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临床重要细菌在沉积物和海水中对亚微米级生物塑料的降解:对细菌反应的影响。

Degradation of subµ-sized bioplastics by clinically important bacteria under sediment and seawater conditions: Impact on the bacteria responses.

机构信息

Application and Research Center for Advanced Studies, T.C. Istanbul Aydin University, Istanbul, Turkey.

Health Services Vocational School of Higher Education, T.C. Istanbul Aydin University, Istanbul, Turkey.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2021;56(1):9-20. doi: 10.1080/10934529.2020.1833591. Epub 2020 Oct 14.

Abstract

In this study, we investigated the interaction of submicron-sized bioplastics with environmentally and clinically important bacteria under seawater and sediment conditions. To examine the relationship between submicron-sized bioplastics and bacteria in seawater and sediment, we focused on the bacterial activation and their biochemical key events toward the protein, carbohydrate, lipid, and antioxidant response. In addition, culture-dependent biofilm formation on submicron-sized bioplastics and their characterization was performed. The results indicated that selected bacteria increased their viability both in seawater and sediment with the submicron-sized bioplastics in that the bioplastics decreased their mass at the level of 10-23%. However, the activation level and mechanism affected the polymer type, bacteria, and environmental media, and submicron-sized bioplastics promoted biofilm formation with enhancing basophilic characteristics of biofilms.

摘要

在这项研究中,我们研究了亚微米大小的生物塑料在海水和沉积物条件下与环境和临床重要细菌的相互作用。为了研究亚微米大小的生物塑料与海水中和沉积物中的细菌之间的关系,我们专注于细菌的激活及其生化关键事件,包括蛋白质、碳水化合物、脂质和抗氧化剂的反应。此外,还对亚微米大小的生物塑料上的依赖于培养的生物膜形成及其特性进行了研究。结果表明,所选细菌在亚微米大小的生物塑料存在的情况下,无论是在海水中还是在沉积物中,其存活率都有所提高,因为生物塑料将其质量降低了 10-23%。然而,激活水平和机制会影响聚合物类型、细菌和环境介质,亚微米大小的生物塑料促进了生物膜的形成,并增强了生物膜的嗜碱性特征。

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