Yehia Soad M, Shetaia Yousseria M, Daba Ghoson M, Mostafa Faten A, Ali Ali A, El-Menoufy Hassaan
Department of Microbiology, Faculty of Science, Ain Shams University, Cairo, Egypt.
Chemistry of Natural and Microbial products Department, National Research Centre, Cairo, Egypt.
Microb Cell Fact. 2025 Aug 11;24(1):181. doi: 10.1186/s12934-025-02804-y.
Producing bio-based chemicals using a straightforward and ecologically responsible biotechnological method is intriguing. Maltobionic acid (MBA) is an aldobionic acid obtained from maltose oxidation and is an industrially applied compound. Having antioxidative and antimicrobial, non-toxic, highly water soluble, moisturizing, metal chelating, mildly sour and slightly sweet characteristics.
This study succeeded in utilizing Aspergillus awamori as a novel MBA producer. MBA production was improved through two-step statistical factorial designs. Plackett-Burman Design (PBD) investigating the qualitative interaction between eleven factors (maltose, KNO, NaCl, KHPO, KHPO, MgSO, FeSO.7HO, initial pH, temperature, incubation time and rpm) on MBA production causing 1.37- fold increase. Central Composite design (CCD) analyzing the quantitative interaction between the most MBA production affecting factors (temperature, rpm, KHPO, and incubation period) gave a 1.64- improvement in MBA production compared with un-optimized medium. The addition of agro-industrial wastes (AIW) (corn cobs and artichoke leaves) to optimized medium g/l (maltose, 5; KNO, 1; KHPO, 1.0; MgSO, 0.5; FeSO.7(HO), 0.02; pH, 5.00 at 37.5 °C for 9.5 days at 125 rpm) caused 2.41- and 1.97- fold increase in MBA production, respectively in comparison with the initial production conditions. MBA produced by A. awamori MH2 exerted an anti-oxidant activity with a ratio of 86% using DPPH scavenging assay.
采用直接且生态友好的生物技术方法生产生物基化学品颇具吸引力。麦芽酮酸(MBA)是一种通过麦芽糖氧化得到的醛糖二酸,是一种已应用于工业的化合物。具有抗氧化、抗菌、无毒、高水溶性、保湿、金属螯合、微酸和微甜的特性。
本研究成功利用泡盛曲霉作为新型MBA生产者。通过两步统计因子设计提高了MBA产量。Plackett-Burman设计(PBD)研究了11个因素(麦芽糖、硝酸钾、氯化钠、磷酸二氢钾、磷酸氢二钾、硫酸镁、硫酸亚铁·7H₂O、初始pH值、温度、培养时间和转速)对MBA产量的定性相互作用,使产量提高了1.37倍。中心复合设计(CCD)分析了对MBA产量影响最大的因素(温度、转速、磷酸二氢钾和培养时间)之间的定量相互作用,与未优化的培养基相比,MBA产量提高了1.64倍。向优化培养基(每升含麦芽糖5克、硝酸钾1克、磷酸二氢钾1.0克、硫酸镁0.5克、硫酸亚铁·7H₂O 0.02克、pH值5.00,于37.5℃、125转/分钟培养9.5天)中添加农业工业废弃物(AIW)(玉米芯和洋蓟叶),与初始生产条件相比,MBA产量分别提高了2.41倍和1.97倍。泡盛曲霉MH2产生的MBA通过DPPH清除试验显示具有86%的抗氧化活性。