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首页> 外文期刊>Journal of Hazardous Materials >Anaerobic biodegradation of pharmaceutical compounds: New insights into the pharmaceutical-degrading bacteria
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Anaerobic biodegradation of pharmaceutical compounds: New insights into the pharmaceutical-degrading bacteria

机译:药物化合物的厌氧生物降解:降解药物细菌的新见解

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Antibiotics and hormones are among the most concerning trace contaminants in the environment. Therefore, the present work aimed to identify anaerobic microorganisms with the ability to remove pharmaceutical products (PhPs) belonging to these two classes (ciprofloxacin, 17β-estradiol and sulfamethoxazole) under different anaerobic conditions, and to elucidate the bio-removal mechanisms involved. Ciprofloxacin was efficiently biodegraded under both nitrate- and sulfate-reducing conditions reaching a PhP removal superior to 80%, whereas 17β-estradiol was only biodegraded under nitrate-reducing conditions reaching a removal of 84%. No biodegradation of sulfamethoxazole was observed. In nitrate-reducing conditions the ciprofloxacin-degrading community was composed ofComamonas,Arcobacter,Dysgonomonas,MacellibacteroidesandActinomyces,genera whileComamonasandCastellaniellawere the main bacteria present in the 17β-estradiol-degrading community. In sulfate-reducing conditions the community was mainly composed by bacteria affiliated toDesulfovibrio,EnterococcusandPeptostreeptococcus. Interestingly, the PhP under study were biodegraded even in the absence of additional carbon source, with 85% of ciprofloxacin removed under sulfate-reducing conditions and 62% and 83% of ciprofloxacin and estradiol removed, respectively, under nitrate-reducing conditions. This work provides new insights into anaerobic bioremediation of PhP and novel PhP-degrading bacteria.
机译:抗生素和激素是环境中最受关注的微量污染物之一。因此,本工作旨在鉴定在不同厌氧条件下具有去除属于这两类药物(环丙沙星,17β-雌二醇和磺胺甲恶唑)的药物(PhPs)的厌氧微生物,并阐明所涉及的生物去除机理。环丙沙星在硝酸盐和硫酸盐还原条件下均能有效生物降解,其PhP去除率优于80%,而17β-雌二醇仅在硝酸盐还原条件下生物降解率达到84%。没有观察到磺胺甲恶唑的生物降解。在减少硝酸盐的条件下,环丙沙星降解菌群由Comamonas,Arcobacter,Dysgonomonas,Macellibacteroides和放线菌,属组成,而Comamonas和Castellaniella是降解17β-雌二醇的主要细菌。在减少硫酸盐的条件下,群落主要由脱硫弧菌,肠球菌和肽链球菌属的细菌组成。有趣的是,即使在没有其他碳源的情况下,所研究的PhP也会被生物降解,在硫酸盐还原条件下环丙沙星的去除率为85%,在硝酸盐还原条件下环丙沙星和雌二醇的去除率分别为62%和83%。这项工作为PhP和新型PhP降解细菌的厌氧生物修复提供了新的见解。

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