首页> 外文期刊>Food and Nutrition Sciences >Discovery of New Stilbene Antioxidants of the Bio-Elicited Peanut Sprout Powder (BPSP) and Longevity Extension of Mice Fed with BPSP-Supplemented Diets
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Discovery of New Stilbene Antioxidants of the Bio-Elicited Peanut Sprout Powder (BPSP) and Longevity Extension of Mice Fed with BPSP-Supplemented Diets

机译:发现了新的生物修饰的花生芽菜粉(BPSP)的Stilbene抗氧化剂和补充BPSP饮食的小鼠的寿命延长

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Biosynthesis of peanut stilbenes, including resveratrol as the secondary metabolites, could be enhanced by subjecting the kernels to germination and wound-stress. Investigations of the bio-elicited peanut sprout powder (BPSP) addressed on characterization of the comprising stilbenes and effectiveness in longevity extension deserves intensive research. In this study, peanut kernels were subjected to germination and wound-stress in preparation of BPSP. The methanol extracts of BPSP were medium pressure liquid chromatographic (MPLC) fractionated and semi-preparative HPLC recovered and followed by instrumental identification and biological activity determinations of the isolated stilbenes. In longevity experiments, 16 female 11-mon-old BALB/c mice and both genders of 12-mon-old ICR mice were daily fed with BPSP supplemented diets at doses of 0, 0.1 and 0.5 g BPSP/kg bw for 750 and 762 days, respectively. Based on chemical characterization, enriched quantity of stilbenes in the BPSP up to ca. 1% (w/w) was detected. Two new stilbene compounds, namely, 4, 5’-dihydroxy-6’’-hydroxymethyl, 6’’-methylpyrano [2’’, 3’’: 3’, 4’] stilbene and 3, 4, 5’-trihydroxy-6’’, 6’’-dimethylpyrano [2’’, 3’’: 3’, 4’]stilbene along with 5 known stilbenes were isolated. The 7 stilbenes exhibited potent antioxidative and antiglycative activities and varied with structure-activity nature. Based on the resultant survival curves and average lifespans of both mouse models, basal diets supplemented with BPSP are effective to extend mouse longevity by a dose dependent manner. It is of merit to demonstrate that peanut kernels as a potent producer could be bio-elicited to biosynthesize a broad spectrum of bioactive stilbenes to prepare BPSP which is effective to extend mouse longevity as science-evidenced by the two long-term animal experiments.
机译:花生仁的生物合成,包括白藜芦醇作为次生代谢产物,可以通过使籽粒发芽和承受创伤来增强。关于生物诱导的花生芽粉(BPSP)的研究,以表征其组成的斯蒂苯类化合物和延长寿命的有效性值得深入研究。在这项研究中,花生仁要经受发芽和创面压力以制备BPSP。将BPSP的甲醇提取物进行中压液相色谱(MPLC)分级分离,并回收半制备型HPLC,然后通过仪器鉴定和生物活性测定分离出的斯蒂尔苯。在寿命试验中,每天以BPSP补充饮食分别喂养16只11个月大的BALB / c雌性小鼠和12个月大的ICR雌性的雌性,分别以750和762 g BPSP / kg bw的剂量喂养天分别。根据化学特征,BPSP中的斯蒂芬烯的富集量最多可达检测到1%(w / w)。两种新的二苯乙烯化合物,即4,5'-二羟基-6''-羟甲基,6''-甲基吡喃并[2'',3'':3',4'] 1,2-二苯乙烯和3,4,5'-三羟基分离出-6”,6”-二甲基吡喃并[2”,3”:3',4']二苯乙烯和5种已知的对苯二酚。 7种对苯二酚显示出有效的抗氧化和抗糖化活性,并随结构活性的性质而变化。根据两种小鼠模型的最终生存曲线和平均寿命,补充了BPSP的基础饮食可以有效地延长小鼠的寿命,并具有剂量依赖性。值得证明的是,可以有效地激发花生籽粒作为有效的生产者,以生物合成多种生物活性的斯蒂尔苯以制备BPSP,这通过两次长期动物实验得到了科学证明,可以有效延长小鼠的寿命。

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