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Chitosan as a wall material for a microencapsulated delivery system for Macrobrachium rosenbergii (de Man) larvae

机译:壳聚糖作为罗氏沼虾(de Man)幼虫微囊化递送系统的壁材料

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摘要

Chitosan has been widely accepted as a wall material for preparing microcapsules of various purposes in human medicine. The possibility of using chitosan as a wall material for microencapsulating nutrients and drugs for aquaculture purposes, specifically to Macrobrachium rosenbergii larvae was evaluated in this study. Two types of chitosan-coated microcapsules were prepared using either acetone (MEC-A) or NaOH (MEC-N) as the cross-linking agents. They were compared with a microbound diet relative to total leaching of nutrients and free amino acids (FAA). Among the microcapsules, MEC-N showed the lowest level of total leaching of nutrients (23.3%) during 5 h of immersion in seawater and released 65% FAA after 60 min. During laboratory trials, 75% larvae had accepted the MEC-N capsule. The results of the study suggest that chitosan can be used as a wall material for preparing microcapsules to deliver drugs and nutrients to M. rosenbergii larvae.
机译:壳聚糖已被广泛用作制备人类医学中各种目的微胶囊的壁材料。在这项研究中,评估了使用壳聚糖作为壁材料来微囊化用于水产养殖的营养物和药物的可能性,特别是罗氏沼虾的幼体。使用丙酮(MEC-A)或NaOH(MEC-N)作为交联剂,制备了两种类型的壳聚糖包衣微胶囊。相对于营养素和游离氨基酸(FAA)的总浸出,将它们与微结合饮食进行了比较。在微胶囊中,MEC-N在浸入海水中5 h时显示出最低水平的养分总浸出(23.3%),并在60分钟后释放了65%FAA。在实验室试验期间,有75%的幼虫接受了MEC-N胶囊。研究结果表明,壳聚糖可以用作制备微胶囊的壁材,以向罗氏沼虾幼虫传递药物和营养。

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