Federal University of Lavras, Department of Food Science, Laboratory of Food Refrigeration, P.O. Box 3037, 37200-000 Lavras, Minas Gerais, Brazil.
Federal University of Lavras, Department of Food Science, Laboratory of Food Refrigeration, P.O. Box 3037, 37200-000 Lavras, Minas Gerais, Brazil.
Int J Biol Macromol. 2019 Jun 15;131:218-229. doi: 10.1016/j.ijbiomac.2019.03.063. Epub 2019 Mar 11.
The rheological behavior, thermogravimetric analysis (TGA), and atomic force microscopy (AFM) of the Pereskia aculeata Miller (OPN) mucilage treated with sodium chloride (NaCl), calcium chloride (CaCl), and sucrose were evaluated. The experimental design was divided in a fractional factorial 2 for the screening of factors (OPN, sucrose, NaCl, CaCl, and pH) and then in a 5 × 3 × 3 full factorial (OPN, sucrose, and NaCl). The model solutions used for the screening of factors presented shear-thinning behavior and the OPN mucilage concentrations were the factors that had significant effect on the apparent viscosity. Sucrose addition increased the thermal stability of the OPN mucilage solutions. OPN mucilage, sucrose, and NaCl were the variables with significant effect on thermogravimetric responses. The samples presented Newtonian behavior in 0-1.25% OPN mucilage concentrations and non-Newtonian behavior adjusted by power-law in 2.50-5.00% OPN mucilage concentrations with predominance of elastic behavior, contributing to the formation of stronger gels. The presence of sucrose in the systems containing OPN mucilage changed their rheological properties and salt additions caused reduction in viscosity. The AFM results provided a better understanding of the mechanism of OPN mucilage interactions in different solutions that justify the changes in viscosities.
用氯化钠(NaCl)、氯化钙(CaCl)和蔗糖处理的长叶麒麟(Pereskia aculeata Miller,OPN)黏液的流变性、热重分析(TGA)和原子力显微镜(AFM)进行了评估。实验设计分为 2 部分分数因子(OPN、蔗糖、NaCl、CaCl 和 pH),然后是 5×3×3 全因子(OPN、蔗糖和 NaCl)。用于筛选因素的模型溶液呈现剪切稀化行为,并且 OPN 黏液浓度是对表观粘度有显著影响的因素。蔗糖的添加提高了 OPN 黏液溶液的热稳定性。OPN 黏液、蔗糖和 NaCl 是对热重响应有显著影响的变量。样品在 0-1.25%的 OPN 黏液浓度下呈现牛顿行为,在 2.50-5.00%的 OPN 黏液浓度下呈现幂律非牛顿行为,以弹性行为为主,有助于形成更强的凝胶。在含有 OPN 黏液的系统中添加蔗糖会改变其流变性能,盐的添加会降低粘度。AFM 结果提供了对 OPN 黏液在不同溶液中相互作用机制的更好理解,这解释了粘度的变化。