Martins Valter F R, Lopes Ana I, Machado Manuela, Costa Eduardo M, Ribeiro Tânia B, Poças Fátima, Pintado Manuela, Morais Rui M S C, Morais Alcina M M B
CBQF-Centro de Biotecnologia e Química Fina-Laboratório Associado, Escola Superior de Biotecnologia, Universidade Católica Portuguesa, Rua Diogo Botelho, 1327, 4169-005 Porto, Portugal.
Foods. 2025 Apr 11;14(8):1327. doi: 10.3390/foods14081327.
Microalgae are a sustainable source of bioactive compounds and nutrients that do not compete with crops for arable land. sp. was used to produce biodegradable films. Bioactive compounds, polysaccharides, and proteins were extracted from this microalga. The total phenolic content (TPC) and antioxidant activity (ABTS, DPPH, and ORAC) of the bioactive-rich extract were determined, and its composition was analyzed for phenolics using LC-ESI-QqTOF-HRMS and for lipids using GC-FID. The cytotoxicity of this extract on Caco-2 cells was also assessed. Different types of films were produced based on alginate (2%) (film A) and alginate with polysaccharides-rich (PS-rich) extract (0.5%) (film B); PS-rich extract and bioactive-rich extract (0.25%) (film C); protein-rich (P-rich) extract (0.5%) (film D); and P-rich extract and bioactive-rich extract (film E). The antioxidant activity and physical parameters of the films, such as thickness, color, water vapor permeability, solubility, tensile strength (TS), and elongation at break (EAB), were determined. The TPC of the bioactive-rich extract was 1.07 ± 0.05 mg GAE/100 mg DW, and its antioxidant activity was 2.44 ± 0.27, 1.67 ± 0.15, and 11.90 ± 1.22 µmol TE/100 mg DW for ABTS, DPPH, and ORAC, respectively. The extract showed no cytotoxicity to gut cells at concentrations equal to or below 1.0 mg/mL. Film E obtained the best results for the antioxidant activity, 451.06 ± 14.68 and 212.81 ± 39.12 µM TE/mg film for ABTS and DPPH, respectively. In addition, the films enriched with the bioactive-rich extract (films C and E) presented antimicrobial activity against . These films controlled the mold and yeast growth in strawberries during a four-day storage at 25 °C. All films were completely soluble in water and hydroethanolic solutions but only partially solubilized in acetic acid (3%). TS and EAB were not significantly different among the films. It was possible to produce biodegradable films using microalga sp. with good bioactivity and physical characteristics.
微藻是生物活性化合物和营养物质的可持续来源,不会与农作物争夺耕地。 种微藻被用于生产可生物降解薄膜。从这种微藻中提取了生物活性化合物、多糖和蛋白质。测定了富含生物活性成分的提取物的总酚含量(TPC)和抗氧化活性(ABTS、DPPH和ORAC),并使用LC-ESI-QqTOF-HRMS分析其酚类成分,使用GC-FID分析脂质成分。还评估了该提取物对Caco-2细胞的细胞毒性。基于藻酸盐(2%)(薄膜A)、藻酸盐与富含多糖(PS-rich)的提取物(0.5%)(薄膜B)、PS-rich提取物和富含生物活性成分的提取物(0.25%)(薄膜C)、富含蛋白质(P-rich)的提取物(0.5%)(薄膜D)以及P-rich提取物和富含生物活性成分的提取物(薄膜E)制备了不同类型的薄膜。测定了薄膜的抗氧化活性和物理参数,如厚度、颜色、水蒸气透过率、溶解度、拉伸强度(TS)和断裂伸长率(EAB)。富含生物活性成分的提取物的TPC为1.07±0.05 mg GAE/100 mg DW,其抗氧化活性对于ABTS、DPPH和ORAC分别为2.44±0.27、1.67±0.15和11.90±1.22 μmol TE/100 mg DW。该提取物在浓度等于或低于1.0 mg/mL时对肠道细胞无细胞毒性。薄膜E在抗氧化活性方面取得了最佳结果,ABTS和DPPH的抗氧化活性分别为451.06±14.68和212.81±39.12 μM TE/mg薄膜。此外,富含富含生物活性成分的提取物的薄膜(薄膜C和E)对 具有抗菌活性。这些薄膜在25℃下储存四天期间控制了草莓上霉菌和酵母菌的生长。所有薄膜在水和乙醇水溶液中完全可溶,但在乙酸(3%)中仅部分溶解。各薄膜之间的TS和EAB没有显著差异。使用 种微藻制备具有良好生物活性和物理特性的可生物降解薄膜是可行的。