Department of Chemical and Materials Engineering, Southern Taiwan University, Tainan 710, Taiwan.
J Biomater Sci Polym Ed. 2010;21(2):141-57. doi: 10.1163/156856209X410274.
In this paper, nanoparticles composed of chitosan (CS) and poly(acrylic acid) (PAA) were prepared by template polymerization for use as ophthalmic drug carrier. Before the polymerization, hydrogen peroxide was used to cut down the molecular weight of chitosan to improve its solubility and tolerance of pH values in the physiological condition. We found that, as the hydrogen peroxide concentration increased up to 2 M, the reaction temperature was kept at 60 degrees C and depolymerization for 2 h, the molecular weight of chitosan was cut down to 4.1 x 10(4) and its pH tolerance was increased up to 7.1. The modified chitosan (MCS) is expected to tolerate in neutral condition without any precipitation. MCS-PAA nanoparticles for use as an ophthalmic drug carrier were successfully prepared using template polymerization of acrylic acid in the modified chitosan solution. The particle size of the nanoparticles was significantly affected by the pH value of the medium. Both in vitro and in vivo studies reveal that the prepared nanoparticles either modified or unmodified have the better ability in sustaining the release of pilocarpine than the simulated tear fluid and commercial eye drops.
本文采用模板聚合的方法制备了壳聚糖(CS)和聚丙烯酸(PAA)纳米粒子,用作眼科药物载体。聚合前,用过氧化氢降低壳聚糖的分子量,以提高其在生理条件下的溶解度和 pH 值耐受性。我们发现,随着过氧化氢浓度增加到 2 M,反应温度保持在 60°C,解聚 2 小时,壳聚糖的分子量降低到 4.1×10(4),其 pH 值耐受性增加到 7.1。预计改性壳聚糖(MCS)在中性条件下可以耐受而不会沉淀。用过氧化氢将壳聚糖解聚后,在其溶液中采用模板聚合的方法成功制备了用作眼科药物载体的 MCS-PAA 纳米粒子。纳米粒子的粒径显著受到介质 pH 值的影响。无论是改性还是未改性的纳米粒子,在体外和体内研究中都显示出比模拟泪液和市售滴眼液更能持续释放毛果芸香碱的能力。