Enantiomer

Dimeric l-Dopa Derivatives as Potential Prodrugs

Organic Chemistry / Kinetics / In Vitro / Prodrugs / Humans / Animals / Plasma / Prodrug / Partition Coefficient / Levodopa / Shell Half-Life / Rats / Rat / Aqueous Solution / Hydrolysis / Chemical Stability / Drug Stability / Hydrogen-Ion Concentration / Chemical Synthesis / Physicochemical Properties / Dimerization / Enantiomer / Animals / Plasma / Prodrug / Partition Coefficient / Levodopa / Shell Half-Life / Rats / Rat / Aqueous Solution / Hydrolysis / Chemical Stability / Drug Stability / Hydrogen-Ion Concentration / Chemical Synthesis / Physicochemical Properties / Dimerization / Enantiomer

Dimeric l-Dopa Derivatives as Potential Prodrugs

Organic Chemistry / Kinetics / In Vitro / Prodrugs / Humans / Animals / Plasma / Prodrug / Partition Coefficient / Levodopa / Shell Half-Life / Rats / Rat / Aqueous Solution / Hydrolysis / Chemical Stability / Drug Stability / Hydrogen-Ion Concentration / Chemical Synthesis / Physicochemical Properties / Dimerization / Enantiomer / Animals / Plasma / Prodrug / Partition Coefficient / Levodopa / Shell Half-Life / Rats / Rat / Aqueous Solution / Hydrolysis / Chemical Stability / Drug Stability / Hydrogen-Ion Concentration / Chemical Synthesis / Physicochemical Properties / Dimerization / Enantiomer

Dimeric l-Dopa Derivatives as Potential Prodrugs

Organic Chemistry / Kinetics / In Vitro / Prodrugs / Humans / Animals / Plasma / Prodrug / Partition Coefficient / Levodopa / Shell Half-Life / Rats / Rat / Aqueous Solution / Hydrolysis / Chemical Stability / Drug Stability / Hydrogen-Ion Concentration / Chemical Synthesis / Physicochemical Properties / Dimerization / Enantiomer / Animals / Plasma / Prodrug / Partition Coefficient / Levodopa / Shell Half-Life / Rats / Rat / Aqueous Solution / Hydrolysis / Chemical Stability / Drug Stability / Hydrogen-Ion Concentration / Chemical Synthesis / Physicochemical Properties / Dimerization / Enantiomer
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