Faculty of Food Science & Technology, Gorgan University of Agricultural Sciences and Natural Resources, Gorgan, 49189-43464, Iran.
J Agric Food Chem. 2020 Dec 23;68(51):15097-15106. doi: 10.1021/acs.jafc.0c02583. Epub 2020 Dec 8.
This study addressed the extraction, enzymatic hydrolysis, and production of peptide fractions (PF) from defatted flaxseed meal and their loading into nanoliposomes. Enzymatic hydrolysis significantly increased the free hydrophobic (from 19 to 134 mg/g) and antioxidant (from 8 to 46 mg/g) amino acids. The PF with lower molecular weights (MW < 10 kDa) had the highest scavenging capacity of DPPH free radicals (61.82%), ABTS (86.37%), Trolox equivalent antioxidant capacity, TEAC (2.34 mM), hydroxyl (61.91%), reducing power (0.94 Abs), total antioxidant activity (1.76 Abs), nitric oxide (49.9%), iron (69.34%), and copper (24.58%) chelating activities compared with other fractions. The physical properties (such as particle size and polydispersity index), stability, and encapsulation efficiency of nanoliposomes were affected by temperature, stress type (freeze and thaw tension), MW, and in vitro conditions (release of PF in simulated biological fluids at different times). Besides, the Fourier-transform infrared spectroscopy (FTIR) results showed the placement of peptides inside the polar regions and the bilayer membrane. The scanning electron microscopy (SEM) images of nanocarriers indicated agglomerated and relatively spherical structures. Our findings revealed the efficiency of nanoliposomes as appropriate carriers for the delivery of peptide fractions with the highest antioxidant activity.
本研究旨在从脱脂亚麻籽粉中提取、酶解并制备肽段(PF),并将其载入纳米脂质体。酶解显著增加了游离疏水性(从 19 毫克/克增加到 134 毫克/克)和抗氧化性(从 8 毫克/克增加到 46 毫克/克)氨基酸。分子量较低(MW < 10 kDa)的 PF 具有最高的 DPPH 自由基清除能力(61.82%)、ABTS(86.37%)、Trolox 等效抗氧化能力(TEAC,2.34 mM)、羟基(61.91%)、还原能力(0.94 Abs)、总抗氧化活性(1.76 Abs)、一氧化氮(49.9%)、铁(69.34%)和铜(24.58%)螯合活性,优于其他 PF。纳米脂质体的物理性质(如粒径和多分散指数)、稳定性和包封效率受温度、应力类型(冷冻和解冻张力)、MW 和体外条件(不同时间在模拟生物流体中 PF 的释放)的影响。此外,傅里叶变换红外光谱(FTIR)结果表明肽位于极性区域和双层膜内。纳米载体的扫描电子显微镜(SEM)图像表明其为团聚的、相对球形的结构。我们的研究结果表明,纳米脂质体作为具有最高抗氧化活性的肽段的合适载体具有高效性。