Department of Agriculture, Shaheed Benazir Bhutto University, Sheringal, Upper Dir 18000, Khyber Pakhtunkhwa, Pakistan.
Department of Chemistry, Shaheed Benazir Bhutto University, Sheringal, Upper Dir 18000, Khyber Pakhtunkhwa, Pakistan.
Molecules. 2023 Oct 18;28(20):7154. doi: 10.3390/molecules28207154.
In this research, we focused on the production of amylose-lipid nanocomposite material (ALN) through a green synthesis technique utilizing high-speed homogenization. Our aim was to investigate this novel material's distinctive physicochemical features and its potential applications as a low-glycemic gelling and functional food ingredient. The study begins with the formulation of the amylose-lipid nanomaterial from starch and fatty acid complexes, including stearic, palmitic, and lauric acids. Structural analysis reveals the presence of ester carbonyl functionalities, solid matrix structures, partial crystallinities, and remarkable thermal stability within the ALN. Notably, the ALN exhibits a significantly low glycemic index (GI, 40%) and elevated resistance starch (RS) values. The research extends to the formulation of ALN into nanocomposite hydrogels, enabling the evaluation of its anthocyanin absorption capacity. This analysis provides valuable insights into the rheological properties and viscoelastic behavior of the resulting hydrogels. Furthermore, the study investigates anthocyanin encapsulation and retention by ALN-based hydrogels, with a particular focus on the influence of pH and physical cross-link networks on the uptake capacity presenting stearic-acid (SA) hydrogel with the best absorption capacity. In conclusion, the green-synthesized (ALN) shows remarkable functional and structural properties. The produced ALN-based hydrogels are promising materials for a variety of applications, such as medicine administration, food packaging, and other industrial purposes.
在这项研究中,我们专注于通过高速匀浆的绿色合成技术生产直链淀粉-脂质纳米复合材料(ALN)。我们的目的是研究这种新型材料独特的物理化学特性及其作为低血糖凝胶和功能性食品成分的潜在应用。研究始于从淀粉和脂肪酸复合物(包括硬脂酸、棕榈酸和月桂酸)中配方直链淀粉-脂质纳米材料。结构分析表明,ALN 中存在酯羰基官能团、固体基质结构、部分结晶度和显著的热稳定性。值得注意的是,ALN 具有显著的低血糖指数(GI,40%)和较高的抗性淀粉(RS)值。研究还扩展到将 ALN 配方成纳米复合水凝胶,以评估其花青素吸收能力。该分析提供了对所得水凝胶流变性质和粘弹性行为的有价值的见解。此外,该研究还研究了基于 ALN 的水凝胶对花青素的包封和保留,特别关注 pH 和物理交联网络对吸收能力的影响,结果表明硬脂酸(SA)水凝胶具有最佳的吸收能力。总之,绿色合成的(ALN)表现出显著的功能和结构特性。所制备的基于 ALN 的水凝胶是在医学给药、食品包装和其他工业用途等各种应用中很有前途的材料。