中国寄生虫学与寄生虫病杂志

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缓控释传递系统在兽用抗寄生虫药物中的应用

涂珍,张皓冰*   

  1. 中国疾病预防控制中心寄生虫病预防控制所,世界卫生组织疟疾、血吸虫病和丝虫病合作中心,卫生部寄生虫病原与媒介生物学重点实验室,上海 200025
  • 出版日期:2015-02-28 发布日期:2015-05-04

Controlled Veterinary Drug Delivery Systems against Parasitic Infection

TU Zhen,ZHANG Hao-bing*   

  1. National Institute of Parasitic Diseases,Chinese Center for Disease Control and Prevention;Key Laboratory of Parasite and Vector Biology,MOH;WHO Collaborating Center for Malaria,Schistosomiasis and Filariasis,Shanghai 200025,China
  • Online:2015-02-28 Published:2015-05-04

摘要:

寄生虫感染,尤其是胃肠道线虫和肺线虫的感染,最常见于温带地区的牲畜,也是影响其产量的主要限制因素。放牧季节,牧区动物野外活动时间较长,对抗寄生虫药物的应用造成不便。因此,利用缓控释系统给药以延长作用时间,减轻用药难度十分必要。本文综述了一些具有缓控释作用的装置和药物剂型,包括:瘤胃巨丸剂、长效注射剂、原位固化植入剂、微粒、微球和纳米粒子等,以及这些给药系统的优缺点。

关键词: 缓控释传递系统, 寄生虫, 瘤胃巨丸剂, 长效注射剂, 原位固化植入剂, 微粒, 纳米粒子

Abstract:

Parasitic infections, especially the gastrointestinal and lung nematode infections, are most common in livestock in temperate areas, and it is the major constraints affecting livestock production. In grazing season, outdoor activities of animals cause inconvenience to the application of antiparasitic drugs. Therefore, controlled drug delivery systems can prolong the effect time and reduce the difficulty of drug administration. This review summarizes several types of long-term delivery devices and dosage forms including intraruminal devices, long-acting injectables, in-situ forming implants, novel microparticles and nanoparticles. Their advantages and drawbacks are dicussed.

Key words: Controlled drug release, Parasite, Intraruminal device, Long-acting injectable, In situ forming implant, Microparticle, Nanoparticle