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首页> 外文期刊>Marine Drugs >Anti-Fatigue Effect by Peptide Fraction from Protein Hydrolysate of Croceine Croaker ( Pseudosciaena crocea ) Swim Bladder through Inhibiting the Oxidative Reactions including DNA Damage
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Anti-Fatigue Effect by Peptide Fraction from Protein Hydrolysate of Croceine Croaker ( Pseudosciaena crocea ) Swim Bladder through Inhibiting the Oxidative Reactions including DNA Damage

机译:番红花鱼(Pseudosciaena crocea)游泳膀胱蛋白水解产物的肽片段通过抑制氧化反应(包括DNA损伤)的抗疲劳作用。

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The swim bladder of the croceine croaker ( Pseudosciaena crocea ) was believed to have good curative effects in various diseases, including amnesia, insomnia, dizziness, anepithymia, and weakness after giving birth, in traditional Chinese medicine. However, there is no research focusing on the antioxidant and anti-fatigue peptides from croceine croaker swim bladders at present. Therefore, the purpose of this study was to investigate the bioactivities of peptide fractions from the protein hydrolysate of croceine croaker related to antioxidant and anti-fatigue effects. In the study, swim bladder peptide fraction (SBP-III-3) was isolated from the protein hydrolysate of the croceine croaker, and its antioxidant and anti-fatigue activities were measured using in vitro and in vivo methods. The results indicated that SBP-III-3 exhibited good scavenging activities on hydroxyl radicals (HO?) (EC 50 (the concentration where a sample caused a 50% decrease of the initial concentration of HO?) = 0.867 mg/mL), 2,2-diphenyl-1-picrylhydrazyl radicals (DPPH?) (EC 50 = 0.895 mg/mL), superoxide anion radical ( O 2 ? ?) (EC 50 = 0.871 mg/mL), and 2,2′-azino-bis-3-ethylbenzothiazoline-6-sulfonic acid radical (ABTS + ?) (EC 50 = 0.346 mg/mL). SBP-III-3 also showed protective effects on DNA damage in a concentration-effect manner and prolonged the swimming time to exhaustion of Institute of Cancer Research (ICR) mice by 57.9%–107.5% greater than that of the control. SBP-III-3 could increase the levels of muscle glucose (9.4%–115.2% increase) and liver glycogen (35.7%–157.3%), and decrease the levels of blood urea nitrogen (BUN), lactic acid (LA), and malondialdehyde (MDA) by 16.4%–22.4%, 13.9%–20.1%, and 28.0%–53.6%, respectively. SBP-III-3 also enhanced the activity of lactic dehydrogenase to scavenge excessive LA for slowing the development of fatigue. In addition, SBP-III-3 increased the activities superoxide dismutase, catalase, and glutathione peroxidase to reduce the reactive oxygen species (ROS) damage in mice. In conclusion, SBP-III-3 possessed good anti-fatigue capacities on mice by inhibiting the oxidative reactions and provided an important basis for developing the swim bladder peptide functional food.
机译:人们认为,在传统中药中,藏红花鱼(Pseudosciaena crocea)的游泳膀胱对多种疾病具有良好的治疗效果,包括健忘症,失眠,头晕,贫血和分娩后虚弱。但是,目前还没有研究集中在红花鱼鱼swim的抗氧化剂和抗疲劳肽上。因此,本研究的目的是研究来自番红花黄花鱼蛋白质水解产物的肽级分的生物活性与抗氧化和抗疲劳作用有关。在这项研究中,从黄花鱼的蛋白质水解物中分离出了游泳膀胱肽级分(SBP-III-3),并使用体内和体外方法测量了其抗氧化和抗疲劳活性。结果表明,SBP-III-3对羟基自由基(HO 2)表现出良好的清除活性(EC 50(样品引起HO 2初始浓度降低50%的浓度)= 0.867 mg / mL,2 ,2-二苯基-1-吡啶并肼基(DPPH)(EC 50 = 0.895 mg / mL),超氧阴离子(O 2α?)(EC 50 = 0.871 mg / mL)和2,2'-叠氮基-双-3-乙基苯并噻唑啉-6-磺酸基团(ABTS +)(EC 50 = 0.346 mg / mL)。 SBP-III-3还以浓度效应的方式对DNA损伤显示出保护作用,并延长了癌症研究所(ICR)小鼠的力竭游泳时间,比对照组延长了57.9%–107.5%。 SBP-III-3可以增加肌肉葡萄糖水平(增加9.4%–115.2%)和肝糖原(35.7%–157.3%),并降低血液尿素氮(BUN),乳酸(LA)和丙二醛(MDA)分别为16.4%–22.4%,13.9%–20.1%和28.0%–53.6%。 SBP-III-3还增强了乳酸脱氢酶的活性,以清除过量的LA,从而减缓了疲劳的发展。此外,SBP-III-3增加了超氧化物歧化酶,过氧化氢酶和谷胱甘肽过氧化物酶的活性,从而减少了小鼠的活性氧(ROS)损伤。综上所述,SBP-III-3通过抑制氧化反应对小鼠具有良好的抗疲劳能力,为开发泳囊肽功能性食品提供了重要依据。

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