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Drug-Induced Morphology Switch in Drug Delivery Systems Based on Poly(2-oxazoline)s

机译:基于聚(2-恶唑啉)s的药物输送系统中的药物诱导形态学转换

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摘要

Defined aggregates of polymers such as polymeric micelles are of great importance in the development of pharmaceutical formulations. The amount of drug that can be formulated by a drug delivery system is an important issue, and most drug delivery systems suffer from their relatively low drug-loading capacity. However, as the loading capacities increase, i.e., promoted by good drug–polymer interactions, the drug may affect the morphology and stability of the micellar system. We investigated this effect in a prominent system with very high capacity for hydrophobic drugs and found extraordinary stability as well as a profound morphology change upon incorporation of paclitaxel into micelles of amphiphilic ABA poly(2-oxazoline) triblock copolymers. The hydrophilic blocks A comprised poly(2-methyl-2-oxazoline), while the middle blocks B were either just barely hydrophobic poly(2-n-butyl-2-oxazoline) or highly hydrophobic poly(2-n-nonyl-2-oxazoline). The aggregation behavior of both polymers and their formulations with varying paclitaxel contents were investigated by means of dynamic light scattering, atomic force microscopy, (cryogenic) transmission electron microscopy, and small-angle neutron scattering. While without drug, wormlike micelles were present, after incorporation of small amounts of drugs only spherical morphologies remained. Furthermore, the much more hydrophobic poly(2-n-nonyl-2-oxazoline)-containing triblock copolymer exhibited only half the capacity for paclitaxel than the poly(2-n-butyl-2-oxazoline)-containing copolymer along with a lower stability. In the latter, contents of paclitaxel of 8 wt % or higher resulted in a raspberry-like micellar core.
机译:诸如聚合物胶束之类的聚合物的确定的聚集体在药物制剂的开发中非常重要。药物输送系统可以配制的药物量是一个重要的问题,大多数药物输送系统都具有相对较低的载药量。但是,随着载药量的增加,即通过良好的药物-聚合物相互作用促进的载药量,药物可能会影响胶束系统的形态和稳定性。我们在疏水性药物具有很高容量的显着系统中研究了这种作用,发现紫杉醇并入两亲ABA聚(2-恶唑啉)三嵌段共聚物的胶束中后,具有非凡的稳定性以及深刻的形态变化。亲水嵌段A包含聚(2-甲基-2-恶唑啉),而中间嵌段B仅是勉强疏水的聚(2-正丁基-2-恶唑啉)或高度疏水的聚(2-正壬基-2) -恶唑啉)。通过动态光散射,原子力显微镜,(低温)透射电子显微镜和小角中子散射,研究了聚合物及其具有不同紫杉醇含量的配方的聚集行为。在没有药物的情况下,存在蠕虫状的胶束,在掺入少量药物后仅保留球形形态。此外,疏水性更高的含聚(2-n-壬基-2-恶唑啉)的三嵌段共聚物的紫杉醇容量仅为聚(2-n-丁基-2-恶唑啉)共聚物的一半,而更低。稳定性。在后者中,紫杉醇的含量为8wt%或更高导致树莓状胶束核心。

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