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Biomedical subjects

G Cavina

Publications and source records attributed to G Cavina.

At least 19 recordsLinked to original sources

Purity evaluation of 6 alpha-methylprednisolone acetate by HPLC.

A high-performance liquid chromatographic method is described for the analysis and identification of related impurities in pharmaceutical-grade 6 alpha-methylprednisolone acetate (MPA). Eight MPA impurities derived from synthesis and/or degradation processes were identified. The method is compared to other analytical procedures recently proposed for the European Pharmacopoeia.

Chromatography, High Pressure Liquid

The identification of related substances in 9 alpha-fluoroprednisolone-21 acetate by means of high-performance liquid chromatography with diode array detector and mass spectrometry.

A method for the analysis and identification of the principal related substances in 9 alpha-fluoroprednisolone acetate is described. This compound has been chosen as a model for the investigation of related substances which can be originated in the general procedure for introducing a fluorine substituent at position 9 of a corticosteroid molecule. HPLC procedures, both in reversed and in normal phase were used; a rapid scanning UV detector which allows direct spectrophotometric data to be obtained on chromatographic peaks, proved to be a tool of great importance. Thus, after reversed-phase chromatographic separation and observation of the UV spectra and their respective second derivatives, it was possible to characterize some of the principal effective and potential related substances such as 9 alpha-fluorohydrocortisone acetate, 9 alpha-bromoprednisolone acetate, 9 beta, 11 beta-epoxyprednisolone acetate and 9(11)-dehydroprednisolone acetate, emerging as chromatographic peaks. Identification of 9 alpha-bromoprednisolone acetate and of 9 alpha-fluorohydrocortisone acetate which proved to be the most significant impurities, was confirmed by means of an exhaustive study of the mass spectra of these substances conveniently isolated by normal-phase HPLC. The chromatographic, spectrophotometric and mass-spectrometric characteristics of the studied compounds are reported.

Chromatography, High Pressure Liquid

The identification of related substances in triamcinolone acetonide by means of high-performance liquid chromatography with diode array detector and mass spectrometry.

A study of an HPLC method for the analysis of related substances in triamcinolone acetonide is described. Several systems of solvents and samples of different lots and preparative origins were examined and a rapid-scanning diode array UV detector (DAD) was particularly useful. With the proposed technique it was possible to identify 9 alpha-bromo desonide as a principal impurity, which was present in all examined samples of triamcinolone acetonide. This identification was rendered possible by the investigation of the second derivative of the UV spectra and by means of study of the mass spectrum. Furthermore, it was possible, primarily on the basis of the spectrophotometric data, to formulate reliable hypotheses on the possible identification of 9 beta, 11 beta-epoxide of the desonide which was present at very low levels and to exclude the presence of 11-deoxy-9(11)-unsaturated desonide. The presence of the above-mentioned related substances was explained considering the scheme of synthesis described in the literature. The spectrophotometric characteristics of the studied compounds and the limits of applicability of the present procedure are discussed.

Chromatography, High Pressure Liquid

Analytical and regulatory considerations for ferritin-containing pharmaceutical products.

Ferritin, an iron-containing protein widely diffused in nature, has the important biochemical function of being the principal reserve and regulator for Fe3+ levels in blood and tissue. Due to its natural, effectively non-toxic iron content, ferritin has been the object of strong interest in the development of pharmaceutical products for use in iron deficiency treatment. Therefore, the need has arisen for the analytical characterization of this industrial product, be it in the hydroglyceric solution or dry powder form. The main considerations for the characterization of industrial ferritin are the following: a) iron content in both the unmodified product and the precipitated protein; b) protein content and protein/iron ratio; c) protein identification by means of polyacrylamide gel electrophoresis (PAGE); d) confirmation of protein identity and evaluation of molecular weight by means of size exclusion chromatography; e) identification and evaluation of other components of bulk ferritin preparations such as preservatives, excipients for lyophilization, water and concomitant proteins. Eight different samples were examined using the above considerations. Among the qualitative and quantitative results reported, of particular interest are those obtained by means of size-exclusion high performance liquid chromatography (SEC-HPLC). With a UV "diode array" detector it is possible to discern the peaks for ferritin and its molecular aggregates from those of concomitant proteins and preservatives; furthermore, it is possible to evaluate their molecular dimensions. Using this method, the ferritin monomer and other protein fractions can be quantitatively analyzed either by calculating area percent distribution of the chromatographic peaks or by comparing the sample with a highly pure external standard of ferritin.(ABSTRACT TRUNCATED AT 250 WORDS)

Drug Evaluation

[Behavior of vitamin A, beta-carotene, retinol binding protein and prealbumin in the plasma of hypo- and hyperthyroid subjects].

Plasma concentrations of beta-carotene and retinol, determined by HPLC, and of transport proteins, ascertained by immunodiffusion technique, in hypo and hyperthyroid subjects are reported. In hypothyroid subject a considerable increase in carotene was noted. This was not the case for retinol. In hyperthyroids both beta-carotene and retinol levels were found to be normal. Transport protein (PA and RBP) levels were found to be lower only in cases of hyperthyroidism but unchanged for hypothyroids. According to the Authors the results show that the alteration in plasma carotene levels to be found in hypothyroid subjects is not the direct consequence of a lack of thyroid hormone in the metabolism of vitamin A but the indirect effect of thyroid disease.

Adult

[Effect of renal and liver failure on blood levels of vitamin A, its precursor (beta-carotene) and its carrier proteins (prealbumin and retinol binding protein)].

Plasma beta-carotene and retinol assay was performed by high pressure liquid chromatography (HPLC) in subjects with chronic renal failure or liver cirrhosis. In the same subjects blood prealbumin (PA) and retinol binding protein (RBP) were determined by immunological technique. A considerable increase of retinol and in a lesser extent of beta-carotene was noted in the blood of patients with renal insufficiency. In cirrhotic patients it was shown a marked decrease both of beta-carotene and retinol plasma concentrations. PA and RBP there were greatly increased in renal failure and decreased in liver cirrhosis. This results suggest that kidney and liver chronic failure interfere with vitamin A metabolism throughout their action on metabolic processes of synthesis and elimination of PA and RBP.

Carotenoids

[Oral load test with beta-carotene in normal and dysthyroid subjects].

An oral load of beta-carotene (500 mg) was administered to four normal, four hypo and four hyperthyroid subjects. Plasma beta-carotene content was determined at the 2nd, 4th, 6th, 8th, 10th, 12th and 24th hour after administration and at every 24th hour thereafter for 5 consecutive days. Plasma assays were performed by HPLC. No significant differences were revealed by Student's T test for one group to the other. The authors sustain that, as there is no impairment in intestinal uptake of beta-carotene in disthyroid subjects, the elsewhere described increase in carotinemia in hypothyroids is due to other mechanisms.

Carotenoids

Analysis of natural corticosteroids in adrenal extracts and in biological fluids by high-performance liquid chromatography.

A liquid chromatographic procedure is described for the analysis of the principal natural corticosteroids in extracts of adrenal glands. Microparticulate silicic acid columns and gradients of methanol in chloroform are used: conditions are described for the quantitative analysis of the single principal steroidal components of adrenal extracts for pharmaceutical use and of adrenal extracts of rats. In the last case, the use of a 5-micron silica column with the appropriate gradient allows the determination of corticosterone and of 18-hydroxydeoxycorticosterone, which were identified by means of mass spectrometry on their eluates. A single analysis can be performed on the extract of 15 mg of rat adrenal tissue. For the last type of analysis, isocratic conditions on a 10-micron LiChrosorb Diol column are also described. The application of the gradient elution procedure to the analysis of steroidal compounds in human plasma is also described.

Adrenal Cortex