Soltanian Siyavash, François Jean-Marie, Dhont Jean, Arnouts Sven, Sorgeloos Patrick, Bossier Peter
Laboratory of Aquaculture & Artemia Reference Center, Faculty of Bioscience Engineering, Ghent University, Belgium.
Fish Shellfish Immunol. 2007 Dec;23(6):1304-14. doi: 10.1016/j.fsi.2007.07.004. Epub 2007 Jul 17.
The anti-infectious potential of a selection of putative immunostimulants including six commercial beta-glucans (all extracted from baker's yeast Saccharomyces cerevisiae except for Laminarin) and chitin particles were verified in Artemia nauplii by challenging them under gnotobiotic conditions with the pathogen Vibrio campbellii. Under the described experimental conditions, no differential macroscopic nutritional effect (e.g. growth) was observed among the products. Significant increased survival was observed with beta-glucan (Sigma) and Zymosan and to a lesser extent with MacroGard in challenged nauplii. A poor correlation was found between survival values of the challenged Artemia and the product compositions (such as chitin, mannose and beta-glucan content) indicating that the quality of beta-glucans (e.g. the ratio of beta-1,3 and beta-1,6 glucan, the molecular weight, the dimensional structure, type and frequency of branches), eventually in combination with other unidentified compounds, is more important than the amount of product offered. This small-scale testing under gnotobiotic conditions using freshly hatched Artemia nauplii allows for a rapid and simultaneous screening of anti-infectious and/or putative immunostimulatory polymers, and should be combined with studies on cellular and humoral immune responses in order to gain more quantitative insight into their functional properties.
通过在无菌条件下用病原菌坎氏弧菌对卤虫无节幼体进行攻毒,验证了包括六种商业β-葡聚糖(除海带多糖外均从面包酵母酿酒酵母中提取)和几丁质颗粒在内的一系列假定免疫刺激剂的抗感染潜力。在所描述的实验条件下,未观察到这些产品之间存在明显的宏观营养差异效应(如生长)。在受到攻毒的无节幼体中,观察到β-葡聚糖(西格玛)和酵母聚糖的存活率显著提高,MacroGard的提高程度较小。在受到攻毒的卤虫的存活值与产品成分(如几丁质、甘露糖和β-葡聚糖含量)之间发现相关性较差,这表明β-葡聚糖的质量(如β-1,3和β-1,6葡聚糖的比例、分子量、尺寸结构、分支类型和频率),最终可能与其他未鉴定的化合物结合,比提供的产品数量更重要。使用刚孵化的卤虫无节幼体在无菌条件下进行的这种小规模测试允许快速同时筛选抗感染和/或假定的免疫刺激聚合物,并且应该与细胞和体液免疫反应的研究相结合,以便更定量地了解它们的功能特性。