Browsing by Author Forbes, Ben

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Issue DateTitleAuthor(s)Citation
2014In vitro and ex vivo methods predict the enhanced lung residence time of liposomal ciprofloxacin formulations for nebulisationOng, Hui Xin; Traini, Daniela; Young, Paul; Bebawy, Mary; Benaouda, Faiza; Cipolla, David; Forbes, Ben; Gonda, Igor; Pharmacy; School of Medical Sciences: Pharmacology; School of Medical Sciences: PharmacologyIn vitro and ex vivo methods predict the enhanced lung residence time of liposomal ciprofloxacin formulations for nebulisation, European Journal of Pharmaceutics and Biopharmaceutics, vol.86, 1, 2014,pp 83-89
2014Mimicking the APSD from pMDIs: Can it be done and is it sufficient to claim bioequivalence?Haghi, Mehra; Salama, Rania; Traini, Daniela; Young, Paul; Buttini, Francesca; Church, Tanya; Colombo, Paolo; Forbes, Ben; Johnson, R; Lewis, David; OShea, Helen; Pharmacy; Pharmacy; School of Medical Sciences: Pharmacology; School of Medical Sciences: PharmacologyMimicking the APSD from pMDIs: Can it be done and is it sufficient to claim bioequivalence?, Proceedings of the RDD Asia 2014 Respiratory Drug Delivery, vol.N/A, 2014, pp. 45-54
2014Towards the bioequivalence of pressurised metered dose inhalers 1: Design and characterisation of aerodynamically equivalent beclomethasone dipropionate inhalers with and without glycerol as a non-volatile excipientHaghi, Mehra; Salama, Rania; Traini, Daniela; Young, Paul; Buttini, Francesca; Church, Tanya; Colombo, Paolo; Forbes, Ben; Johnson, R; Lewis, David; O'Shea, H; Pharmacy; Pharmacy; School of Medical Sciences: Pharmacology; School of Medical Sciences: PharmacologyTowards the bioequivalence of pressurised metered dose inhalers 1: Design and characterisation of aerodynamically equivalent beclomethasone dipropionate inhalers with and without glycerol as a non-volatile excipient, European Journal of Pharmaceutics and Biopharmaceutics, vol.86, N/A, 2014,pp 31-37
2014Towards the bioequivalence of pressurised metered dose inhalers 2. Aerodynamically equivalent particles (with and without glycerol) exhibit different biopharmaceutical profiles in vitroHaghi, Mehra; Salama, Rania; Traini, Daniela; Young, Paul; Bebawy, Mary; Colombo, Paolo; Forbes, Ben; Lewis, David; Pharmacy; Pharmacy; School of Medical Sciences: Pharmacology; School of Medical Sciences: PharmacologyTowards the bioequivalence of pressurised metered dose inhalers 2. Aerodynamically equivalent particles (with and without glycerol) exhibit different biopharmaceutical profiles in vitro, European Journal of Pharmaceutics and Biopharmaceutics, vol.86, 1, 2014,pp 38-45