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Preparation and Characterization of Alginate Microparticles Containing a Model Protein for Oral Administration in Gnotobiotic European Sea Bass (Dicentrarchus labrax) Larvae

机译:含有巨噬菌素欧洲鲈鱼口服蛋白质模型蛋白的藻酸盐微粒的制备与表征(Dicentrarchus Labrax)幼虫

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摘要

Aquaculture is the fastest growing animal production sector. However, the production of marine fish is still hampered by the high mortality rate in the first few weeks after hatching. Mortality in larvae is often caused by microbial infections. Today, the incorporation of immunostimulants into microparticles provides us new tools to enhance disease resistance in marine larviculture. In this study, we prepared alginate microparticles loaded with the model antigen fluorescein isothiocyanate conjugated-bovine serum albumin. Optimum concentrations of alginate and CaCl2, the correct alginate viscosity and the appropriate preparatory conditions led to the creation of desirable microparticles with the correct size for oral feeding in gnotobiotic European sea bass larvae. The prepared alginate microparticles were stable in sea water and were successfully ingested by gnotobiotic sea bass larvae at day after hatching 7 without causing any negative effects. Results suggest the suitability of this drug delivery system for targeting the innate immune system of fish larvae in order to enhance disease resistance and thus reduce mortality in larviculture.
机译:水产养殖是增长最快的动物生产领域。然而,海洋鱼类的生产仍然受到孵化后的前几周的高死亡率。幼虫的死亡率通常由微生物感染引起。如今,将免疫刺激剂掺入微粒为我们提供了新的工具,以提高海洋幼苗的抗病性。在这项研究中,我们制备了藻酸盐的微粒,用模型抗原荧光素异硫氰酸酯共轭牛血清白蛋白。藻酸盐和CaCl2的最佳浓度,正确的藻酸盐粘度和适当的预备条件导致了在Gnotobiotic欧洲鲈鱼幼虫中的口服喂养的正确尺寸的理想微粒的产生。制备的海藻酸盐微粒在海水中稳定,在孵化后的第二天在孵化后的一天成功地摄入,而不会引起任何负面影响。结果表明该药物递送系统靶向鱼类幼虫先天免疫系统的适用性,以提高抗病性,从而减少幼苗死亡率。

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