Baek Namjin, Lee Jaehwi, Park Kinam
Department of Pharmaceutics and Biomedical Engineering, Purdue University School of Pharmacy, Room G22, 575 Stadium Mall Drive, West Lafayette, IN 47907-2051, USA.
J Biomater Sci Polym Ed. 2004;15(4):527-42. doi: 10.1163/156856204323005343.
N,N-Diethylnicotinamide (DENA) was identified as an excellent hydrotropic agent for paclitaxel (PTX) in our previous studies. The aqueous solubility of PTX was increased by several orders of magnitude in the presence of DENA. Because of such a high hydrotropic property, DENA was used as a release medium providing a sink condition for the release of PTX from poly(lactic-co-glycolic acid) (PLGA) matrices. The release profiles of PTX from PLGA matrices into DENA, serum and phosphate-buffered saline (PBS) were compared. The stability of PTX in DENA and the degradation of PLGA molecules in DENA were examined. The degradation rate constant of PTX in 2 M DENA was similar to those in other aqueous solutions. The use of 2 M DENA as a release medium allowed differentiation of the release profiles of PTX from PLGA matrices made of different PLGA compositions. The PTX release from PLGA matrices was much faster in DENA solution than in serum or PBS, and the concentration of DENA affected the PTX release rate. The presence of DENA in the release medium increased the hydrolysis rate of PLGA polymers. The faster release of PTX from PLGA matrices in DENA solution may be due to the high PTX solubility and faster degradation of PLGA polymers in the presence of DENA. Our study suggests that the aqueous DENA solution can be used for the accelerated release study of PTX from PLGA matrices.
在我们之前的研究中,N,N-二乙基烟酰胺(DENA)被确定为紫杉醇(PTX)的一种优良助溶剂。在DENA存在的情况下,PTX的水溶性提高了几个数量级。由于具有如此高的助溶性能,DENA被用作释放介质,为PTX从聚乳酸-乙醇酸共聚物(PLGA)基质中的释放提供漏槽条件。比较了PTX从PLGA基质向DENA、血清和磷酸盐缓冲盐水(PBS)中的释放曲线。研究了PTX在DENA中的稳定性以及PLGA分子在DENA中的降解情况。PTX在2 M DENA中的降解速率常数与在其他水溶液中的相似。使用2 M DENA作为释放介质能够区分由不同PLGA组成制成的PLGA基质中PTX的释放曲线。PTX从PLGA基质在DENA溶液中的释放比在血清或PBS中快得多,并且DENA的浓度影响PTX的释放速率。释放介质中DENA的存在增加了PLGA聚合物的水解速率。PTX在DENA溶液中从PLGA基质更快释放可能是由于在DENA存在下PTX的高溶解度和PLGA聚合物更快的降解。我们的研究表明,DENA水溶液可用于PTX从PLGA基质的加速释放研究。