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

机译:合成仿生聚甲基丙烯酸酯:抗蓝抗性和抗藻类药物设计的有希望平台

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摘要

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 (Microcystis aeruginosa and Synechococcus elongatus) and green algae (Chlamydomonas reinhardtii and Desmodesmus quadricauda), with 50% effective growth-inhibiting concentrations ranging between 95 nM and 6.5 μM. Additionally, SBPs exhibited algicidal effects on C. reinhardtii and cyanocidal effects on picocyanobacterium S. elongatus and microcystin-producing cyanobacterium M. aeruginosa. 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.
机译:广泛,不受控制的藻类和蓝藻的生长是管理自然和工程水系统的环境,公共卫生,经济和技术问题。合成仿生聚合物几乎专门被认为是常规抗生素的抗菌替代物,以治疗人体细菌感染。很少有关于它们在水生环境中的适用性。在此,我们将合成的仿生聚甲基丙烯酸酯(SBP)作为一种成本效益和化学容易的,柔性平台,用于设计适合于控制和减轻光合微生物的新型剂。由于Sbps在异养细菌中是阳离子和膜,因此我们假设它们也可以与带负电带的蓝藻或藻类细胞壁和膜相互作用。我们证明SBPS抑制了令人担忧的患者水生光合生物的生长,即蓝藻(微阴压铜绿假单胞菌和SneCeChocccus Elongatus)和绿藻(Chlamydomonas Reinhardtii和Desmodesmus Quadricrica),其有效的生长抑制浓度为95nm和6.5μm之间的50% 。此外,SBPS对C. Reinhardtii和氰基肽对野兔菌和微胱氨酸产生的紫红色和微肾上腺素产生的蓝藻M.铜绿假单胞菌的抗藻植物作用。 SBP共聚物,特别是那些具有中等疏水含量的那些,诱导比均聚物更有效的囊囊肿和氰基蛋白效果。因此,仿生聚合物是用于抗蓝化细菌和抗藻类药物进行水处理的有前途的平台。

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