Items where Author is "Isreb, Mohammad"

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Isreb, Mohammad, Chalkia, Marianiki, Gough, Timothy, Forbes, Robert Thomas orcid iconORCID: 0000-0003-3521-4386 and Timmins, Peter (2022) A Combined Rheological and Thermomechanical Analysis Approach for the Assessment of Pharmaceutical Polymer Blends. Polymers, 14 (3527).

Kuzminska, Magda, Pereira, Beatriz, Habashy, Rober, Peak, Matthew, Isreb, Mohammad, Gough, Tim D, Isreb, Abdullah orcid iconORCID: 0000-0001-9939-6161 and Alhnan, Mohamed A (2021) Solvent-free Temperature-Facilitated Direct Extrusion 3D Printing for Pharmaceuticals. International Journal of Pharmaceutics . ISSN 1873-3476

Pereira, Beatriz, Isreb, Abdullah, Isreb, Mohammad, Forbes, Robert Thomas orcid iconORCID: 0000-0003-3521-4386, Oga, Enoche Florence orcid iconORCID: 0000-0002-2661-0574 and Alhnan, Mohamed (2020) Additive manufacturing of a point-of-care “polypill”: Fabrication of concept capsules of complex geometry with bespoke release against cardiovascular disease. Advanced Healthcare Materials, 9 (13). ISSN 2192-2640

Isreb, Abdullah orcid iconORCID: 0000-0001-9939-6161, Baj, Krzysztof, Wojsz, Magdalena, Isreb, Mohammad, Peak, Matthew and Alhnan, Mohamed A (2019) 3D printed oral theophylline doses with innovative 'radiator-like' design: Impact of polyethylene oxide (PEO) molecular weight. International Journal of Pharmaceutics, 564 . pp. 98-105. ISSN 0378-5173

Sadia, Muzna, Isreb, Abdullah orcid iconORCID: 0000-0001-9939-6161, Abbadi, Ibrahim, Isreb, Mohammad, Aziz, David, Selo, Amjad, Timmins, Peter and Albed Alhnan, Mohamed (2018) From 'fixed dose combinations' to 'a dynamic dose combiner': 3D printed bi-layer antihypertensive tablets. European Journal of Pharmaceutical Sciences, 123 . pp. 484-494. ISSN 0928-0987

Arafat, Basel, Wojsz, Magdalena, Isreb, Abdullah orcid iconORCID: 0000-0001-9939-6161, Forbes, Robert Thomas orcid iconORCID: 0000-0003-3521-4386, Isreb, Mohammad, Ahmed, Waqar, Arafat, Tawfiq and Alhnan, Mohamed A. (2018) Tablet fragmentation without a disintegrant: A novel design approach for accelerating disintegration and drug release from 3D printed cellulosic tablets. European Journal of Pharmaceutical Sciences, 118 . pp. 191-199. ISSN 0928-0987

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