Author:
Terán Mariella,Savio Eduardo,Paolino Andrea,Frier Malcolm
Abstract
Abstract
Background
Scintigraphic studies have been performed to assess the release, both in vitro and in vivo, of radiotracers from tablet formulations. Four different tracers with differing physicochemical characteristics have been evaluated to assess their suitability as models for drug delivery.
Methods
In-vitro disintegration and dissolution studies have been performed at pH 1, 4 and 7. In-vivo studies have been performed by scintigraphic imaging in healthy volunteers. Two hydrophilic tracers, (99mTc-DTPA) and (99mTc-MDP), and two lipophilic tracers, (99mTc-ECD) and (99mTc-MIBI), were used as drug models.
Results
Dissolution and disintegration profiles, differed depending on the drug model chosen. In vitro dissolution velocity constants indicated a probable retention of the radiotracer in the formulation. In vivo disintegration velocity constants showed important variability for each radiopharmaceutical. Pearson statistical test showed no correlation between in vitro drug release, and in vivo behaviour, for 99mTc-DTPA, 99mTc-ECD and 99mTc-MIBI. High correlation coefficients were found for 99mTc-MDP not only for in vitro dissolution and disintegration studies but also for in vivo scintigraphic studies.
Conclusion
Scintigraphic studies have made a significant contribution to the development of drug delivery systems. It is essential, however, to choose the appropriate radiotracers as models of drug behaviour. This study has demonstrated significant differences in release patterns, depending on the model chosen. It is likely that each formulation would require the development of a specific model, rather than being able to use a generic drug model on the basis of its physicochemical characteristics.
Publisher
Springer Science and Business Media LLC
Reference27 articles.
1. Wilson CG, Perkins AC: Gamma Scintigraphy and the study of drug deposition. Advances in pharmaceutical sciences. 1992, London Academic Press
2. Alan Perkins, Malcolm Frier: Nuclear Medicine in Pharmaceutical Research. 1999, London Taylor and Francis
3. Wilson CG: Washington N. Chichester. Physiological Pharmaceutics: Biological Barriers to Drug Absorption. 1989, London Ellis Horwood
4. Budisantoso N, Frier M, Wilson CG: Lipophilic models for scintigraphic evaluation of drug delivery systems. J Pharmacy and Pharmacology. 1997, 49 (4): 49-
5. Adkin DA, Davis SS, Sparrow RA, Huckle PD, Phillips AJ, Wilding IR: The effects of pharmaceutical excipients on small intestinal transit. Br J Clin Pharmac. 1995, 39: 381-387.
Cited by
4 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献