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朝着环保型海洋防污杀生剂发展——受自然启发的四取代 2,5-二酮哌嗪。

Towards eco-friendly marine antifouling biocides - Nature inspired tetrasubstituted 2,5-diketopiperazines.

机构信息

School of Chemical Sciences, University of Auckland, 23 Symonds Street, Auckland, New Zealand.

Department of Marine Sciences, Tjärnö Marine Laboratory, University of Gothenburg, SE-452 96 Strömstad, Sweden.

出版信息

Sci Total Environ. 2022 Mar 15;812:152487. doi: 10.1016/j.scitotenv.2021.152487. Epub 2021 Dec 22.

Abstract

Marine biofouling plagues all maritime industries at vast economic and environmental cost. Previous and most current methods to control biofouling have employed highly persistent toxins and heavy metals, including tin, copper, and zinc. These toxic methods are resulting in unacceptable environmental harm and are coming under immense regulatory pressure. Eco-friendly alternatives are urgently required to effectively mitigate the negative consequence of biofouling without causing collateral harm. Amphiphilic micropeptides have recently been shown to exhibit excellent broad-spectrum antifouling activity, with a non-toxic mode of action and innate biodegradability. The present work focused on incorporating the pharmacophore derived from amphiphilic micropeptides into a 2,5-diketopiperazine (DKP) scaffold. This privileged structure is present in a vast number of natural products, including marine natural product antifoulants, and provides advantages of synthetic accessibility and adaptability. A novel route to symmetrical tetrasubstituted DKPs was developed and a library of amphiphilic 2,5-DKPs were subsequently synthesised. These biodegradable compounds were demonstrated to be potent marine antifoulants displaying broad-spectrum activity in the low micromolar range against a range of common marine fouling organisms. The outcome of planned coating and field trials will dictate the future development of the lead compounds.

摘要

海洋生物污损给所有海洋产业带来了巨大的经济和环境成本。以前和当前大多数控制生物污损的方法都使用了持久性很高的毒素和重金属,包括锡、铜和锌。这些有毒的方法造成了不可接受的环境危害,并面临巨大的监管压力。迫切需要环保替代品来有效减轻生物污损的负面影响,而不会造成附带损害。最近已经证明,两亲性微肽具有优异的广谱抗污活性,作用模式无毒,且具有固有可生物降解性。本工作的重点是将两亲性微肽衍生的药效团引入 2,5-二酮哌嗪(DKP)支架中。这种特权结构存在于大量天然产物中,包括海洋天然产物防污剂,具有合成可及性和适应性的优势。开发了一种合成对称四取代 DKP 的新途径,随后合成了一系列两亲性 2,5-DKPs。这些可生物降解的化合物被证明是有效的海洋抗污剂,在低微摩尔范围内对一系列常见的海洋污损生物表现出广谱活性。计划的涂层和现场试验的结果将决定先导化合物的未来发展。

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