El Hammadi Nisserine, Almajano María Pilar, Pastor Maria Vicenta, Codina-Torrella Idoia
Chemical Engineering Department, Universitat Politècnica de Catalunya, Av. Diagonal 647, 08028 Barcelona, Spain.
Agri-Food Engineering and Biotechnology Department, Universitat Politècnica de Catalunya, Esteve Terrades 8, 08860 Castelldefels, Spain.
Polymers (Basel). 2024 Feb 28;16(5):649. doi: 10.3390/polym16050649.
L. is a species of the Myrtaceae family that is found in the Mediterranean region, and it is traditionally recognized for its importance and different uses. The objective of this study was to determine the effect of L. leaf extract (MCLE), which was incorporated directly into alginate spheres and films, on preserving oil-in-water emulsions from oxidation. For this purpose, the solvent extraction (with ethanol at 40, 60, and 80%) of the antioxidant compounds was optimized (total phenolic compounds (TPCs) and total flavonoid content (TFC)) along with the scavenging activity. The best condition for the extraction corresponded with 60% ethanol (MCLE60), with a TPC of ~66.06 g GAE/L and a TFC of ~18.91 g QE/L, which was selected for use in the following assays. MCLE60 showed a considerable radical scavenging activity (24.85 mmol TE/L in FRAP, 28.75 mmol TE/L in DPPH, 30.61 mmol TE/L in ABTS, and 14.94 mmol TE/L in ORAC), which was probably due to its content in the phenolic compounds arbutin (122.08 mg/L), epicatechin (73.89 mg/L), sinapic acid (51.85 mg/L), and gallic acid (36.72 mg/L). The oil-in-water emulsions with the MCLE60 spheres showed the best oxidative stability (TBARS ~2.64 mg MDA/kg of emulsion, PV ~35.7 meq hydroperoxides/kg of emulsion) in comparison to the control. The film was also able to protect the emulsion from oxidation for more than a week at 30 °C (TBARS ~1.9 mg MDA/kg of emulsion). The alginate films with MCLE60 presented an important release of phenolic compounds in water and acetic food simulants, while in both ethanol simulants, the release of TPC remained more stable over time. Thus, this study highlights the potential uses of MCLE as a natural ingredient for emulsion oxidative preservation and the production of alginate delivery systems (spheres and films).
L. 是桃金娘科的一个物种,在地中海地区被发现,传统上因其重要性和多种用途而受到认可。本研究的目的是确定直接掺入藻酸盐球和薄膜中的L. 叶提取物(MCLE)对水包油乳液抗氧化性能的影响。为此,对抗氧化化合物(总酚类化合物(TPC)和总黄酮含量(TFC))的溶剂萃取(使用40%、60%和80%的乙醇)以及清除活性进行了优化。最佳萃取条件对应于60%乙醇(MCLE60),其TPC约为66.06 g GAE/L,TFC约为18.91 g QE/L,该条件被选用于后续实验。MCLE60表现出相当可观的自由基清除活性(FRAP中为24.85 mmol TE/L,DPPH中为28.75 mmol TE/L,ABTS中为30.61 mmol TE/L,ORAC中为14.94 mmol TE/L),这可能归因于其含有熊果苷(122.08 mg/L)、表儿茶素(73.89 mg/L)、芥子酸(51.85 mg/L)和没食子酸(36.72 mg/L)等酚类化合物。与对照组相比,含有MCLE60球的水包油乳液表现出最佳的氧化稳定性(TBARS约为2.64 mg MDA/kg乳液,PV约为35.7 meq氢过氧化物/kg乳液)。该薄膜在30°C下也能够保护乳液超过一周不被氧化(TBARS约为1.9 mg MDA/kg乳液)。含有MCLE60的藻酸盐薄膜在水和醋酸食品模拟物中表现出酚类化合物的重要释放,而在两种乙醇模拟物中,TPC的释放在一段时间内保持更稳定。因此,本研究突出了MCLE作为乳液氧化保鲜和藻酸盐递送系统(球和薄膜)生产的天然成分的潜在用途。