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超高甲氧基果胶的界面性质。

Interfacial properties of ultrahigh methoxylated pectin.

机构信息

State Key Laboratory of Food Science and Technology, Jiangnan University, 214122 Wuxi, China.

State Key Laboratory of Food Science and Technology, Jiangnan University, 214122 Wuxi, China.

出版信息

Int J Biol Macromol. 2020 Jun 1;152:403-410. doi: 10.1016/j.ijbiomac.2020.02.264. Epub 2020 Feb 24.

Abstract

The interfacial properties of ultrahigh methoxylated pectin (UHMP) prepared via esterification of citrus pectin (CP) were investigated. The intrinsic viscosity ([η]) of pectin was significantly decreased from 1211.5 mL/g to 294.9 mL/g as the degree of methylation (DM) increased from 63.18 ± 0.08% to 91.52 ± 0.11%. Surface tension (γ) analysis indicated that UHMP had a critical micelle concentration (CMC) of 0.8 g/L, which was slightly smaller than that of sugar beet pectin (SBP) (1.0 g/L). The morphology of the UHMP aggregation presented a network structure and irregular clusters at 10 μg/mL and 1 μg/mL based on atomic force microscopy (AFM). Transmission electron microscopy (TEM) observations further confirmed the self-aggregation behaviours and rod-like micelles of UHMP. The surface excess (Γ) was 1.69 ± 0.17 μmol/m for UHMP, which was lower than the values of SBP (1.88 ± 0.21 μmol/m) and CP (2.91 ± 0.57 μmol/m). Correspondingly, UHMP possessed the highest molecular area (A) of 0.99 ± 0.10 nm. Thus, UHMP was proposed to be more flexible and extendable at the interface. The interfacial shear rheology study suggested that UHMP was able to form an elastic-dominant interfacial film to stabilize the oil/water interface.

摘要

通过酯化柑橘果胶(CP)制备了超高甲氧基果胶(UHMP),研究了其界面性质。果胶的特性黏度([η])从 1211.5mL/g 显著降低至 294.9mL/g,而取代度(DM)从 63.18%±0.08%增加至 91.52%±0.11%。表面张力(γ)分析表明,UHMP 的临界胶束浓度(CMC)为 0.8g/L,略小于糖甜菜果胶(SBP)(1.0g/L)。原子力显微镜(AFM)下,10μg/mL 和 1μg/mL 时 UHMP 聚集物的形态呈网络结构和不规则聚集体。透射电子显微镜(TEM)观察进一步证实了 UHMP 的自聚集行为和棒状胶束。表面过剩(Γ)为 1.69±0.17μmol/m,低于 SBP(1.88±0.21μmol/m)和 CP(2.91±0.57μmol/m)的值。相应地,UHMP 具有最高的分子面积(A)为 0.99±0.10nm。因此,UHMP 在界面处具有更高的灵活性和伸展性。界面剪切流变学研究表明,UHMP 能够形成以弹性为主的界面膜来稳定油/水界面。

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