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1.
J Med Chem ; 55(16): 7245-52, 2012 Aug 23.
Article in English | MEDLINE | ID: mdl-22827702

ABSTRACT

Methyl-substituted cycloSal-pronucleotides of d4TMP were synthesized with high diastereoselectivities in satisfying chemical yields. The individual diastereomers were tested against HIV-1 and HIV-2 infected wild-type CEM/0 and HIV-2 infected thymidine kinase deficient CEM cells. All diastereomers tested showed significant antiviral activity in CEM/0 and strong activity in CEM/TK(-) cell cultures. The antiviral activities were strongly dependent on the chirality at the phosphate group and the position of the methyl-group(s) in the cycloSal moiety. In CEM/TK(-) cell cultures the difference in antiviral potency was found to be 7- to 20-fold. The stability of each diastereomer was studied in aqueous phosphate buffer and in CEM/0 cell extracts. Large differences in the half-lives were found. A comparison of the relative lipophilicity of the methyl-substituted cycloSal triesters was performed based on the retention times obtained by reversed phase HPLC. The results obtained clearly confirm the importance of a diastereoselective synthesis of cycloSal-pronucleotides.


Subject(s)
Anti-HIV Agents/chemical synthesis , Dideoxynucleotides/chemical synthesis , Stavudine/analogs & derivatives , Thymine Nucleotides/chemical synthesis , Anti-HIV Agents/chemistry , Anti-HIV Agents/pharmacology , Cell Line , Dideoxynucleotides/chemistry , Dideoxynucleotides/pharmacology , Drug Stability , HIV-1/drug effects , HIV-2/drug effects , Humans , Hydrolysis , Mutation , Solvents/chemistry , Stavudine/chemical synthesis , Stavudine/chemistry , Stavudine/pharmacology , Stereoisomerism , Structure-Activity Relationship , Thymidine Kinase/genetics , Thymine Nucleotides/chemistry , Thymine Nucleotides/pharmacology
2.
Chemistry ; 17(5): 1649-59, 2011 Feb 01.
Article in English | MEDLINE | ID: mdl-21268168

ABSTRACT

A diastereoselective synthesis of cycloSal-phosphotriesters (cycloSal=cycloSaligenyl) based on chiral auxiliaries has been developed that allows the synthesis of single diastereomers of the cycloSal-pronucleotides. In previously described synthesis routes, the cycloSal-compounds were always obtained as 1:1 diastereomeric mixtures that could be separated in only rare cases. However, it was shown that the diastereomers have different antiviral activity, toxicity, and hydrolysis stabilities. Here, first a chiral thiazoline derivative was used to prepare nonsubstituted and 5-methyl-cycloSal-phosphotriesters in 48 and ≥95% de (de=diastereomeric excess). However, this approach failed to give the important group of 3-substituted cycloSal-nucleotides. Therefore, two other chiral groups were discovered that allowed the synthesis of (R(P))- and (S(P))-3-methyl-cycloSal-phosphotriesters as well. The antiviral activity was found to be five- to 20-fold different between the two individual diastereomers, which proved the importance of this approach.


Subject(s)
Anti-HIV Agents/chemical synthesis , Dideoxynucleotides/chemical synthesis , Nucleotides/chemical synthesis , Organophosphates/chemical synthesis , Stavudine/chemical synthesis , Zidovudine/analogs & derivatives , Anti-HIV Agents/pharmacokinetics , Dideoxynucleotides/chemistry , Dideoxynucleotides/pharmacokinetics , Humans , Hydrogen-Ion Concentration , Magnetic Resonance Spectroscopy , Nucleotides/chemistry , Nucleotides/pharmacokinetics , Organophosphates/chemistry , Organophosphates/pharmacokinetics , Stavudine/chemistry , Stavudine/pharmacokinetics , Stereoisomerism , Structure-Activity Relationship , Zidovudine/chemical synthesis , Zidovudine/chemistry , Zidovudine/pharmacokinetics
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