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Enhanced Hypolipidemic Effect and Safety of Red Mold Dioscorea Cultured in Deep Ocean Water

机译:深海养殖红发薯Di的降血脂作用和安全性

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Red mold dioscorea (RMD) produced by Monascus sp. was proven to be a hypolipidemic functional food. Deep ocean water (DOW), that is, water obtained from over 200 m deep in the ocean, was found to promote the growth of fungus via its mineral richness. On the basis of the advantages, this study used 650 m DOW as the culture water to culture Monascus purpuresus NTU 568 and produce the DOW-RMD. The goal of this study is to compare the difference between DOW-RMD and reverse osmosis water-cultured RMD (ROW-RMD) on the hypolipidemic effect. Hyperlipidemic hamsters were fed a high-cholesterol diet and administered various doses of DOW-RMD or ROW-RMD for 8 weeks. After sacrifice, biochemical analyses in serum, liver, and feces were carried out. The results showed that DOW-RMD had a greater effect on lowering cholesterol levels and lipid peroxidation in serum and lipid plaque in heart aorta than ROW-RMD. However, DOW was likely to modulate the Monascus metabolite biosynthesis pathway toward the formation of hypolipidemic yellow pigments (such as monascin and ankaflavin) rather than red pigments and the mycotoxin citrinin. In addition, the DOW with higher Mg~(2+) ion was proven to absorb into DOW-RMD; however, the accumulation of Mg~(2+) ions should contribute a greater hypolipidemic effect to DOW-RMD. Comprehensively, the DOW-induced metabolism modulation and the ions of DOW were a benefit to the development of safe DOW-RMD with low citrinin levels and high hypolipidemic, antiatherosclerosis, and anti-fatty liver effects.
机译:Monascus sp。生产的红色霉薯薯(RMD)。被证明是一种降血脂功能食品。深海水(DOW),即从海洋深200m以上获得的水,通过其丰富的矿物质来促进真菌的生长。基于优势,本研究使用650 m DOW作为培养水来培养紫红曲霉NTU 568和生产DOW-RMD。这项研究的目的是比较DOW-RMD和反渗透水培RMD(ROW-RMD)对降血脂作用的差异。给高脂血症仓鼠喂食高胆固醇饮食,并给予8周不同剂量的DOW-RMD或ROW-RMD。处死后,对血清,肝脏和粪便进行生化分析。结果表明,与ROW-RMD相比,DOW-RMD对降低心脏主动脉血清和脂质斑块中胆固醇水平和脂质过氧化的作用更大。但是,DOW可能会调节红曲霉代谢物的生物合成途径,从而形成降血脂性黄色颜料(例如莫纳辛和ankaflavin),而不是红色颜料和霉菌毒素柠檬绿素。此外,Mg〜(2+)离子含量更高的DOW被证明可以吸收到DOW-RMD中。然而,Mg〜(2+)离子的积累应为DOW-RMD贡献更大的降血脂作用。总体而言,DOW诱导的代谢调节和DOW离子有利于开发安全的DOW-RMD,该药物具有低橘黄素水平和高降血脂,抗动脉粥样硬化以及抗脂肪肝的作用。

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