混合卡拉胶溶液中多糖的流变性能及相互作用

Q4 Engineering Journal of Biorheology Pub Date : 2016-01-01 DOI:10.17106/JBR.30.13
L. Du, Yang Lu, Lester C. Geonzon, Jingli Xie, S. Matsukawa
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引用次数: 6

摘要

通过比较卡拉胶混合物的流变性能,阐明了iota- carragean (IC)和kappa- carragean (KC)相分离的可能性。在扫温实验中,λ -卡拉胶(LC)链通过阻碍IC-LC和KC-LC的聚集,分别在IC-LC和KC-LC的混合溶液中略微降低了IC和KC的聚集温度(Tagg)。另一方面,由于葡聚糖与IC链的强相互作用,使得IC的Tagg显著降低,而葡聚糖使KC的Tagg升高,IC-KC溶液在几乎相同的温度下与IC和KC单组分溶液中Tagg呈两步升高,说明IC和KC链在混合物中独立聚集,表明IC-KC溶液中存在相分离现象。在G′的时间过程中,IC-LC溶液通过IC链的局部聚集和IC链通过阻碍LC链的聚集而增加G′。在IC-葡聚糖混合溶液中,由于IC与葡聚糖的强相互作用,G′的增加受到抑制。IC-KC溶液中G′的时间过程呈两步增长,表明IC链的聚集诱导了KC链的聚集。
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Rheological properties and interactions between polysaccharides in mixed carrageenan solutions
The possibility of phase separation in the mixture of iota-carrageenan (IC) and kappa-carrageenan (KC) was elucidated by comparing rheological properties for carrageenan mixtures. In temperature sweeping experiments, lambda-carrageenan (LC) chain slightly lowered the aggregation temperature (Tagg) of IC and KC in the mixture solutions of IC-LC and KC-LC, respectively, by obstructing the aggregation. On the other hand, dextran chain largely lowered the Tagg of IC because of the strong interaction with IC chain, whereas dextran increased Tagg of KC. The IC-KC solutions showed two-step increases at the almost same temperatures with Taggs in single component solutions of IC and KC. This exhibits independent aggregations of IC and KC chains in the mixture and suggesting the phase separation in the IC-KC solution. In the time courses of G', the IC-LC solution showed increases of G' by local aggregation of IC chain and by growing of aggregation of IC chain through the obstructive LC chains. The IC-dextran mixture solution showed a depressed increase of G' caused by a strong interaction between IC and dextran. The time courses of G' for the IC-KC solution showed two-step increases suggesting the induced aggregation of KC chains by the aggregation of IC chains.
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来源期刊
Journal of Biorheology
Journal of Biorheology Engineering-Mechanical Engineering
CiteScore
0.50
自引率
0.00%
发文量
5
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