Institute of Technical Biocatalysis, Hamburg University of Technology, Denickestraße 15, 21073 Hamburg, Germany.
Molecules. 2023 Sep 23;28(19):6781. doi: 10.3390/molecules28196781.
Ulvan is a sulfated polysaccharide extracted from green macroalgae with unique structural and compositional properties. Due to its biocompatibility, biodegradability, and film-forming properties, as well as high stability, ulvan has shown promising potential as an ingredient of biopolymer films such as sustainable and readily biodegradable biomaterials that could replace petroleum-based plastics in diverse applications such as packaging. This work investigates the potential of as a source of ulvan. Enzyme-assisted extraction with commercial cellulases (Viscozyme L and Cellulysin) and proteases (Neutrase 0.8L and Flavourzyme) was used for cell wall disruption, and the effect of the extraction time (3, 6, 17, and 20 h) on the ulvan yield and its main characteristics (molecular weight, functional groups, purity, and antioxidant capacity) were investigated. Furthermore, a combined process based on enzymatic and ultrasound extraction was performed. Results showed that higher extraction times led to higher ulvan yields, reaching a maximum of 14.1% dw with Cellulysin after 20 h. The combination of enzymatic and ultrasound-assisted extraction resulted in the highest ulvan extraction (17.9% dw). The relatively high protein content in (19.8% dw) makes the residual biomass, after ulvan extraction, a potential protein source in food and feed applications.
岩藻聚糖是从绿藻中提取的一种硫酸化多糖,具有独特的结构和组成特性。由于其生物相容性、可生物降解性和成膜性能,以及高稳定性,岩藻聚糖已显示出作为生物聚合物薄膜成分的巨大潜力,例如可持续且易于生物降解的生物材料,可替代不同应用领域中的石油基塑料,如包装。本研究探讨了 作为岩藻聚糖来源的潜力。使用商业纤维素酶(Viscozyme L 和 Cellulysin)和蛋白酶(Neutrase 0.8L 和 Flavourzyme)辅助酶解进行细胞壁破坏,并研究了提取时间(3、6、17 和 20 h)对岩藻聚糖产率及其主要特性(分子量、官能团、纯度和抗氧化能力)的影响。此外,还进行了基于酶解和超声提取的联合工艺。结果表明,较长的提取时间会导致更高的岩藻聚糖产率,使用 Cellulysin 提取 20 h 后可达到最高 14.1%(dw)。酶解和超声辅助提取的联合使用可实现最高的岩藻聚糖提取率(17.9%(dw))。 中相对较高的蛋白质含量(19.8%(dw))使岩藻聚糖提取后的残余生物质成为食品和饲料应用中的潜在蛋白质来源。