Xue Hongkun, Gao Haiyan, Fang Saisai, Hao Zitong, Liao Xiaojun, Tan Jiaqi
College of Traditional Chinese Medicine, Hebei University, No. 342 Yuhua East Road, Lianchi District, Baoding 071002, China.
College of Food Science and Nutritional Engineering, China Agricultural University, No. 17 Qinghua East Road, Haidian District, Beijing 100083, China.
Int J Biol Macromol. 2025 Mar;295:139564. doi: 10.1016/j.ijbiomac.2025.139564. Epub 2025 Jan 6.
To ameliorate the limitations of corn starch (CS) processing, Radix Paeoniae Alba polysaccharide (RPAP) was used to modulate the physicochemical and digestive properties of CS. The main purpose of this paper is to investigate the effects of RPAP on the pasting, rheological, thermal, structural, and digestive properties of CS. The results show that the addition of RPAP could increase the peak viscosity and final viscosity of CS gel, and RPAP could increase the apparent viscosity, storage modulus, loss modulus, hardness, and strength of CS gel, implying that RPAP can effectively improve the pasting and viscoelasticity properties of CS. Moreover, RPAP could be bound to CS through non-covalent interaction, and RPAP could improve the relative crystallinity and thermal stability, whereas decreased the spin relaxation time (T) of CS from 312.16 to 203.25 ms. The microstructure of CS-RPAP gels showed a honeycomb-like porous structure, and RPAP could increase the pore size and thickness of CS-RPAP gels. Furthermore, RPAP could inhibit the digestibility of CS, while increased the resistant starch (RS) content. The findings can provide important references for expanding the application of starch-based products in various fields including food industry, pharmaceuticals, textiles, papermaking, and biodegradable materials.
为改善玉米淀粉(CS)加工的局限性,采用白芍多糖(RPAP)来调节CS的物理化学和消化特性。本文的主要目的是研究RPAP对CS的糊化、流变学、热学、结构和消化特性的影响。结果表明,添加RPAP可提高CS凝胶的峰值粘度和最终粘度,且RPAP可提高CS凝胶的表观粘度、储能模量、损耗模量、硬度和强度,这意味着RPAP能有效改善CS的糊化和粘弹性特性。此外,RPAP可通过非共价相互作用与CS结合,且RPAP可提高CS的相对结晶度和热稳定性,而将CS的自旋弛豫时间(T)从312.16 ms降低至203.25 ms。CS-RPAP凝胶的微观结构呈蜂窝状多孔结构,且RPAP可增加CS-RPAP凝胶的孔径和厚度。此外,RPAP可抑制CS的消化率,同时提高抗性淀粉(RS)含量。这些研究结果可为扩大淀粉基产品在食品工业、制药、纺织、造纸和生物可降解材料等各个领域的应用提供重要参考。