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1.
Recent Pat Biotechnol ; 8(1): 76-88, 2014.
Article in English | MEDLINE | ID: mdl-24354526

ABSTRACT

Nature is an irrefutable source of inspiration for the modern man in many aspects. The observation and understanding of nature have allowed the development of new materials, new sources of energies, new drugs etc. Specifically, natural products provide a great contribution to the development of new agents for the treatment of infections and antitumor agents. However, obtaining natural products directly from animals, fungi, bacteria, plants etc has been considered not enough to attend the high demand by pharmaceutical industries. In this regard, various strategies based on biotechnological processes or synthetic approaches have been developed. In this scenario the total synthesis can be undoubtedly a useful and powerful tool for obtaining higher amounts of natural products and/or structural modifications thereof. Herein, we emphasize successful examples of total synthesis of galanthamine, morphine, paclitaxel and podophyllotoxin - natural products approved as pharmaceuticals.


Subject(s)
Biological Products/metabolism , Pharmaceutical Preparations/chemical synthesis , Biological Products/chemistry , Galantamine/chemical synthesis , Galantamine/chemistry , Morphine/chemical synthesis , Morphine/chemistry , Paclitaxel/chemical synthesis , Paclitaxel/chemistry , Pharmaceutical Preparations/chemistry , Podophyllotoxin/chemical synthesis , Podophyllotoxin/chemistry
2.
J Mass Spectrom ; 46(11): 1125-30, 2011 Nov.
Article in English | MEDLINE | ID: mdl-22124983

ABSTRACT

A liquid chromatography-electrospray ionization tandem mass spectrometry method was developed and validated for the simultaneous quantitation of nicorandil and its denitrated metabolite, N-(2-hydroxyethyl)-nicotinamide, in rat plasma. After a liquid-liquid extraction step, chromatographic separation was performed on a ShinPack C(18) column with an isocratic mobile phase composed of methanol and 2 mM aqueous ammonium acetate containing 0.03% (v/v) formic acid (33:67 v/v). Procainamide was used as an internal standard (IS). Selected reaction monitoring was performed using the transitions m/z 212 → m/z 135, m/z 166 → m/z 106 and m/z 236 → m/z 163 to quantify nicorandil, its denitrated metabolite and IS, respectively. Calibration curves were constructed over the range of 5-15,000 ng.ml(-1) for both nicorandil and its metabolite. The mean relative standard deviation (RSD%) values for the intra-run precision were 5.4% and 7.3% and for the inter-run precision were 8.5% and 7.3% for nicorandil and its metabolite, respectively. The mean accuracy values were 100% and 95% for nicorandil and its metabolite, respectively. No matrix effect was detected in the samples. The validated method was successfully applied to a pharmacokinetic study after per os administration of nicorandil in rats.


Subject(s)
Chromatography, Liquid/methods , Niacinamide/analogs & derivatives , Nicorandil/blood , Spectrometry, Mass, Electrospray Ionization/methods , Tandem Mass Spectrometry/methods , Animals , Female , Male , Niacinamide/blood , Niacinamide/pharmacokinetics , Nicorandil/pharmacokinetics , Procainamide/blood , Rats , Rats, Wistar , Reproducibility of Results , Sensitivity and Specificity
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