Cottet Celeste, Ramirez-Tapias Yuly A, Delgado Juan F, de la Osa Orlando, Salvay Andrés G, Peltzer Mercedes A
Materials Development and Evaluation Laboratory (LOMCEM), Department of Science and Technology, National University of Quilmes, B1876BXD Bernal, Argentina.
Scientific Research Commission (CIC), B1900 La Plata, Buenos Aires, Argentina.
Materials (Basel). 2020 Mar 11;13(6):1263. doi: 10.3390/ma13061263.
There is a strong public concern about plastic waste, which promotes the development of new biobased materials. The benefit of using microbial biomass for new developments is that it is a completely renewable source of polymers, which is not limited to climate conditions or may cause deforestation, as biopolymers come from vegetal biomass. The present review is focused on the use of microbial biomass and its derivatives as sources of biopolymers to form new materials. Yeast and fungal biomass are low-cost and abundant sources of biopolymers with high promising properties for the development of biodegradable materials, while milk and water kefir grains, composed by kefiran and dextran, respectively, produce films with very good optical and mechanical properties. The reasons for considering microbial cellulose as an attractive biobased material are the conformational structure and enhanced properties compared to plant cellulose. Kombucha tea, a probiotic fermented sparkling beverage, produces a floating membrane that has been identified as bacterial cellulose as a side stream during this fermentation. The results shown in this review demonstrated the good performance of microbial biomass to form new materials, with enhanced functional properties for different applications.
公众对塑料垃圾高度关注,这推动了新型生物基材料的发展。利用微生物生物质进行新开发的好处在于,它是聚合物的完全可再生来源,不像植物生物质衍生的生物聚合物那样受气候条件限制或可能导致森林砍伐。本综述聚焦于将微生物生物质及其衍生物用作生物聚合物来源以形成新材料。酵母和真菌生物质是低成本且丰富的生物聚合物来源,对于开发可生物降解材料具有很高的潜在特性,而分别由开菲尔多糖和葡聚糖组成的牛奶开菲尔粒和水开菲尔粒能生产出具有非常好的光学和机械性能的薄膜。将微生物纤维素视为有吸引力的生物基材料的原因在于其构象结构以及与植物纤维素相比增强的性能。康普茶是一种益生菌发酵的气泡饮料,在这种发酵过程中会产生一种漂浮膜,已被鉴定为作为副产物的细菌纤维素。本综述中展示的结果表明微生物生物质在形成新材料方面表现良好,具有针对不同应用增强的功能特性。