Campos Lara, Seixas Luana, Dias Susana, Peres António M, Veloso Ana C A, Henriques Marta
Polytechnic Institute of Coimbra, Coimbra Agriculture School, Bencanta, 3045-601 Coimbra, Portugal.
CERNAS, Research Centre for Natural Resources, Environment and Society, Coimbra Agriculture School, Bencanta, 3045-601 Coimbra, Portugal.
Foods. 2022 Mar 29;11(7):992. doi: 10.3390/foods11070992.
Pomegranate by-products can be an asset to the food industry due to the richness in bioactive and antimicrobial compounds. This work studied the influence of conventional solvent and sonication-assisted extraction methods on the bioactive profile, antimicrobial properties, and phytotoxicity effect of the peels and seeds extracts from Acco, Big Full, and Wonderful pomegranate cultivars. The bioactive composition of the extracts was evaluated for the content of total phenolics, total flavonoids, and antioxidant activity (expressed as the half-maximal inhibitory concentration-IC) by spectrophotometric methods, while the tannins were determined by titration and the anthocyanins were estimated by the pH-differential method. For the evaluation of the antimicrobial activity, the disk diffusion method of Kirby-Bauer was adapted through inhibition halos against , , , , and . The extracts' phytotoxicity was evaluated in vitro on garden-cress seeds. Extracts from conventional extraction were richer in total phenolics, expressed as gallic acid equivalents (0.16-0.73 mg GAE/mg extract), while those from sonication-assisted extraction had higher contents of total flavonoids, expressed as catechin equivalents (0.019-0.068 mg CATE/mg extract); anthocyanins, expressed as cyanidin-3-glucoside (0.06-0.60 µg C3G/mg, dry basis); and antioxidant activity (IC, 0.01-0.20 mg/mL). All extracts were more effective against Gram-positive bacteria and yeasts than Gram-negative bacteria. In general, the sonication-assisted extracts led to higher inhibition halos (8.7 to 11.4 mm). All extracts presented phytotoxicity against garden-cress seeds in the tested concentrations. Only the lowest concentration (0.003 mg/mL) enabled the germination of seeds and root growth, and the sonication-assisted extracts showed the highest Munoo-Liisa vitality index (51.3%). Overall, sonication-assisted extraction obtained extracts with greater bioactive and antimicrobial potential and less phytotoxicity.
石榴副产品因其富含生物活性和抗菌化合物,对食品工业而言可能是一项宝贵资源。本研究考察了传统溶剂萃取法和超声辅助萃取法对阿科、大满贯和奇妙石榴品种果皮及籽提取物的生物活性特征、抗菌性能和植物毒性效应的影响。采用分光光度法评估提取物的生物活性成分,测定总酚、总黄酮含量及抗氧化活性(以半数抑制浓度 - IC表示),通过滴定法测定单宁含量,采用pH差值法估算花青素含量。为评估抗菌活性,采用Kirby - Bauer纸片扩散法,通过对金黄色葡萄球菌、大肠杆菌、枯草芽孢杆菌、白色念珠菌和黑曲霉的抑菌圈来评价。在体外对水芹种子评估提取物的植物毒性。传统萃取法得到的提取物总酚含量更高,以没食子酸当量表示(0.16 - 0.73 mg GAE/mg提取物),而超声辅助萃取法得到的提取物总黄酮含量更高,以儿茶素当量表示(0.019 - 0.068 mg CATE/mg提取物);花青素含量更高,以矢车菊素 - 3 - 葡萄糖苷表示(0.06 - 0.60 µg C3G/mg,干基);抗氧化活性(IC,0.01 - 0.20 mg/mL)更高。所有提取物对革兰氏阳性菌和酵母菌的抗菌效果均优于革兰氏阴性菌。总体而言,超声辅助萃取法得到的提取物抑菌圈更大(8.7至11.4 mm)。所有提取物在测试浓度下均对水芹种子表现出植物毒性。只有最低浓度(0.003 mg/mL)能使种子发芽和根系生长,且超声辅助萃取法得到的提取物显示出最高的穆诺 - 利萨活力指数(51.3%)。总体而言,超声辅助萃取法得到的提取物具有更高的生物活性和抗菌潜力,且植物毒性更低。