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Issue DateTitleAuthor(s)
2015-05-26Inhalable tranexamic acid for haemoptysis treatmentHaghi, M; Van Den Oetelaar, W; Moir, LM; Zhu, B; Phillips, G; Crapper, J; Young, PM; Traini, D
2010-01Characterization of P-gp Expression and Function vs. Time and Passage in the Calu-3 Air-Interface Model for Drug Delivery to the LungHaghi, M; Young, P; Traini, D; Bebawy, M; Dalby, RN; Byron, PR; Peart, J; Suman, JD; Farr, SJ; Young, PM
2013-11-01Fluticasone uptake across Calu-3 cells is mediated by salmeterol when deposited as a combination powder inhalerHaghi, M; Traini, D; Postma, DS; Bebawy, M; Young, PM
2016-01-01An investigation of surface properties, local elastic modulus and interaction with simulated pulmonary surfactant of surface modified inhalable voriconazole dry powders using atomic force microscopyArora, S; Kappl, M; Haghi, M; Young, PM; Traini, D; Jain, S
2016-02-15Antibiotic transport across bronchial epithelial cells: Effects of molecular weight, LogP and apparent permeabilityStigliani, M; Haghi, M; Russo, P; Young, PM; Traini, D
2014-01-01The formulation, chemical and physical characterisation of clarithromycin-based macrolide solution pressurised metered dose inhalerSaadat, A; Zhu, B; Haghi, M; King, G; Colombo, G; Young, PM; Traini, D
2012-06-04Deposition, diffusion and transport mechanism of dry powder microparticulate salbutamol, at the respiratory epitheliaHaghi, M; Traini, D; Bebawy, M; Young, PM
2014-01-01Towards 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 excipientLewis, DA; Young, PM; Buttini, F; Church, T; Colombo, P; Forbes, B; Haghi, M; Johnson, R; O'Shea, H; Salama, R; Traini, D
2013-05-01Salbutamol sulfate absorption across calu-3 bronchial epithelia cell monolayer is inhibited in the presence of common anionic NSAIDsMamlouk, M; Young, PM; Bebawy, M; Haghi, M; Mamlouk, S; Mulay, V; Traini, D
2014-01-01Towards the bioequivalence of pressurised metered dose inhalers 2. Aerodynamically equivalent particles (with and without glycerol) exhibit different biopharmaceutical profiles in vitroHaghi, M; Bebawy, M; Colombo, P; Forbes, B; Lewis, DA; Salama, R; Traini, D; Young, PM
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