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Micronized Copper Wood Preservatives: Efficacy of Ion Nano and Bulk Copper against the Brown Rot Fungus Rhodonia placenta

机译:微粉化铜木防腐剂:离子铜纳米铜和散装铜对褐腐真菌红景天胎盘的功效

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摘要

Recently introduced micronized copper (MC) formulations, consisting of a nanosized fraction of basic copper (Cu) carbonate (CuCO3·Cu(OH)2) nanoparticles (NPs), were introduced to the market for wood protection. Cu NPs may presumably be more effective against wood-destroying fungi than bulk or ionic Cu compounds. In particular, Cu- tolerant wood-destroying fungi may not recognize NPs, which may penetrate into fungal cell walls and membranes and exert their impact. The objective of this study was to assess if MC wood preservative formulations have a superior efficacy against Cu-tolerant wood-destroying fungi due to nano effects than conventional Cu biocides. After screening a range of wood-destroying fungi for their resistance to Cu, we investigated fungal growth of the Cu-tolerant fungus Rhodonia placenta in solid and liquid media and on wood treated with MC azole (MCA). In liquid cultures we evaluated the fungal response to ion, nano and bulk Cu distinguishing the ionic and particle effects by means of the Cu2+ chelator ammonium tetrathiomolybdate (TTM) and measuring fungal biomass, oxalic acid production and laccase activity of R. placenta. Our results do not support the presence of particular nano effects of MCA against R. placenta that would account for an increased antifungal efficacy, but provide evidence that attribute the main effectiveness of MCA to azoles.
机译:最近推出的由纳米级碳酸铜(Cu)3(CuCO3·Cu(OH)2)纳米颗粒(NPs)组成的纳米级微粉化铜(MC)配方已投放市场,用于木材保护。 Cu NP可能比散装或离子型Cu化合物更有效地抗木材破坏真菌。特别是,耐铜破坏木材的真菌可能无法识别NP,而NP可能会渗入真菌细胞壁和膜并产生影响。这项研究的目的是评估由于纳米效应,MC木材防腐制剂是否具有比常规Cu杀菌剂更强的抗铜耐受性的木材毁灭性真菌功效。在筛选了一系列破坏木材的真菌对Cu的抗性之后,我们研究了耐铜真菌Rhodonia胎盘在固体和液体介质中以及在经过MC唑(MCA)处理的木材上的真菌生长。在液体培养中,我们通过Cu 2 + 螯合剂四硫代钼酸铵(TTM)评估了真菌对离子,纳米Cu和块状Cu的真菌反应,从而区分了离子和颗粒效应,并测量了真菌的生物量,草酸的产生和胎盘漆酶的漆酶活性。我们的结果不支持MCA对胎盘衣原体的特殊纳米效应的存在,而这种效应会导致抗真菌功效增强,但提供了将MCA主要功效归因于吡咯类药物的证据。

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