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麦穗鱼对 5 种抗生素及其混合物在 48 小时急性暴露下的生理反应。

Physiological response of Simocephalus vetulus to five antibiotics and their mixture under 48-h acute exposure.

机构信息

Graduate school of Engineering, Nagasaki University, 1-14 Bunkyo-machi, Nagasaki-shi, Japan.

Graduate school of Engineering, Nagasaki University, 1-14 Bunkyo-machi, Nagasaki-shi, Japan.

出版信息

Sci Total Environ. 2022 Jul 10;829:154585. doi: 10.1016/j.scitotenv.2022.154585. Epub 2022 Mar 16.

Abstract

Antibiotics, widely known as major environmental xenobiotics, are increasingly being released into ecosystems due to their essential functions in human health and production. During the COVID-19 pandemic waves, antibiotic use increases remarkably in treating bacterial coinfections. Antibiotics were initially expected only to affect prokaryotes, but recent research has shown that they can disturb the biological systems of eukaryotes, especially vulnerable aquatic creatures, through both direct and indirect processes. However, their toxicity to the freshwater cladoceran Simocephalus vetulus, an essential link in the aquatic food web, has never been evaluated. The effects of four fluoroquinolones (ciprofloxacin: CFX, ofloxacin: OFX, gatifloxacin: GFX, delafloxacin: DFX), tetracycline (TET), and a mixture of these medicines (MIX) on S. vetulus thoracic limb rate (TLR) were examined in this study. After S. vetulus was exposed to 20 and 40 mg GFX L, 90% and 100% mortality rates were recorded. At 2.5-10 mg L, GFX dramatically lowered the TLR of S. vetulus, resulting in a median effective concentration of 9.69 mg L. TLRs increased when the organisms were exposed to 10-40 mg L of CFX and 1.25-40 mg L of OFX. However, DFX and TET exposures did not affect TLRs. Exposure to MIX reduced TLR only at 40 mg L, suggesting an antagonistic interaction among the five pharmaceuticals. This study demonstrated that S. vetulus physiological responses to antibiotics, even in the same class, are complex and elusive. Beyond a common additive concentration principle, the antagonistic interaction of antibiotic mixture indicates a high level of uncertainty in terms of ecological dangers. We initially introduce S. vetulus to ecotoxicological studies of antibiotics, presenting the species as a low-cost model for physiological investigations of environmental xenobiotics.

摘要

抗生素作为主要的环境外源化合物,由于在人类健康和生产中的重要作用,越来越多地被释放到生态系统中。在 COVID-19 疫情期间,抗生素在治疗细菌合并感染方面的使用显著增加。抗生素最初预计只会影响原核生物,但最近的研究表明,它们可以通过直接和间接的过程干扰真核生物的生物系统,特别是脆弱的水生生物。然而,它们对淡水溞属(Simocephalus vetulus)的毒性,即水生食物网中的一个重要环节,从未被评估过。本研究检测了四种氟喹诺酮类药物(环丙沙星:CFX、氧氟沙星:OFX、加替沙星:GFX、德拉沙星:DFX)、四环素(TET)和这些药物的混合物(MIX)对 S. vetulus 胸肢率(TLR)的影响。在 S. vetulus 暴露于 20 和 40 mg GFX L 后,记录到 90%和 100%的死亡率。在 2.5-10 mg L 时,GFX 显著降低了 S. vetulus 的 TLR,导致 9.69 mg L 的中效浓度。当生物体暴露于 10-40 mg L 的 CFX 和 1.25-40 mg L 的 OFX 时,TLR 增加。然而,DFX 和 TET 的暴露并不影响 TLR。暴露于 MIX 仅在 40 mg L 时降低 TLR,表明五种药物之间存在拮抗相互作用。本研究表明,即使在同一类别中,抗生素对 S. vetulus 的生理反应也是复杂和难以捉摸的。除了常见的加性浓度原则外,抗生素混合物的拮抗相互作用表明其对生态危害具有高度不确定性。我们首次将 S. vetulus 引入抗生素的生态毒理学研究,该物种作为一种低成本的模型,用于研究环境外源化合物的生理反应。

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