食品科学 ›› 2024, Vol. 45 ›› Issue (15): 118-126.doi: 10.7506/spkx1002-6630-20231124-199

• 营养卫生 • 上一篇    下一篇

南极磷虾磷脂体外抗氧化活性评价及对秀丽隐杆线虫抗衰老作用

简沛仪, 冯铭希, 陈榕, 汤磊, 郑锦銮, 赵力超   

  1. (华南农业大学食品学院, 广东 广州 510642)
  • 出版日期:2024-08-15 发布日期:2024-08-04
  • 基金资助:
    山东省重点研发计划(乡村振兴科技创新提振行动计划)项目(2023TZXD055); 佛山市促进高校科技成果服务产业发展扶持项目(2023SWYY01);广西科技重大专项(桂科AA23073016); 2022年省科技专项资金(“大专项+任务清单”)项目(SDZX2022025)

Antioxidant Activity in Vitro of Antarctic Krill Phospholipids and Its Anti-aging Effect on Caenorhabditis elegans

JIAN Peiyi, FENG Mingxi, CHEN Rong, TANG Lei, ZHENG Jinluan, ZHAO Lichao   

  1. (College of Food Science, South China Agricultural University, Guangzhou 510642, China)
  • Online:2024-08-15 Published:2024-08-04

摘要: 为探究南极磷虾磷脂抗氧化、抗衰老的作用及机制, 以1, 1-二苯基-2-三硝基苯肼自由基清除率、2, 2’-联氮双(3-乙基苯并噻唑啉-6-磺酸)阳离子自由基清除率和Fe3+还原力为指标, 评价磷虾磷脂的体外抗氧化能力;以秀丽隐杆线虫(线虫)为模型, 研究不同质量浓度的磷虾磷脂对线虫寿命、吞咽频率、头部摆动次数、急性氧化应激、热应激、活性氧水平、体内抗氧化能力和衰老相关基因表达水平的影响。结果表明, 磷虾磷脂具有良好的体外抗氧化能力, 且优于大豆磷脂;与对照组相比, 各质量浓度的磷虾磷脂均可延长线虫寿命, 提高吞咽频率和运动能力, 增强线虫的应激抵抗能力, 并且中、高质量浓度磷虾磷脂能极显著提高超氧化物歧化酶和过氧化氢酶的活力(P<0.01), 显著增加谷胱甘肽的含量(P<0.05), 极显著降低丙二醛含量和活性氧水平(P<0.01);此外, 磷虾磷脂通过激活DAF-16、SKN-1和HSF-1转录因子并上调其下游抗氧化基因和解毒基因的表达, 延长线虫的寿命。综上, 磷虾磷脂具有良好的体内外抗氧化能力, 能够延缓线虫衰老, 可作为抗氧化、抗衰老的功能性食品。

关键词: 南极磷虾磷脂;秀丽隐杆线虫;抗氧化;抗衰老

Abstract: In order to explore the antioxidant and anti-aging effects and underlying mechanism of Antarctic krill phospholipids, the antioxidant capacity in vitro of krill phospholipids was evaluated by radical scavenging capacities against 1, 1-diphenyl-2-picrylhydrazyl (DPPH) and 2, 2’-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) (ABTS) radical cation, and ferric ion reducing power. Meanwhile, the effect of krill phospholipids at different concentrations on the life span, swallowing frequency, head swinging frequency, acute oxidative stress resistance, heat stress resistance, reactive oxygen species (ROS) levels, antioxidant capacity and aging-related gene expression in the model organism Caenorhabditis elegans was studied. The results showed that krill phospholipids had good antioxidant capacity in vitro, which was superior to that of soybean phospholipids. Compared with the control group, krill phospholipids at all concentrations tested prolonged the life span of C. elegans, improved the swallowing frequency and mobility, and enhanced the resistance to stress. Moreover, krill phospholipids at the medium and high concentrations significantly increased the activities of superoxide dismutase and catalase (P < 0.01) and the content of glutathione (P < 0.05), and significantly reduced the content of malondialdehyde (MDA) and ROS levels (P < 0.01). In addition, krill phospholipids prolonged the life span of C. elegans by activating the transcription factors DAF-16, SKN-1 and HSF-1 and up-regulating the expression of antioxidant and detoxification genes. To sum up, krill phospholipids have good antioxidant capacity both in vivo and in vitro and delay the aging of C. elegans, thus being a potential functional food ingredient.

Key words: Antarctic krill phospholipids; Caenorhabditis elegans; antioxidant; anti-aging

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