Tsang, S.C., Yu, C.H., Gao, X. and Tam, K.Y. (2006) Preparation of nanomagnetic absorbent for partition coefficient measurement. International Journal of Pharmaceutics, 327 (1-2). pp. 139-144. ISSN 0378-5173 doi: 10.1016/j.ijpharm.2006.07.031
Abstract/Summary
In this paper, we report a new method based on supercritical carbon dioxide (scCO(2)) to fill and distribute the porous magnetic nanoparticles with n-octanol in a homogeneous manner. The high solubility of n-octanol in scCO(2) and high diffusivity and permeability of the fluid allow efficient delivery of n-octanol into the porous magnetic nanoparticles. Thus, the n-octanol-loaded magnetic nanoparticles can be readily dispersed into aqueous buffer (pH 7.40) to form a homogenous suspension consisting of nano-sized n-octanol droplets. We refer this suspension as the n-octanol stock solution. The n-octanol stock solution is then mixed with bulk aqueous phase (pH 7.40) containing an organic compound prior to magnetic separation. The small-size of the particles and the efficient mixing enable a rapid establishment of the partition equilibrium of the organic compound between the solid supported n-octanol nano-droplets and the bulk aqueous phase. UV-vis spectrophotometry is then applied to determine the concentration of the organic compound in the aqueous phase both before and after partitioning (after magnetic separation). As a result, log D values of organic compounds of pharmaceutical interest determined by this modified method are found to be in excellent agreement with the literature data. (c) 2006 Elsevier B.V. All rights reserved.
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| Item Type | Article |
| URI | https://reading-clone.eprints-hosting.org/id/eprint/11678 |
| Identification Number/DOI | 10.1016/j.ijpharm.2006.07.031 |
| Refereed | Yes |
| Divisions | Life Sciences > School of Chemistry, Food and Pharmacy > Department of Chemistry |
| Uncontrolled Keywords | magnetic nanoparticle, porous, supercritical fluid, partition, coefficient, magnetic separation |
| Download/View statistics | View download statistics for this item |
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