Faculty of Science, Botany and Microbiology Department, Alexandria University, Egypt.
Institute of Graduate Studies and Research, Department of Biotechnology, Alexandria University, Egypt.
J Basic Microbiol. 2018 Feb;58(2):120-130. doi: 10.1002/jobm.201700497. Epub 2017 Nov 15.
The present study underlines a unique promising approach toward efficient biotransformation of ceftriaxone sodium (Ceftx), a highly frequent prescribed cephalosporin antibiotic, by a newly bacterium namely Achromobacter xylosoxidans strain Cef6 isolated from Ceftx contaminated raw materials in pharmaceutical industries. A three step sequential statistical-mathematical approach (Plackett-Burman design [PBD], Central Composite Design [CCD], and ridge-canonical analyses) was anticipated to optimize the biotransformation process. Ceftx concentration and medium volume: bottle volume ratio, two key determinants, significantly (p < 0.05) affected the process outcome deduced by regression analysis of PBD' data. CCD and ridge-canonical analyses localized the optimal levels of Ceftx concentration and medium volume: 250 ml bottle volume ratio to be 0.39 and 7.973 g Ceftx/L modified tryptic soy broth achieving Ceftx biotransformation (100%) after 39 h under aerobic static conditions at 30 °C, irrespectively deduced via HPLC analysis. Impressively, only one of five Ceftx byproducts was detected by the end of the biotransformation process. To the best of authors' knowledge, this is the first report addressing a detailed study regarding efficient biotransformation of Ceftx by single bacterium not bacterial consortium under aerobic conditions. Present data would greatly encourage applying this approach for decontamination of some Ceftx contaminated environmental sites.
本研究强调了一种独特的有前途的方法,即用一种新的细菌即从制药工业中头孢曲松钠(Ceftx)污染原料中分离出的木糖氧化不动杆菌菌株 Cef6,对头孢曲松钠(Ceftx)进行高效生物转化。该方法采用三步序贯统计数学方法(Plackett-Burman 设计[PBD]、中心复合设计[CCD]和脊形正则分析)来优化生物转化过程。头孢曲松钠浓度和培养基体积:瓶体积比是两个关键决定因素,通过 PBD'数据的回归分析得出,它们显著(p<0.05)影响了过程结果。CCD 和脊形正则分析确定了头孢曲松钠浓度和培养基体积:瓶体积比的最佳水平为 0.39 和 7.973 g Ceftx/L 改良胰蛋白酶大豆肉汤,在 30°C 下有氧静态条件下反应 39 小时后,头孢曲松钠的转化率(100%),这是通过 HPLC 分析推断出来的。令人印象深刻的是,到生物转化结束时,只检测到五种头孢曲松钠副产物中的一种。据作者所知,这是首次报道在有氧条件下,单一细菌而不是细菌混合物对头孢曲松钠进行高效生物转化的详细研究。目前的数据将极大地鼓励应用这种方法来净化一些头孢曲松钠污染的环境场所。