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富含岩藻糖的多糖岩藻聚糖的去乙酰化和去琥珀酰化:对生物聚合物物理和化学性质的影响。

Deacetylation and Desuccinylation of the Fucose-Rich Polysaccharide Fucopol: Impact on Biopolymer Physical and Chemical Properties.

作者信息

Baptista Sílvia, Araújo Diana, Concórdio-Reis Patrícia, Marques Ana C, Fortunato Elvira, Alves Vítor D, Freitas Filomena

机构信息

Associate Laboratory i4HB-Institute for Health and Bioeconomy, School of Science and Technology, NOVA University Lisbon, 2829-516 Almada, Portugal.

UCIBIO-Applied Molecular Biosciences Unit, Department of Chemistry, School of Science and Technology, NOVA University Lisbon, 2829-516 Almada, Portugal.

出版信息

Molecules. 2022 Oct 23;27(21):7165. doi: 10.3390/molecules27217165.

Abstract

FucoPol is an acylated polysaccharide with demonstrated valuable functional properties that include a shear thinning fluid behaviour, a film-forming capacity, and an emulsion forming and stabilizing capacity. In this study, the different conditions (concentration, temperature, and time) for alkaline treatment were investigated to deacylate FucoPol. Complete deacetylation and desuccinylation was achieved with 0.02 M NaOH, at 60 °C for 15 min, with no significant impact on the biopolymer's sugar composition, pyruvate content, and molecular mass distribution. FucoPol depyruvylation by acid hydrolysis was attempted, but it resulted in a very low polymer recovery. The effect of the ionic strength, pH, and temperature on the deacetylated/desuccinylated polysaccharide, d-FucoPol, was evaluated, as well as its emulsion and film-forming capacity. d-FucoPol aqueous solutions maintained the shear thinning behaviour characteristic of FucoPol, but the apparent viscosity decreased significantly. Moreover, contrary to FucoPol, whose solutions were not affected by the media's ionic strength, the d-FucoPol solutions had a significantly higher apparent viscosity for a higher ionic strength. On the other hand, the d-FucoPol solutions were not affected by the pH in the range of 3.6-11.5, while FucoPol had a decreased viscosity for acidic pH values and for a pH above 10.5. Although d-FucoPol displayed an emulsification activity for olive oil similar to that of FucoPol (98 ± 0%) for an oil-to-water ratio of 2:3, the emulsions were less viscous. The d-FucoPol films were flexible, with a higher Young's modulus (798 ± 152 MPa), a stress at the break (22.5 ± 2.5 MPa), and an elongation at the break (9.3 ± 0.7%) than FucoPol (458 ± 32 MPa, 15.5 ± 0.3 MPa and 8.1 ± 1.0%, respectively). Given these findings, d-FucoPol arises as a promising novel biopolymer, with distinctive properties that may render it useful for utilization as a suspending or emulsifier agent, and as a barrier in coatings and packaging films.

摘要

岩藻多糖是一种酰化多糖,具有多种有价值的功能特性,包括剪切变稀流体行为、成膜能力以及形成和稳定乳液的能力。在本研究中,研究了碱性处理的不同条件(浓度、温度和时间)对岩藻多糖进行脱酰基反应。使用0.02 M氢氧化钠在60°C下处理15分钟可实现完全脱乙酰化和脱琥珀酰化,且对生物聚合物的糖组成、丙酮酸含量和分子量分布没有显著影响。尝试通过酸水解对岩藻多糖进行脱丙酮酸反应,但聚合物回收率非常低。评估了离子强度、pH值和温度对脱乙酰化/脱琥珀酰化多糖d - 岩藻多糖的影响,以及其乳液和成膜能力。d - 岩藻多糖水溶液保持了岩藻多糖特有的剪切变稀行为,但表观粘度显著降低。此外,与岩藻多糖不同,其溶液不受介质离子强度的影响,而d - 岩藻多糖溶液在较高离子强度下具有显著更高的表观粘度。另一方面,d - 岩藻多糖溶液在3.6 - 11.5的pH范围内不受影响,而岩藻多糖在酸性pH值和pH高于10.5时粘度降低。尽管对于油与水比例为2:3的情况,d - 岩藻多糖对橄榄油的乳化活性与岩藻多糖相似(98±0%),但其乳液的粘性较小。d - 岩藻多糖薄膜具有柔韧性,其杨氏模量(798±152 MPa)、断裂应力(22.5±2.5 MPa)和断裂伸长率(9.3±0.7%)均高于岩藻多糖(分别为458±32 MPa、15.5±0.3 MPa和8.1±1.0%)。基于这些发现,d - 岩藻多糖是一种有前景的新型生物聚合物,具有独特的特性,这可能使其作为悬浮剂或乳化剂以及涂层和包装薄膜中的阻隔材料具有实用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89ef/9657331/6791ab21ce0a/molecules-27-07165-g001.jpg

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