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药物与热敏性聚(N-乙烯基己内酰胺)纳米颗粒的结合及释放

Binding and release of drugs into and from thermosensitive poly(N-vinyl caprolactam) nanoparticles.

作者信息

Vihola Henna, Laukkanen Antti, Hirvonen Jouni, Tenhu Heikki

机构信息

Division of Pharmaceutical Technology, Viikki Drug Discovery Technology Center, University of Helsinki, PB 56, FIN-00014, Helsinki, Finland.

出版信息

Eur J Pharm Sci. 2002 Jul;16(1-2):69-74. doi: 10.1016/s0928-0987(02)00076-3.

Abstract

Three model drug substances, the beta-blocking agents nadolol and propranolol and a choline-esterase inhibitor tacrine, were used in order to determine how different drug molecules affect the behavior of thermally responsive polymer nanoparticles composed of poly(N-vinylcaprolactam) (PVCL). Pure PVCL particles in water exist in a swollen state at room temperature, but the size of the particles decreases discontinuously when the temperature is raised above the volume phase transition temperature. At temperatures above this transition temperature, water is expelled out from the nanoscopic hydrogel particles. Light scattering studies revealed that the more hydrophobic drug substances, propranolol and tacrine, considerably swell the PVCL-microgel. The more hydrophilic drug, nadolol, decreased the transition temperature of PVCL particles, whereas the transition temperature values of pure PVCL particles and that of the added propranolol and tacrine were quite similar. Attenuated drug release results showed that the beta-blocking agents were tightly bound to the microgel, and this was more evident at higher temperatures. On the contrary, the release of tacrine across the cellulose membrane was increased when PVCL particles were present. Thus, both physical and chemical properties of the drugs clearly affected their binding to PVCL particles and the release of drugs was affected by the temperature.

摘要

为了确定不同的药物分子如何影响由聚(N-乙烯基己内酰胺)(PVCL)组成的热响应性聚合物纳米颗粒的行为,使用了三种模型药物,即β-阻滞剂纳多洛尔和普萘洛尔以及胆碱酯酶抑制剂他克林。水中的纯PVCL颗粒在室温下呈溶胀状态,但当温度升高到体积相变温度以上时,颗粒尺寸会不连续减小。在高于该转变温度的温度下,水从纳米级水凝胶颗粒中排出。光散射研究表明,疏水性更强的药物普萘洛尔和他克林会使PVCL微凝胶显著溶胀。亲水性更强的药物纳多洛尔降低了PVCL颗粒的转变温度,而纯PVCL颗粒以及添加的普萘洛尔和他克林的转变温度值相当相似。药物释放减弱的结果表明,β-阻滞剂与微凝胶紧密结合,且在较高温度下这种情况更明显。相反,当存在PVCL颗粒时,他克林透过纤维素膜的释放增加。因此,药物的物理和化学性质都明显影响它们与PVCL颗粒的结合,并且药物释放受温度影响。

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