Wei Jun, He Hong-Liang, Zheng Chun-Li, Zhu Jia-Bi
Pharmaceutical Research Institute, China Pharmaceutical University, Nanjing 210009, China.
Yao Xue Xue Bao. 2011 Aug;46(8):990-6.
The study is to design chitosan-coated pilocarpine nitrate submicro emulsion (CS-PN/SE) for the development of a novel mucoadhesive submicro emulsion, aiming to prolong the precorneal retention time and improve the ocular absorption. CS-PN/SE was fabricated in two steps: firstly, pilocarpine nitrate submicro emulsion (PN/SE) was prepared by high-speed shear with medium chain triglycerides (MCT) as oil phase and Tween 80 as the main emulsifier, and then incubated with chitosan (CS) acetic solution. The preparation process was optimized by central composite design-response surface methodology. Besides the particle size, zeta potential, entrapment efficiency and micromorphology were investigated, CS-PN/SE's precorneal residence properties and miotic effect were especially studied using New Zealand rabbits as the animal model. When CS-PN/SE was administered topically to rabbit eyes, the ocular clearance and the mean resident time (MRT) of pilocarpine nitrate were found to be dramatically improved (P < 0.05) compared with PN/SE and pilocarpine nitrate solution (PNs), since the K(CS-PN/SE) was declined to 0.006 4 +/- 0.000 3 min(-1) while MRT was prolonged up to 155.4 min. Pharmacodynamics results showed that the maximum miosis of CS-PN/SE was as high as 46.3%, while the miotic response lasted 480 min which is 255 min and 105 min longer than that of PNs and PN/SE, respectively. A larger area under the miotic percentage vs time curve (AUC) of CS-PN/SE was exhibited which is 1.6 folds and 1.2 folds as much as that of PNs and PN/SE, respectively (P < 0.05). Therefore, CS-PN/SE could enhance the duration of action and ocular bioavailability by improving the precorneal residence and ocular absorption significantly.
本研究旨在设计壳聚糖包衣硝酸毛果芸香碱亚微乳(CS-PN/SE),开发一种新型的黏膜黏附性亚微乳,以延长药物在角膜前的滞留时间并提高眼部吸收。CS-PN/SE的制备分两步进行:首先,以中链甘油三酯(MCT)为油相、吐温80为主要乳化剂,通过高速剪切法制备硝酸毛果芸香碱亚微乳(PN/SE),然后将其与壳聚糖(CS)醋酸溶液孵育。采用中心复合设计-响应面法对制备工艺进行优化。除了考察粒径、ζ电位、包封率和微观形态外,还以新西兰兔为动物模型,特别研究了CS-PN/SE的角膜前滞留特性和缩瞳作用。当将CS-PN/SE局部应用于兔眼时,发现与PN/SE和硝酸毛果芸香碱溶液(PNs)相比,硝酸毛果芸香碱的眼部清除率和平均滞留时间(MRT)显著提高(P < 0.05),因为CS-PN/SE的K值降至0.006 4±0.000 3 min-1,而MRT延长至155.4 min。药效学结果表明,CS-PN/SE的最大缩瞳率高达46.3%,而缩瞳反应持续480 min,分别比PNs和PN/SE长255 min和105 min。CS-PN/SE的缩瞳百分比-时间曲线下面积(AUC)更大,分别是PNs和PN/SE的1.6倍和1.2倍(P < 0.05)。因此,CS-PN/SE可通过显著改善角膜前滞留和眼部吸收来延长作用时间并提高眼部生物利用度。