Development of a solvent free continuous co-crystallisation technique for carbamazepine ¿ saccharin.

Co-crystals are emerging as a potential area in the field of crystal designing as it improves material¿s physicochemical properties. Many groups are working on the development of newer techniques for the preparation of co-crystals, which can be scalable and contribute to the green agenda. Being c...

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Main Author: Joshi, Onkar D.
Other Authors: Paradkar, Anant R.
Language:en
Published: University of Bradford 2013
Subjects:
Online Access:http://hdl.handle.net/10454/5697
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spelling ndltd-BRADFORD-oai-bradscholars.brad.ac.uk-10454-56972019-08-31T03:03:02Z Development of a solvent free continuous co-crystallisation technique for carbamazepine ¿ saccharin. Joshi, Onkar D. Paradkar, Anant R. Kelly, Adrian L. Co-crystal Solvent free Continuous Carbamazepine Drug preparation Co-crystals are emerging as a potential area in the field of crystal designing as it improves material¿s physicochemical properties. Many groups are working on the development of newer techniques for the preparation of co-crystals, which can be scalable and contribute to the green agenda. Being continuous and scalable technique, our own developed twin screw extrusion mediated solvent free continuous co-crystallisation (SFCC) technique has been used for the preparation of carbamazepine: saccharin co-crystal. Carbamazepine has been used as a model drug since it shows challenges such as low solubility (BCS class II), polymorphism and thermolabile nature whilst, saccharin was used as a co-former. Effect of extrusion processing parameters such as shear, temperature and screw speed on cocrystallisation has been studied. In addition to this, effect of particle size of co-crystal components, use of hydrated form of carbamazepine, addition of solvent and application of reverse elements on the purity of co-crystal was understood. Use of carbamazepine dihydrate as a starting component yields pure co-crystals. The addition of small amount of polar solvent in anhydrous carbamazepine also yields pure co-crystals whereas particle size did not show any significant effect. Result showed that selection of processing temperature near to eutectic, moderate shear and increase in residence time of component mixture in mixing zone was mainly responsible for co-crystallisation. The extrudates were mainly characterised by XRPD, DSC and in-vitro dissolution tests. Pure co-crystals prepared by addition of highly Development of a solvent free continuous co-crystallisation technique for carbamazepine-saccharin ii polar solvent have been showed drug release identical to that of pure co-crystals prepared by solvent crystallisation. 2013-11-21T15:46:20Z 2013-11-21T15:46:20Z 2013-11-21 2012 Thesis doctoral MPhil http://hdl.handle.net/10454/5697 en <a rel="license" href="http://creativecommons.org/licenses/by-nc-nd/3.0/"><img alt="Creative Commons License" style="border-width:0" src="http://i.creativecommons.org/l/by-nc-nd/3.0/88x31.png" /></a><br />The University of Bradford theses are licenced under a <a rel="license" href="http://creativecommons.org/licenses/by-nc-nd/3.0/">Creative Commons Licence</a>. University of Bradford School of Life Sciences
collection NDLTD
language en
sources NDLTD
topic Co-crystal
Solvent free
Continuous
Carbamazepine
Drug preparation
spellingShingle Co-crystal
Solvent free
Continuous
Carbamazepine
Drug preparation
Joshi, Onkar D.
Development of a solvent free continuous co-crystallisation technique for carbamazepine ¿ saccharin.
description Co-crystals are emerging as a potential area in the field of crystal designing as it improves material¿s physicochemical properties. Many groups are working on the development of newer techniques for the preparation of co-crystals, which can be scalable and contribute to the green agenda. Being continuous and scalable technique, our own developed twin screw extrusion mediated solvent free continuous co-crystallisation (SFCC) technique has been used for the preparation of carbamazepine: saccharin co-crystal. Carbamazepine has been used as a model drug since it shows challenges such as low solubility (BCS class II), polymorphism and thermolabile nature whilst, saccharin was used as a co-former. Effect of extrusion processing parameters such as shear, temperature and screw speed on cocrystallisation has been studied. In addition to this, effect of particle size of co-crystal components, use of hydrated form of carbamazepine, addition of solvent and application of reverse elements on the purity of co-crystal was understood. Use of carbamazepine dihydrate as a starting component yields pure co-crystals. The addition of small amount of polar solvent in anhydrous carbamazepine also yields pure co-crystals whereas particle size did not show any significant effect. Result showed that selection of processing temperature near to eutectic, moderate shear and increase in residence time of component mixture in mixing zone was mainly responsible for co-crystallisation. The extrudates were mainly characterised by XRPD, DSC and in-vitro dissolution tests. Pure co-crystals prepared by addition of highly Development of a solvent free continuous co-crystallisation technique for carbamazepine-saccharin ii polar solvent have been showed drug release identical to that of pure co-crystals prepared by solvent crystallisation.
author2 Paradkar, Anant R.
author_facet Paradkar, Anant R.
Joshi, Onkar D.
author Joshi, Onkar D.
author_sort Joshi, Onkar D.
title Development of a solvent free continuous co-crystallisation technique for carbamazepine ¿ saccharin.
title_short Development of a solvent free continuous co-crystallisation technique for carbamazepine ¿ saccharin.
title_full Development of a solvent free continuous co-crystallisation technique for carbamazepine ¿ saccharin.
title_fullStr Development of a solvent free continuous co-crystallisation technique for carbamazepine ¿ saccharin.
title_full_unstemmed Development of a solvent free continuous co-crystallisation technique for carbamazepine ¿ saccharin.
title_sort development of a solvent free continuous co-crystallisation technique for carbamazepine ¿ saccharin.
publisher University of Bradford
publishDate 2013
url http://hdl.handle.net/10454/5697
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