University of Zagreb, Faculty of Agriculture, Department of Chemistry, Croatia.
University of Zagreb, Faculty of Agriculture, Department of Microbiology, Croatia.
Colloids Surf B Biointerfaces. 2021 Jan;197:111387. doi: 10.1016/j.colsurfb.2020.111387. Epub 2020 Oct 7.
Alginate microspheres loaded with two fermentation active agents, calcium cations and strain LS0296 identified as Lactobacillus sakei, have been prepared and characterized. The role of calcium cation is twofold, it acts as gelling cation and as fermentation active agent. Encapsulation and the presence of calcium ions in the same compartment do not inhibit the activity of LS0296. Molecular interactions in microspheres are complex, including mainly hydrogen bonds and electrostatic interactions. In vitro calcium cations and strain LS0296 release profiles were fitted to the Korsmeyer-Peppas empirical model. The calcium cation release process is driven at first by Fickian diffusion through microspheres and then by anomalous transport kinetics. The in vitro LS0296 release process is driven by Fickian diffusion through microspheres showing a much slower releasing rate than calcium cations. The release of LS0296 strain is followed by a decrease in the pH value. Results obtained give us a new insight into complex interactions between bacterial cultures and microsphere constituents. Prepared formulations of calcium alginate microspheres loaded with LS0296 could be used as a new promising tool and a model for different starter cultures encapsulation and use in the production of fermented foods.
已制备并表征了负载两种发酵活性剂(钙离子和被鉴定为清酒乳杆菌的 LS0296 菌株)的海藻酸钙微球。钙离子具有双重作用,它既是凝胶阳离子,又是发酵活性剂。包封和钙离子在同一隔室中存在不会抑制 LS0296 的活性。微球中的分子相互作用很复杂,包括氢键和静电相互作用。微球中钙离子和 LS0296 的体外释放曲线符合 Korsmeyer-Peppas 经验模型。钙离子的释放过程最初是通过微球中的菲克扩散驱动的,然后是异常传输动力学。LS0296 通过微球中的菲克扩散驱动体外释放,释放速度比钙离子慢得多。LS0296 菌株的释放伴随着 pH 值的降低。所得结果使我们对细菌培养物和微球成分之间的复杂相互作用有了新的认识。负载 LS0296 的钙藻酸钙微球制剂可作为一种新的有前途的工具和模型,用于不同发酵剂的包封和在发酵食品生产中的应用。