Andrew Monic, Jayaraman Gurunathan
Department of Biotechnology, School of Biosciences and Technology, Vellore Institute of Technology, Vellore, Tamil Nadu, India.
Prep Biochem Biotechnol. 2025 Jan;55(1):112-130. doi: 10.1080/10826068.2024.2370879. Epub 2024 Jul 4.
This study aimed to enhance the extracellular polymeric substances (EPS) production of VITP14 and explore its antioxidant potential. EPS and biomass production by VITP14 strain were studied under different culture parameters and media compositions using one factor at a time method. Among different nutrient sources, glucose and peptone were identified as suitable carbon and nitrogen sources. Furthermore, the maximum EPS production was observed at 5% of inoculum size, 5 g/L of NaCl, and 96 h of fermentation. Response surface methodology was employed to augment EPS production and investigate the optimal levels of nutrient sources with their interaction. The strain was observed to produce actual maximum EPS of about 26.4 g/L for finalized optimum medium containing glucose 20 g/L, peptone 10 g/L, and NaCl 50 g/L while the predicted maximum EPS was 26.5 g/L. There was a nine fold increase in EPS production after optimization study. Additionally, EPS has exhibited significant scavenging, reducing, and chelating potential (>85%) at their higher concentration. This study imparts valuable insights into optimizing moderately halophilic bacterial EPS production and evaluating its natural antioxidant properties. According to findings, VITP14 was a promising isolate that will provide significant benefits to biopolymer producing industries.
本研究旨在提高VITP14的胞外聚合物(EPS)产量,并探索其抗氧化潜力。采用一次一个因素的方法,研究了不同培养参数和培养基组成条件下VITP14菌株的EPS产量和生物量。在不同营养源中,葡萄糖和蛋白胨被确定为合适的碳源和氮源。此外,在接种量为5%、NaCl浓度为5 g/L、发酵96小时时观察到EPS产量最高。采用响应面法提高EPS产量,并研究营养源的最佳水平及其相互作用。对于最终优化培养基,即含有20 g/L葡萄糖、10 g/L蛋白胨和50 g/L NaCl的培养基,该菌株实际产生的最大EPS约为26.4 g/L,而预测的最大EPS为26.5 g/L。优化研究后,EPS产量提高了九倍。此外,EPS在较高浓度下表现出显著的清除、还原和螯合潜力(>85%)。本研究为优化中度嗜盐细菌EPS生产及其天然抗氧化性能评估提供了有价值的见解。根据研究结果,VITP14是一种有前景的分离株,将为生物聚合物生产行业带来显著益处。