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Biomimetic Approaches for the Development of New Antifouling Solutions: Study of Incorporation of Macroalgae and Sponge Extracts for the Development of New Environmentally-Friendly Coatings

机译:新型防污溶液开发的仿生方法:掺入大草原和海绵提取物的研究新的环保涂料

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摘要

Biofouling causes major economic losses in the maritime industry. In our site study, the Bay of La Paz (Gulf of California), biofouling on immersed structures is a major problem and is treated mostly with copper-based antifouling paints. Due to the known environmental effect of such treatments, the search for environmentally friendly alternatives in this zone of high biodiversity is a priority to ensure the conservation and protection of species. The aim of this work was to link chemical ecology to marine biotechnology: indeed, the natural defense of macroalgae and sponge was evaluated against biofoulers (biofilm and macrofoulers) from the same geographical zone, and some coatings formulation was done for field assays. Our approach combines in vitro and field bioassays to ensure the selection of the best AF agent prospects. The 1st step consisted of the selection of macroalgae (5 species) and sponges (2 species) with surfaces harboring a low level of colonizers; then extracts were prepared and assayed for toxicity against Artemia, activity towards key marine bacteria involved in biofilm formation in the Bay of La Paz, and the potency to inhibit adhesion of macroorganisms (phenoloxidase assays). The most active and non-toxic extracts were further studied for biofouling activity in the adhesion of the bacteria involved in biofilm formation and through incorporation in marine coatings which were immersed in La Paz Bay during 40 days. In vitro assays demonstrated that extracts of Laurencia gardneri, Sargassum horridum (macroalgae), Haliclona caerulea and Ircinia sp. (sponges) were the most promising. The field test results were of high interest as the best formulation were composed of extracts of H. caerulea and S. horridum and led to a reduction of 32% of biofouling compared with the control.
机译:生物污染导致海洋行业的主要经济损失。在我们的网站学习中,La Paz(加利福尼亚州海湾)的湾,生物灌木的结构是一个主要问题,主要用铜基防污涂料治疗。由于这种治疗的已知环境效果,对该区域的环保替代品的搜索优先确保物种的保护和保护。这项工作的目的是将化学生态联系起来对海洋生物技术:实际上,从相同地理区(生物膜和宏相)评估了大草原和海绵的自然防御,并进行了一些涂料制剂用于现场测定。我们的方法结合了体外和野外生物测定,以确保选择最佳AF代理前景。第一个步骤由含有含有低水平的殖民液的表面的宏观甘油(5种)和海绵(2种)的选择;然后制备萃取物并测定用于伪造症的毒性,对La PAZ海湾中参与生物膜形成的关键海洋细菌的活性,以及​​抑制宏大粘附的效力(酚氧化酶测定)。进一步研究了最活跃和无毒的提取物,在生物膜形成的细菌的粘附性中进一步研究了生物污垢活性,并通过在40天内浸入La Paz湾浸没的海洋涂层中。体外测定表明,Laurencia Gardneri,Sargassum roidum(Macroalgae),Haliclona Caerulea和伊尔尼菊属植物的提取物。 (海绵)是最有前途的。现场测试结果具有高兴趣,因为最佳配方由H. caerulea和S. roidum提取物组成,导致与对照相比减少了32%的生物污垢。

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