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Biomedical subjects

M P Koroteev

Publications and source records attributed to M P Koroteev.

4 recordsLinked to original sources

[Synthesis and biological properties of 3,5-cyclophosphates- and -amidophosphates of 1,2-O-alkylydene-6-deoxy-6-halogeno-alpha -D-glucofuranoses].

3,5-Cyclic phosphates and phosphoramides of 6-halogenated glucofuranoses were synthesized via interaction of 3,5,6-bicyclophosphites of 1,2-O-alkylidene-alpha-D-glucofuranoses with halogens (followed by treatment with nucleophilic reagents) and N-chloroamines. 3,5-Cyclic trans-dibutylphosphoramides of 6-chloro-6-deoxy-1,2-O-isopropylidene- and 6-chloro-6-deoxy-(R)-(2,2,2)-trichloroethylidene)-alpha-D-glucofuranoses were shown to possess antiproliferative activity against CaOv human ovarian carcinoma cells in vitro (CE50 of approximately 10(-5) M). Cyclic trans-dibutylphosphoramide of 6-chloro-6-deoxy-1,2,-O-isopropylidene-alpha-D-glucofuranose also displayed marked antitumor effect on P-388 transplantable murine leukemia in vivo (the maximum increase in life span of 100% was reached at the quintuple injection of 100 mg/kg daily).

Animals↗

Synthesis and stereochemistry of 6-deoxy-6-halogeno-D-glucofuranose cyclic phosphates.

1, 2-O-Cyclohexylidene- and 1, 2-O-isopropylidene-alpha-D-glucofuranose react with hexa-alkylphosphorous triamides to give the corresponding 3, 5, 6-phosphites. Treatment of the latter compounds with chlorine and bromine affords 1, 2-substituted 6-deoxy-6-halogeno-alpha-D-glucofuranose 3, 5-phosphorohalogenidates. Replacement of halogen at phsophorus by hydroxyl and amino groups has been investigated. Cyclic phosphorohalogenidates isomerize in N, N-dimethylformamide. The stereochemistry of the compounds investigated was established by using 1H- and 13C-n.m.r. data.

Glucose↗

[The first one of phosphorylated flavonoids].

The natural flavanoid dihydroquercetin was for the first time regioselectively phosphorylated using phosphoramidites. The resulting compounds were isolated in a homogeneous state as phosphorothioates. The structure of the compounds was confirmed by 1H, 13C, and 31P NMR spectroscopy.

Flavonols↗