In Vitro–In Vivo Correlation on Parenteral Dosage Forms
Author:
Publisher
Springer US
Link
http://link.springer.com/content/pdf/10.1007/978-0-387-72379-2_11.pdf
Reference96 articles.
1. Agrawal, C. M., Huang, D., Schmitz, J. P., and Athanasiou, K. A. (1997). Elevated temper-ature degradation of a 50: 50 copolymer of PLA-PGA. Tissue Engineering 3: 345-352.
2. Anderson M. and Omri, A. (2004). The effect of different lipid components on the in vitrostability and release kinetics of liposome formulations. Drug Delivery 11: 33-39.
3. Aso, Y., Yoshioka, S., Li Wan Po, A., and Terao, T. (1994). Effect of temperature on mechanisms of drug release and matrix degradation of poly(-lactide) microspheres. Journal of Controlled Release 31: 33-39.
4. Blanco-Prieto, M. J., Besseghir, K., Orsolini, P., Heimgartner, F., Deuschel, C., Merkle, H. P., Nam-Tran, H., and Gander, B. (1999). Importance of the test medium for the release kinetics of a somatostatin analogue from poly(-lactide-co-glycolide) microspheres. International Journal of Pharmaceutics 184: 243-250.
5. Blanco-Prieto, M. J., Campanero, M. A., Besseghir, K., Heimgatner, F., and Gander, B. (2004). Importance of single or blended polymer types for controlled in vitro release and plasma levels of a somatostatin analogue entrapped in PLA/PLGA microspheres. Journal of Controlled Release 96: 437-448.
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