. The mobile phase is 0.01 M potassium phosphate (pH 3)-acetonitrile (85:15, v/v) and it is pumped at 0.8 ml/min. The coulometric detector is formed by two electrodes set at +0.20 V and +0.70 V, with a palladium reference electrode. The limit of quantitation observed was 5 ng/ml for both naltrexone and 6 beta-naltrexol. This method can be used to investigate pharmacokinetic parameters of different pharmaceutical preparations of this opioid antagonist.

Chromatography, High Pressure Liquid↗

The role of liquid chromatography-mass spectrometry in the determination of heroin and related opioids in biological fluids.

The opioid most commonly sold in the illicit market is heroin. This substance, classified as an analgesic narcotic drug, has an extremely short half-life, and it is rapidly metabolized to 6-monoacetyl-morphine and further to morphine. Morphine is principally metabolized by conjugation to morphine-3 and morphine-6 glucuronides. Morphine itself is a potent analgesic that is frequently used in the pharmacological intervention of cancer pain. The toxicological and clinical evaluation of heroin and morphine have stimulated pharmacokinetic studies in human and animal models. Although a number of methods exist to determine opiates and their metabolites, liquid chromatography (LC) appears to be the technique that can separate without any pretreatment the lipophilic and the hydrophilic analytes of the complete metabolic profile of heroin and/or morphine. Moreover, mass spectrometry (MS) used as a detector for liquid chromatography is unique, because it offers universality and selectivity. Furthermore, efforts have been made to develop LC/MS interfaces that could overcome the previous problem of poor sensitivity. For this reason, in recent years LC combined with MS has been applied to the analysis of opiates--parent drugs and metabolites--in biological fluids. This article reviews the existing literature on the determination, using liquid chromatography coupled to mass spectrometry, of opiate metabolites found in different biological matrices after the administration of the parent compounds.

Body Fluids↗

Simultaneous determination of heroin 6-monoacetylmorphine, morphine, and its glucuronides by liquid chromatography--atmospheric pressure ionspray-mass spectrometry.

A new analytical technique has been developed for the simultaneous determination of heroin, 6-monoacetylmorphine, morphine, morphine-6- and 3-glucuronides, and codeine in serum using liquid chromatography coupled with ionspray mass spectrometry. The analytes and the internal standard, nalorphine, were subjected to solid-phase extraction (SPE) using ethyl SPE columns before chromatography. The chromatographic separation of the analytes was achieved using a normal phase column and a water-methanol-acetonitrile-formic acid mobile phase at a flow rate of 230 microL/min. The mass spectrometer was operated in selected-ion monitoring mode. Under these conditions, the limit of quantitation was 0.5 ng/ml for heroin, 4 ng/ml for 6-monoacetylmorphine, 4 ng/ml for morphine, 1 ng/ml for morphine-3-glucuronide, 4 ng/ml for morphine-6-glucuronide, and 4 ng/mL for codeine. Serum levels of heroin metabolites were determined in C57BL/6 inbred mice after a dose of 20 mg/kg heroin administered subcutaneously. 6-monoacetylmorphine showed a peak concentration of 0.93 micrograms/mL serum at 3 min, whereas morphine and morphine-3-glucuronide achieved their peak concentrations of 9.6 and 2.9 micrograms/mL serum at 10 and 20 min, respectively. Finally, the absence of morphine-6-glucuronide and codeine excluded the possibility of their formation from morphine in this animal model.

Animals↗