Title of article :
Synthesis and Investigation of Novel Shelf-Stable, Brain-Specific Chemical Delivery System
Author/Authors :
AI-Obaid, Abdulrahman M. King Saud University - College of Pharmacy - Department of Pharmaceutical Chemistry, Saudi Arabia , Farag, Hassan A. King Saud University - College of Pharmacy - Department of Pharmaceutical Chemistry, Saudi Arabia , Khalil, Ashraf A. King Saud University - College of Pharmacy - Department of Pharmaceutical Chemistry, Saudi Arabia , AI-Shabanah, Othman A. King Saud University - College of Pharmacy - Department of Pharmacology, Saudi Arabia , Abdel Hamide, Sami G. King Saud University - College of Pharmacy - Department of Pharmaceutical Chemistry, Saudi Arabia , EI-Kashef, Hassan A. King Saud University - College of Pharmacy - Department of Pharmacology, Saudi Arabia , Ahmed, Hassan S. King Saud University - College of Pharmacy - Department of Pharmaceutical Chemistry, Saudi Arabia , AI-Affifi, Ahmed M. King Saud University - College of Pharmacy - Department of Pharmaceutical Chemistry, Saudi Arabia , Gadkariem, Elrasheed A. King Saud University - College of Pharmacy - Department of Pharmaceutical Chemistry, Saudi Arabia , EI-Subbagh, Hussein I. King Saud University - College of Pharmacy - Department of Pharmaceutical Chemistry, Saudi Arabia
From page :
1
To page :
15
Abstract :
A 1,4-dihydropyridine(rightwards harpoon over leftwards harpoon) pyridinium salt type redox system is described as a general and flexible method for site-specific and sustained delivery of drugs into the brain. Monoamine oxidase inhibitors (MAOIs) were used as a model example to be delivered into the brain. Chemical and biological oxidations of these compounds were investigated. The prepared 1,4-dihydropyridines were subjected to various chemical and biological oxidation to evaluate their ability to cross blood brain barrier (BBB), and to be oxidized biologically into their corresponding quaternary compounds. l-(Ethoxy-carbonylmethyl)-3,5-bis[N -(2-fluorobenzylideneamino) carbamoyl]-1,4-dihydropyridine (31) proved to cross BBB in adequate rate and converted by the oxidizing enzymes into the corresponding quaternary salt N -( ethoxycarbonylmeth yl)-3 ,5-bis [N -(2-fluorobenzy lideneamino )carbamoyl]pyridinium bromide (20). Stability studies of the synthesized chemical delivery systems (CDSs) at various pH values and temperatures showed that the shelf life time of a solution containing compound 31 is 20.53 days at 5°C, which recommend a lower storage temperature for such solutions. The prepared CDSs proved to be fairly stable for powder form storage. The stability of the prepared compounds is attributed to the conjugation of the two carboxylic functions at C3 and C5 of the pyridine ring with their adjacent double bonds. These results are in consistency with the original rationaledesign.
Keywords :
Synthesis , chemical delivery systems , MAO inhibitors
Journal title :
Saudi Pharmaceutical Journal(SPJ)
Journal title :
Saudi Pharmaceutical Journal(SPJ)
Record number :
2587954
Link To Document :
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