Dept. of Biological, Chemical and Pharmaceutical Sciences and Technologies (STEBICEF), University of Palermo, Viale delle Scienze, blg. 16, 90128, Palermo, Italy.
Dept. of Engineering, University of Palermo, Viale delle Scienze, blg. 6, 90128, Palermo, Italy.
N Biotechnol. 2020 Sep 25;58:25-31. doi: 10.1016/j.nbt.2020.04.001. Epub 2020 May 31.
Immobilization of microorganisms capable of degrading specific contaminants significantly promotes bioremediation processes. In this study, innovative and ecofriendly biosorbent-biodegrading biofilms have been developed in order to remediate oil-contaminated water. This was achieved by immobilizing hydrocarbon-degrading gammaproteobacteria and actinobacteria on biodegradable oil-adsorbing carriers, based on polylactic acid and polycaprolactone electrospun membranes. High capacities for adhesion and proliferation of bacterial cells were observed by scanning electron microscopy. The bioremediation efficiency of the systems, tested on crude oil and quantified by gas chromatography, showed that immobilization increased hydrocarbon biodegradation by up to 23 % compared with free living bacteria. The resulting biosorbent biodegrading biofilms simultaneously adsorbed 100 % of spilled oil and biodegraded more than 66 % over 10 days, with limited environmental dispersion of cells. Biofilm-mediated bioremediation, using eco-friendly supports, is a low-cost, low-impact, versatile tool for bioremediation of aquatic systems.
固定能够降解特定污染物的微生物可显著促进生物修复过程。在这项研究中,开发了创新且环保的生物吸附-降解生物膜,以修复受油污染的水。这是通过将烃降解γ变形菌和放线菌固定在可生物降解的油吸附载体上,基于聚乳酸和聚己内酯电纺膜来实现的。通过扫描电子显微镜观察到细菌细胞的高粘附和增殖能力。通过气相色谱法对系统进行的生物修复效率测试表明,与游离生活细菌相比,固定化可使烃类生物降解率提高高达 23%。由此产生的生物吸附-降解生物膜同时吸附了 100%的溢油,并在 10 天内生物降解了超过 66%,细胞在环境中的扩散有限。使用环保型载体的生物膜介导的生物修复是一种低成本、低影响、多功能的水生系统生物修复工具。