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In Vitro Biodegradation of Gliclazide by Aeromonas hydrophila and Serratia odorifera Bacteria

机译:Aeroomonas疏水层和Serratia Odorifera细菌的含有Gliclazide的体外生物降解

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Gliclazide is a pharmaceutical product used in the treatment of type 2 diabetes. However, this drug is considered to be highly undesirable when present in the environment. We tested in vitro the biodegradation of gliclazide as the sole source of carbon and energy by a microbial consortium. After a 5-month adaptation period in batch culture, two bacterial strains were isolated and identified, namely, Aeromonas hydrophila and Serratia odorifera. With an initial concentration of gliclazide at 0.5 g/L, these two bacteria and their combined culture degraded gliclazide with a specific activity of 22.3, 24.1, and 19.2 ng/(mg center dot h) and a yield of 88.88%, 82.94%, and 95.88%, respectively. Experimental results reveal a removal efficiency of 98.904% at an inlet concentration of 5 g/L and a flow rate of 14 L/h. The maximum removal efficiency of the biotrickling filter was 99.6%, at a gliclazide inlet concentration of 0.5, 1, and 5 g/L and a flow rate of 6.3 L/h. Interestingly, it was observed that after a period of 12 months, the two dominant strains differed from those present in the initial inocula. Thus, the high elimination efficiencies obtained in this study reveal the interest of the use, for the first time, of a biotrickling filter for the study of the biodegradation of gliclazide. Obtaining a microbial consortium strongly adapted to this substrate may prove to be an interesting alternative for a possible application in the treatment, before discharge, of wastewater containing this molecule or other related molecules, especially in the pharmaceutical industry.
机译:Gliclazide是用于治疗2型糖尿病的药物产品。然而,当存在于环境中时,该药物被认为是高度不受欢迎的。我们在体外测试了Gliclazide作为微生物联盟作为碳和能量唯一的生物降解。在分批培养的5个月适应期后,将分离出两种细菌菌株,即Aeromonas疏水菌和血清术。具有0.5g / L的初始浓度,这两个细菌及其组合培养物降解了Gliclazide,特异性活性为22.3,24.1和19.2ng /(mg中心点H),产率为88.88%,82.94%,分别为95.88%。实验结果显示,在5g / L的入口浓度下的去除效率为98.904%,流速为14L / h。生物折磨过滤器的最大去除效率为99.6%,在0.5,1和5g / L的Gliclazide入口浓度下,流速为6.3L / h。有趣的是,观察到在12个月后,两种主要菌株与初始接种物中存在的菌株不同。因此,本研究中获得的高消除效率揭示了生物粘合过滤器的使用,以便研究Gliclazide的生物降解。获得强烈适应于该衬底的微生物联盟可以证明是在含有该分子或其他相关分子的废水的处理中可能施用的有趣替代方案,特别是在药业中。

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