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Data for the paper: The importance of the film structure during self-powered ibuprofen salicylate drug release from polypyrrole electrodeposited on AZ31 Mg

Data for the paper: The importance of the film structure during self-powered ibuprofen salicylate drug release from polypyrrole electrodeposited on AZ31 Mg
Data for the paper: The importance of the film structure during self-powered ibuprofen salicylate drug release from polypyrrole electrodeposited on AZ31 Mg
Therapeutic drugs uploaded into conjugated conductive polymer matrices deposited on active magnesium alloys serve as controlled-dose, self-powered drug-delivery systems. Preferentially, drugs are added into polymer films in the largest amount possible, mostly to prevent long-term treatments. However, added drugs might interact with the polymer matrix affecting either the structure or the final mechanical properties of the polymer film. In this work, polypyrrole films (PPy) electrodeposited on an AZ31 Mg alloy in ibuprofen and salicylate-containing solutions are investigated in terms of their uploading capacity, surface morphology, and mechanical properties. The techniques used to investigate the uploaded PPy films include cyclic voltammetry (CV), scanning electron microscopy (SEM), EDS, and depth-sensing indentation (DSI). A maximum ibuprofen concentration of 440 ± 40 ?g cm?2 was obtained in PPy films in the presence of sodium salicylate. The release fraction of ibuprofen as a function of time is fitted to Avrami’s equation. The hardness and reduced modulus decreased by 54 and 40 %, respectively, when the Ppy films are prepared in the presence of sodium ibuprofen compared with those prepared in sodium salicylate only, indicating a more plastic film with ibuprofen
Conductive polymer, Corrosion, Drug release, Electrodeposition, Ibuprofen, Magnesium alloy, Polypyrrole, Self-powered, Salicylate
University of Southampton
Ponce De Leon Albarran, Carlos
508a312e-75ff-4bcb-9151-dacc424d755c
Alshammary, Badr, Khlaef
e32e4e92-e5d5-4135-8655-7e287bf81759
Casillas, Norberto
39ced5c0-db14-4439-9615-07627a385252
Cook, Richard
06f8322d-81be-4f82-9326-19e55541c78f
Swingler, J
ab5628e7-adf3-402d-a6f9-b29f57949d8a
Walsh, Frank
309528e7-062e-439b-af40-9309bc91efb2
Ponce De Leon Albarran, Carlos
508a312e-75ff-4bcb-9151-dacc424d755c
Alshammary, Badr, Khlaef
e32e4e92-e5d5-4135-8655-7e287bf81759
Casillas, Norberto
39ced5c0-db14-4439-9615-07627a385252
Cook, Richard
06f8322d-81be-4f82-9326-19e55541c78f
Swingler, J
ab5628e7-adf3-402d-a6f9-b29f57949d8a
Walsh, Frank
309528e7-062e-439b-af40-9309bc91efb2

Ponce De Leon Albarran, Carlos, Alshammary, Badr, Khlaef, Casillas, Norberto, Cook, Richard, Swingler, J and Walsh, Frank (2016) Data for the paper: The importance of the film structure during self-powered ibuprofen salicylate drug release from polypyrrole electrodeposited on AZ31 Mg. University of Southampton doi:10.5258/SOTON/397612 [Dataset]

Record type: Dataset

Abstract

Therapeutic drugs uploaded into conjugated conductive polymer matrices deposited on active magnesium alloys serve as controlled-dose, self-powered drug-delivery systems. Preferentially, drugs are added into polymer films in the largest amount possible, mostly to prevent long-term treatments. However, added drugs might interact with the polymer matrix affecting either the structure or the final mechanical properties of the polymer film. In this work, polypyrrole films (PPy) electrodeposited on an AZ31 Mg alloy in ibuprofen and salicylate-containing solutions are investigated in terms of their uploading capacity, surface morphology, and mechanical properties. The techniques used to investigate the uploaded PPy films include cyclic voltammetry (CV), scanning electron microscopy (SEM), EDS, and depth-sensing indentation (DSI). A maximum ibuprofen concentration of 440 ± 40 ?g cm?2 was obtained in PPy films in the presence of sodium salicylate. The release fraction of ibuprofen as a function of time is fitted to Avrami’s equation. The hardness and reduced modulus decreased by 54 and 40 %, respectively, when the Ppy films are prepared in the presence of sodium ibuprofen compared with those prepared in sodium salicylate only, indicating a more plastic film with ibuprofen

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More information

Published date: 2016
Keywords: Conductive polymer, Corrosion, Drug release, Electrodeposition, Ibuprofen, Magnesium alloy, Polypyrrole, Self-powered, Salicylate
Organisations: Energy Technology Group, Education Hub, Faculty of Engineering and the Environment, nCATS Group

Identifiers

Local EPrints ID: 397612
URI: http://eprints.soton.ac.uk/id/eprint/397612
PURE UUID: c47eec8c-38ce-498e-9e20-095acba3e0e6
ORCID for Carlos Ponce De Leon Albarran: ORCID iD orcid.org/0000-0002-1907-5913
ORCID for Richard Cook: ORCID iD orcid.org/0000-0002-2468-5820

Catalogue record

Date deposited: 30 Jun 2016 15:02
Last modified: 05 Nov 2023 02:44

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Contributors

Creator: Badr, Khlaef Alshammary
Creator: Norberto Casillas
Creator: Richard Cook ORCID iD
Creator: J Swingler
Creator: Frank Walsh

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