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合成仿生聚甲基丙烯酸酯:用于设计抗蓝藻和抗藻剂的有前景的平台。

Synthetic Biomimetic Polymethacrylates: Promising Platform for the Design of Anti-Cyanobacterial and Anti-Algal Agents.

作者信息

Mikula Přemysl, Mlnaříková Marie, Nadres Enrico T, Takahashi Haruko, Babica Pavel, Kuroda Kenichi, Bláha Luděk, Sovadinová Iva

机构信息

RECETOX, Faculty of Science, Masaryk University, Kamenice 3, CZ-62500 Brno, Czech Republic.

Department of Biologic and Materials Sciences & Prosthodontics, School of Dentistry, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Polymers (Basel). 2021 Mar 26;13(7):1025. doi: 10.3390/polym13071025.

Abstract

Extensive, uncontrolled growth of algae and cyanobacteria is an environmental, public health, economic, and technical issue in managing natural and engineered water systems. Synthetic biomimetic polymers have been almost exclusively considered antimicrobial alternatives to conventional antibiotics to treat human bacterial infections. Very little is known about their applicability in an aquatic environment. Here, we introduce synthetic biomimetic polymethacrylates (SBPs) as a cost-effective and chemically facile, flexible platform for designing a new type of agent suitable for controlling and mitigating photosynthetic microorganisms. Since SBPs are cationic and membranolytic in heterotrophic bacteria, we hypothesized they could also interact with negatively charged cyanobacterial or algal cell walls and membranes. We demonstrated that SBPs inhibited the growth of aquatic photosynthetic organisms of concern, i.e., cyanobacteria ( and ) and green algae ( and ), with 50% effective growth-inhibiting concentrations ranging between 95 nM and 6.5 μM. Additionally, SBPs exhibited algicidal effects on . and cyanocidal effects on picocyanobacterium . and microcystin-producing cyanobacterium . . SBP copolymers, particularly those with moderate hydrophobic content, induced more potent cyanostatic and cyanocidal effects than homopolymers. Thus, biomimetic polymers are a promising platform for the design of anti-cyanobacterial and anti-algal agents for water treatment.

摘要

藻类和蓝细菌的广泛且不受控制的生长,是管理天然和人工水系统时面临的一个环境、公共卫生、经济和技术问题。合成仿生聚合物几乎一直被视为治疗人类细菌感染的传统抗生素的抗菌替代品。关于它们在水生环境中的适用性,人们了解甚少。在此,我们引入合成仿生聚甲基丙烯酸酯(SBP),将其作为一个具有成本效益且化学方法简便、灵活的平台,用于设计一种新型制剂,以控制和减轻光合微生物的生长。由于SBP在异养细菌中呈阳离子性且具有膜溶解性,我们推测它们也可能与带负电荷的蓝细菌或藻类细胞壁及细胞膜相互作用。我们证明,SBP能抑制相关水生光合生物的生长,即蓝细菌( 和 )以及绿藻( 和 ),其50%有效生长抑制浓度在95 nM至6.5 μM之间。此外,SBP对 表现出杀藻作用,对微小蓝细菌 表现出杀蓝细菌作用,对产微囊藻毒素的蓝细菌 也表现出杀蓝细菌作用。SBP共聚物,尤其是那些具有适度疏水含量的共聚物,比均聚物诱导出更强的抑蓝细菌和杀蓝细菌作用。因此,仿生聚合物是设计用于水处理的抗蓝细菌和抗藻剂的一个有前景的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f42/8036423/a8aa3e18e9fc/polymers-13-01025-g001.jpg

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