Department of Microbiology and Biotechnology, Faculty of Biotechnology and Animal Husbandry, West Pomeranian University of Technology, Szczecin, 45 Piastów Avenue, 70-311 Szczecin, Poland.
Faculty of Chemistry, Adam Mickiewicz University, 89b Umultowska Str., 61-614 Poznań Poland.
Int J Biol Macromol. 2022 May 31;208:642-653. doi: 10.1016/j.ijbiomac.2022.03.124. Epub 2022 Mar 22.
The versatility and unique properties of bacterial cellulose (BC) motivate research into enhancing its synthesis. Here a silicone polyether surfactant (SPS) was synthesized and tested as a non-nutritional additive to the cultivation media of Komagataeibacter xylinus. The addition of SPS to the Hestrin-Schramm (HS) medium resulted in a concentration-dependent decrease in surface tension from 59.57 ± 0.37 mN/m to 30.05 ± 0.41 mN/m (for 0.1% addition) that was correlated with an increased yield of BC, up to 37% wet mass for surfactant concentration close to its critical micelle concentration (0.008%). Physicochemical characterization of bacterial cellulose obtained in presence of SPS, showed that surfactant is not incorporated into BC structure and has a moderate effect on its crystallinity, thermal stability. Moreover, the water holding capacity was enhanced by over 40%. Importantly, obtained BC did not affect L929 murine fibroblast cell viability. We conclude that SPS provides an eco-friendly approach to increasing BC yield in static culture, enabling more widespread industrial and biomedical applications.
细菌纤维素(BC)的多功能性和独特性质促使人们研究如何增强其合成。在这里,我们合成了一种硅氧烷聚醚表面活性剂(SPS),并将其作为非营养添加剂测试,用于木醋杆菌的培养介质。在 Hestrin-Schramm(HS)培养基中添加 SPS 会导致表面张力从 59.57±0.37 mN/m 到 30.05±0.41 mN/m(添加 0.1%)的浓度依赖性降低,这与 BC 的产量增加相关,当表面活性剂浓度接近其临界胶束浓度(0.008%)时,BC 的湿重产量最高可达 37%。在存在 SPS 的情况下获得的细菌纤维素的物理化学特性表明,表面活性剂不会掺入 BC 结构中,并且对其结晶度和热稳定性有适度影响。此外,其持水能力提高了 40%以上。重要的是,所获得的 BC 不会影响 L929 鼠成纤维细胞的活力。我们得出结论,SPS 为在静态培养中提高 BC 产量提供了一种环保的方法,从而使更多的工业和生物医学应用成为可能。