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赵依妮, 李怡, 胡鲲, 阮记明, 叶鑫, 杨先乐. 诺氟沙星壳聚糖微胶囊缓释作用研究[J]. 水生生物学报, 2014, 38(4): 675-680. DOI: 10.7541/2014.96
引用本文: 赵依妮, 李怡, 胡鲲, 阮记明, 叶鑫, 杨先乐. 诺氟沙星壳聚糖微胶囊缓释作用研究[J]. 水生生物学报, 2014, 38(4): 675-680. DOI: 10.7541/2014.96
ZHAO Yi-ni, LI Yi, HU Kun, RUAN Ji-Ming, YE Xin, YANG Xian-le. THE ANALYSIS OF THE CONTROLLED-RELEASE PROPERTIES OF NORFLOXACIN MICROENCAPSULATION[J]. ACTA HYDROBIOLOGICA SINICA, 2014, 38(4): 675-680. DOI: 10.7541/2014.96
Citation: ZHAO Yi-ni, LI Yi, HU Kun, RUAN Ji-Ming, YE Xin, YANG Xian-le. THE ANALYSIS OF THE CONTROLLED-RELEASE PROPERTIES OF NORFLOXACIN MICROENCAPSULATION[J]. ACTA HYDROBIOLOGICA SINICA, 2014, 38(4): 675-680. DOI: 10.7541/2014.96

诺氟沙星壳聚糖微胶囊缓释作用研究

THE ANALYSIS OF THE CONTROLLED-RELEASE PROPERTIES OF NORFLOXACIN MICROENCAPSULATION

  • 摘要: 利用冷冻干燥法制备了诺氟沙星-壳聚糖微囊制剂,并比较了诺氟沙星-壳聚糖微囊制剂与诺氟沙星原料药在草鱼组织中代谢动力学的差异性。结果表明,同诺氟沙星原料药相比,壳聚糖包埋对诺氟沙星在草鱼血浆中的吸收、代谢速率明显延缓,生物利用度明显增加。壳聚糖包埋条件下T1/2 ka为单纯口灌诺氟沙星的8倍,达峰时间平均延长2倍有余,T1/2和T1/2也明显延长,消除率(CLs)是单纯口灌的1/2;5倍壳聚糖包埋条件下诺氟沙星在草鱼血浆中的吸收速度比10倍包埋条件下稍快,达峰时间短,消除速度明显加快,但分布半衰期和曲线下面积(AUC)大小二者比较接近。实验中诺氟沙星-壳聚糖微囊制剂同诺氟沙星原料药在草鱼体内代谢动力学差异表明壳聚糖包埋对诺氟沙星药效的释放及鱼体对药物的吸收代谢都具有明显的延缓效果,因此在实际的生产活动中可用壳聚糖作为缓释剂延长药效、延缓药物在养殖动物体内的吸收代谢,提高生物利用率,达到更好的预防和治疗效果。

     

    Abstract: In this study, we determined the controlled-release properties of Norfloxacin (NFLX) microencapsulation which was embedded with chitosan. We approached this goal by examining the pharmacokinetic activity of NFLX in the plasma of Ctenopharyngodon idellus. The results showed that the base line was smooth and the object peak of NFLX was clearly separated from the others. The mean recovery rate of NFLX in plasma was (94.3286.231)%. The results of the precision test were satisfying. The intra-days and extra-days precision values were 1.988% and 2.648% respectively. We compared the pharmacokinetic properties of embedded and un-embedded NFLX in the plasma of Ctenopharyngodon idellus. Chitosan was a key factor that accounted for the differences between these two groups. The embedded NFLX exhibited the delayed absorption speed, distribution, and elimination in the Plasma. The T1/2 ka of embedded group was about eight times higher than that of the un-embedded group. The T1/2 and T1/2 of the embedded group were much longer too. The Tp of embedded group was more than two times higher than that of the un-embedded group. The CLs of the embedded group was about half of that of the un-embedded group. The absorption speed of the 5-time embedded group was higher than that of the 10-time embedded group. The T1/2 and AUC of the 5-time embedded group were close to that of the 10-time embedded group. However, the absorption and elimination speeds of the former group were faster than those of the latter. The pharmacokinetic differences between norfloxacin-chitosan microcapsules and norfloxacin alone in grass carp suggested that the chitosan embedding should affect the release efficacy, the absorption, and metabolism of NFLX in fish. In real production we can use chitosan as a release agent to preserve the effects of NFLX and to delay absorption and metabolism of the drug in the organism, hereby to improve its effects.

     

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