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Biomedical subjects

F Mangani

Publications and source records attributed to F Mangani.

At least 19 recordsLinked to original sources

Micro-SPE method for sample introduction in capillary HPLC/MS.

A new solid-phase extraction on-line device for micro-HPLC is presented. This device optimizes the injection of very dilute samples into a packed capillary column. It consists of two capillary, reversed-phase, HPLC columns of different length that can be linked together as a single chromatographic column. The first segment, only 2 cm long is connected to the HPLC injector. When disconnected from the longer column, several milliliters of an aqueous sample can be passed through at a high flow rate for fast trapping. On the basis of the retention mechanism, all suitable compounds are focused on the short column head in a sharp band. As soon as the chromatographic column is recomposed, the trapped analytes are eluted and separated at the optimal flow rate and gradient conditions. Due to the high preconcentration factor, trace-level analysis can be performed successfully. Different classes of analytes of various polarities and molecular weights can be determined, depending on the stationary phase and on the detector used. Some pesticides belonging to different classes were chosen to evaluate the performance of the device using an electron ionization mass spectrometer as HPLC detector. A fungicide in an irrigation canal water was determined at a concentration level of 4.5 microg x L(-1).

Journal Article↗

An efficient liquid chromatography--mass spectrometry interface for the generation of electron ionization spectra

The use of a new LC-MS interface (cap-EI), part of a Waters Integrity system, capable of generating EI spectra at micro flow rates is presented. The cap-EI interface relies on the production of a fine aerosol by means of a nebulizer and supported by a nitrogen jet. Sensitivity, response linearity, reproducibility, and LC compatibility of the interface were thoroughly examined using testosterone, caffeine, a mixture of antiinflammatory drugs, and 3,4-dihydroxybenzoic acid as test compounds. The interface is fully compatible with LC requirements such as high-water- and/or -buffer-content mobile phases. Reproducibility, high sensitivity in scan mode, as well, to produce library-searchable EI spectra, 2 orders of magnitude linearity, together with an intrinsic simplicity of the entire system are the key features of cap-EI interface.

Journal Article↗

Liquid chromatographic-mass spectrometric determination of phenolic compounds using a capillary-scale particle beam interface.

A capillary-scale particle beam interface was used to detect 18 phenolic compounds in red wine samples. This technique allows reproducible, library searchable electron ionization spectra at only 1 microliter/min mobile phase flow-rate for a sensitive detection of the analytes in complex matrices. The method makes use of a narrow bore, reversed-phase packed capillary column for sample separation. Detection limits were in the low picogram range for most compounds. Sensitivity and response linearity were evaluated for eight phenolic acids, which are often encountered in red wines. The phenolic compound composition was outlined in two red wines obtained using different aging processes.

Chromatography, Liquid↗

myo-[3H]-inositol loaded erythrocytes and white ghosts: two models to investigate the phosphatidylinositol synthesis in human red cells.

Human erythrocytes were loaded with myo-[(3)H]-inositol in the presence or absence of cytidine trisphosphate to investigate the synthesis of membrane phosphoinositides in the intact red cell. The addition of cytidylic nucleotides to the loading mixture yielded a four-fold increase in the [(3)H]-labeling of the membranes. The [(3)H]-labeling of phosphatidylinositol, phosphatidylinositol 4-phosphate and phosphatidylinositol 4,5-bisphosphate was distinguished by two chromatographic techniques. Experiments performed on white ghosts demonstrated the presence of CDP-diacylglycerol synthase and phosphatidylinositol synthase. These results and those already reported allow to discuss a possible turnover of the inositol polar head.

Adult↗

On-line column-switching high-performance liquid chromatography analysis of cardiovascular drugs in serum with automated sample clean-up and zone-cutting technique to perform chiral separation.

A selective and highly reproducible, multi-column HPLC method is described for the analysis of the following cardiovascular drugs: lidocaine, pindolol, metoprolol, oxprenolol, diltiazem and verapamil, in serum. Column-switching devices are employed in combination with advanced separation media technologies for the automated analysis of samples containing complex matrices. The method consists of on-line sample clean-up using a restricted access sorbent, HPLC analysis of the drugs on a microsphere non-porous silica RP-18 column, and front-cutting to perform the chiral separation of pindolol enantiomers on a second HPLC system. Simultaneous control of the two HPLC systems and data analysis is achieved from a single centralized software. The R.S.D. values of the peak areas for spiked serum are less than 1% for metoprolol and oxprenolol, 2-5% for lidocaine, diltiazem and verapamil, and 1.2 and 2.4% for the two pindolol enantiomers. Recoveries, limits of detection and linearities are provided.

Cardiovascular Agents↗

Methanol detoxification by enzyme-loaded erythrocytes.

Alcohol oxidase (AlOx) from Pichea pastoris (a methylotrophic yeast) was encapsulated into human and murine erythrocytes up to 2 units/ml of packed cells. This enzyme has a much higher affinity for methanol than for ethanol, thus making the loaded erythrocytes useful cellular bioreactors able to catabolize methanol. Enzyme-loaded erythrocytes showed an increased rate of the hexose-monophosphate-shunt activity and a significant methaemoglobin production. However, the in vivo survival of these cells does not seem to be significantly affected by methanol catabolism. In vivo, mice receiving AlOx-loaded erythrocytes were able to keep the blood methanol concentrations below values that were about 50% of those found in mice receiving unloaded cells and similar amounts of methanol. Thus AlOx-loaded erythrocytes may add an important contribution to the detoxification protocol against methanol poisoning.

Alcohol Oxidoreductases↗

[Endodontic treatment of a "peculiar" upper central incisor].

The Author presents a clinical case of a maxillary central incisor where the periapical radiograph revealed a process of fusion, an internal resorption, the presence of a "dens invaginatus" and an important periapical radiolucency. In this tooth was located, treated and filled three different root canals.

Adult↗

In vivo accelerated acetaldehyde metabolism using acetaldehyde dehydrogenase-loaded erythrocytes.

Human erythrocytes were loaded with homogeneous acetaldehyde dehydrogenase (AcDH) purified from Alcaligenes Eutrophus (an enzyme species with an apparent Km for acetaldehyde similar to the mitochondrial enzyme), using an encapsulation procedure based on hypotonic haemolysis, isotonic resealing and reannealing. The AcDH-overloaded erythrocytes contained 1.55 +/- 0.25 I.U. of AcDH activity per ml of packed erythrocytes, a value 12-15 times higher than that of corresponding unloaded or native red cells. The AcDH-loaded erythrocytes were found to metabolize 4 +/- 0.8 mumol of acetaldehyde/hr/ml of red blood cells, whereas the glycolytic activity was almost unmodified. Estimates of intracellular adenine nucleotides showed 50% ATP decay in the AcDH-loaded cells when incubated in the presence of acetaldehyde concentrations higher than 50 microM, whereas the [NAD+]/[NADH] ratio was strongly decreased but to the same extent as in control cells, suggesting that this was due to the acetaldehyde itself and not to the presence of encapsulated AcDH. Similar results were obtained using mouse erythrocytes. AcDH-overloaded mouse red blood cells from donor animals were also injected intraperitoneally into compatible recipients (Balb/C) and 80 to 85% of these were found to enter into circulation within 24 hr and to circulate with a half-life of 6-7.3 days (normal half-life 11 days). Following an acute dose of ethanol (2g/kg intraperitoneally), blood levels of acetaldehyde were significantly lower in mice receiving the AcDH-loaded erythrocytes than in controls. Blood levels of ethanol were also lower in the treated mice compared to controls. These results show that AcDH-overloaded erythrocytes can perform in vitro and in vivo as bioreactors improving alcohol and acetaldehyde metabolism, and suggest that administration of these cells to alcoholic patients could be of value in restoring to normal, or improving, alcohol and acetaldehyde metabolism.

Acetaldehyde↗