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可植入生物可降解海绵:壳聚糖与明胶形成互聚物复合物对盐酸曲马多释放行为的影响。

Implantable biodegradable sponges: effect of interpolymer complex formation of chitosan with gelatin on the release behavior of tramadol hydrochloride.

作者信息

Foda Nagwa H, El-laithy Hanan M, Tadros Mina I

机构信息

Department of Pharmaceutics and Industrial Pharmacy, Cairo University, Cairo, Egypt.

出版信息

Drug Dev Ind Pharm. 2007 Jan;33(1):7-17. doi: 10.1080/03639040600975188.

Abstract

The effect of interpolymer complex formation between positively charged chitosan and negatively charged gelatin (Type B) on the release behavior of tramadol hydrochloride from biodegradable chitosan-gelatin sponges was studied. Mixed sponges were prepared by freeze-drying the cross-linked homogenous stable foams produced from chitosan and gelatin solutions where gelatin acts as a foam builder. Generation of stable foams was optimized where concentration, pH of gelatin solution, temperature, speed and duration of whipping process, and, chitosan-gelatin ratio drastically affect the properties and the stability of the produced foams. The prepared sponges were evaluated for their morphology, drug content, and microstructure using scanning electron microscopy, mechanical properties, uptake capacity, drug release profile, and their pharmacodynamic activity in terms of the analgesic effect after implantation in Wistar rats. It was revealed that whipping 7% (w/w) gelatin solution, of pH 5.5, for 15 min at 25 degrees C with a stirring speed of 1000 rpm was the optimum conditions for stable gelatin foam generation. Moreover, homogenous, uniform chitosan-gelatin foam with small air bubbles were produced by mixing 2.5% w/w chitosan solution with 7% w/w gelatin solution in 1:5 ratio. Indeed, polyionic complexation between chitosan and gelatin overcame the drawbacks of chitosan sponge mechanical properties where, pliable, soft, and compressible sponge with high fluid uptake capacity was produced at 25 degrees C and 65% relative humidity without any added plasticizer. Drug release studies showed a successful retardation of the incorporated drug where the t50% values of the dissolution profiles were 0.55, 3.03, and 4.73 hr for cross-linked gelatin, un-cross-linked chitosan-gelatin, and cross-linked chitosan-gelatin sponges, respectively. All the release experiments followed Higuchi's diffusion mechanism over 12 hr. The achieved drug prolongation was a result of a combined effect of both cross-linking and polyelectrolyte complexation between chitosan and gelatin. The analgesic activity of the implanted tramadol hydrochloride mixed chitosan-gelatin sponge showed reasonable analgesic effect that was maintained for more than 8 hr. Therefore, the use of chitosan and gelatin together appears to allow the formulator to manipulate both the drug release profiles and the mechanical properties of the sponge that could be effectively implanted.

摘要

研究了带正电荷的壳聚糖与带负电荷的明胶(B型)之间形成的聚合物间复合物对盐酸曲马多从可生物降解的壳聚糖-明胶海绵中释放行为的影响。混合海绵是通过冷冻干燥由壳聚糖和明胶溶液产生的交联均匀稳定泡沫制备的,其中明胶作为泡沫增强剂。优化了稳定泡沫的生成条件,明胶溶液的浓度、pH值、温度、搅拌过程的速度和持续时间以及壳聚糖-明胶比例会极大地影响所产生泡沫的性质和稳定性。使用扫描电子显微镜对制备的海绵进行形态、药物含量和微观结构评估,测试其机械性能、吸收能力、药物释放曲线,并在植入Wistar大鼠后根据镇痛效果评估其药效学活性。结果表明,在25℃下以1000 rpm的搅拌速度搅拌pH值为5.5的7%(w/w)明胶溶液15分钟是生成稳定明胶泡沫的最佳条件。此外,将2.5% w/w的壳聚糖溶液与7% w/w的明胶溶液按1:5的比例混合,可产生具有小气泡的均匀、一致的壳聚糖-明胶泡沫。实际上,壳聚糖与明胶之间的聚离子络合克服了壳聚糖海绵机械性能的缺点,在25℃和65%相对湿度下,无需添加任何增塑剂即可生产出柔韧性好、柔软且可压缩、具有高液体吸收能力的海绵。药物释放研究表明,所包封药物的释放成功延迟,交联明胶、未交联壳聚糖-明胶和交联壳聚糖-明胶海绵的溶出曲线t50%值分别为0.55、3.03和4.73小时。所有释放实验在12小时内均遵循Higuchi扩散机制。实现的药物缓释是壳聚糖与明胶之间交联和聚电解质络合共同作用的结果。植入的盐酸曲马多混合壳聚糖-明胶海绵的镇痛活性显示出合理的镇痛效果,且持续时间超过8小时。因此,壳聚糖和明胶一起使用似乎使配方设计师能够控制药物释放曲线和海绵的机械性能,从而可以有效地进行植入。

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