Design, synthesis and characterization of captopril prodrugs for enhanced percutaneous absorption

Author:

Moss Gary P1,Gullick Darren R2,Cox Paul A2,Alexander Cameron3,Ingram Matthew J4,Smart John D4,Pugh W John5

Affiliation:

1. School of Pharmacy, University of Hertfordshire, College Lane, Hatfield, Hertfordshire AL10 9AB, UK

2. School of Pharmacy & Biomedical Sciences, University of Portsmouth, Portsmouth PO1 2DT, UK

3. School of Pharmacy, Boots Science Building, University of Nottingham, University Park, Nottingham NG7 2RD, UK

4. School of Pharmacy & Biomolecular Sciences, University of Brighton, Lewes Road, Brighton BN2 4GJ, UK

5. Welsh School of Pharmacy, Cardiff University, Redwood Building, King Edward VII Avenue, Cardiff CF1 3XF, UK

Abstract

Abstract Most drugs are designed primarily for oral administration, but the activity and stability profiles desirable for this route often make them unsuitable for transdermal delivery. We were therefore interested in designing analogues of captopril, a model drug with poor percutaneous penetration, for which the sustained steady-state blood plasma level associated with transdermal delivery (and which is unattainable orally) would be particularly beneficial. Quantitative structure—permeability relationships (QSPRs) predicted that ester and thiol prodrug derivatives of captopril would have lower maximal transdermal flux (Jm) than the parent drug, since the increases in permeability coefficient (kp) of prodrugs would be outweighed by the reductions in aqueous solubility. Therefore, the aim of this study was to synthesize a series of prodrugs of captopril and to determine if a QSPR model could be used to design therapeutically viable prodrugs. Molecules with the highest predicted kp values were synthesized and characterized, and Jm measured in Franz diffusion cells from saturated aqueous donor across porcine skin (fresh and frozen). In-vitro metabolism was also measured. Captopril and the prodrugs crossed the skin relatively freely, with Jm being highest for ethyl to butyl esters. Substantial first-order metabolism of the prodrugs was observed, suggesting that their enhanced percutaneous absorption was complemented by their metabolic performance. The results suggested that QSPR models provided excellent enhancements in drug delivery. This was not seen at higher lipophilicities, suggesting that issues of solubility need to be considered in conjunction with any such use of a QSPR model.

Publisher

Oxford University Press (OUP)

Subject

Pharmaceutical Science,Pharmacology

Reference41 articles.

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2. Dermatological formulations, percutaneous absorption;Barry,1983

3. A simple method for estimating dermal absorption of chemicals in water;Brown;Chemosphere,1989

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