7 research outputs found

    Solid microcrystalline dispersion films as a new strategy to improve the dissolution rate of poorly water soluble drugs: a case study using olanzapine

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    In this study, we evaluate the dissolution rate enhancement of solid microcrystalline dispersion (SMD) films of olanzapine (OLZ) formulated with four water-soluble polymers namely poly(N-vinylpyrrolidone) (PVP), poloxamer 188 (P188), poloxamer 407 (P407) and Soluplus(庐) (SLP). Prepared formulations were characterised to determine particle size, morphology, hydrogen bonding interactions, thermal characteristics as well as in vitro dissolution studies conducted under sink conditions (pH 6.8). Particle size of OLZ in all formulations ranged between 42 and 58渭m. Attenuated Total Reflectance Fourier Transform Infrared spectroscopy (ATR-FTIR), Differential Scanning Calorimetry (DSC) and Hot-Stage Microscopy (HSM) studies confirmed OLZ was well maintained in its crystalline state during the formulation process. In vitro dissolution studies showed immediate drug release from all formulation when compared to the drug alone. The greatest increase in in vitro dissolution rate was observed in formulations containing P188 most likely due to its enhanced hydrophilic and surfactant properties compared to the other agents used. Overall, this study successfully generated OLZ loaded SMD films with improved in vitro dissolution rates which is highly likely to result in improved oral bioavailability in vivo

    Nanofibres in Drug Delivery

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    In recent years there has been an explosion of interest in the production of nanoscale fibres for drug delivery and tissue engineering. Nanofibres in Drug Delivery aims to outline to new researchers in the field the utility of nanofibres in drug delivery, and to explain to them how to prepare fibres in the laboratory. The book begins with a brief discussion of the main concepts in pharmaceutical science. The authors then introduce the key techniques that can be used for fibre production and explain briefly the theory behind them. They discuss the experimental implementation of fibre production, starting with the simplest possible set-up and then moving on to consider more complex arrangements. As they do so, they offer advice from their own experience of fibre production, and use examples from current literature to show how each particular type of fibre can be applied to drug delivery. They also consider how fibre production could be moved beyond the research laboratory into industry, discussing regulatory and scale-up aspects

    Benefits of enhancing international mobility of pharmacy students

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    Thermal Behavior of Benzoic Acid/lsonicotinamide Binary Cocrystals

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    A comprehensive study of the thermal behavior of the 1:1 and 2:1 benzoic acid/isonicotinamide cocrystals is reported. The 1:1 material shows a simple unit cell expansion followed by melting upon heating. The 2:1 crystal exhibits more complex behavior. Its unit cell first expands upon heating, as a result of C鈥揌路路路蟺 interactions being lengthened. It then is converted into the 1:1 crystal, as demonstrated by significant changes in its X-ray diffraction pattern. The loss of 1 equiv of benzoic acid is confirmed by thermogravimetric analysis鈥搈ass spectrometry. Hot stage microscopy confirms that, as intuitively expected, the transformation begins at the crystal surface. The temperature at which conversion occurs is highly dependent on the sample mass and geometry, being reduced when the sample is under a gas flow or has a greater exposed surface area but increased when the heating rate is elevated

    Older people's priorities in health and social care research and practice: a public engagement workshop

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    As the world鈥檚 population ages, there is an increasing need for research that addresses the priorities of older people. A public engagement workshop focusing on the priorities of older people for research and practice in health and social care was attended by seventy-five people aged 70 years and above in London, United Kingdom (UK). The workshop aimed to identify and prioritise issues important to older people that would benefit from further research and act as a platform to promote sharing of ideas and problems related to these important issues. Key priorities emerged including loneliness and isolation, support and training for professional and family carers, post-surgical care, negative perceptions of older people and inequalities related to public services and healthcare. Participants further suggested older people should be actively involved in all stages of the research process

    Taking the guesswork out of supplying multicompartment compliance AIDS: Do pharmacists require further guidance on medication stability?

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    Objective The purpose of this article is to identify information that is currently available to pharmacists concerning the stability of medications repackaged into multicompartment compliance aids (MCAs). This article explores the potential risks associated with repackaging medications into MCAs for pharmacists who supply and patients who use them. Key findings There is a paucity of information currently available to pharmacists concerning the stability of medications repackaged into MCAs as it is not routinely provided by pharmaceutical manufacturers. However, some studies have identified the potential for adverse effects on safety, bioavailability and stability that may have a clinical impact. There are also professional and legal implications of removing medications from their original packaging for storage in MCAs. Conclusion There is a growing need for further information concerning the stability of medications repackaged into MCAs to guide pharmacists who are supplying these compliance aids to primary and secondary care. Pharmaceutical manufacturers and researchers should be advised to conduct stability testing in MCAs for orally administered medications. This information should be readily available, and pharmacists should be made aware of it via their pharmaceutical bodies. As a result, decisions regarding MCA preparation can be more informed, and pharmacist and patient risks associated with repackaging potentially unstable medications can be minimised

    The Need for Restructuring the Disordered Science of Amorphous Drug Formulations

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