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Safety and Mutagenicity Evaluation of Nanoparticulate Red Mold Rice

机译:纳米红霉米的安全性和致突变性评估

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Nowadays, people have recognized the importance of Monascus fermented products due to their many health benefits. A previous study demonstrated a novel formulation approach for the preparation of nanoparticulate red mold rice (NRMR). The aim of this study is to determine the useability of stable NRMR dispersion by evaluating its safety and mutagenicity with the Ames test. The crude red mold rice (RMR) was processed using a wet milling technology in the presence of distilled water to form an aqueous-based nanoparticle dispersion with a mean particle size of 259.3 nm. The formulated diepersion was found to be homogeneous and exhibited unimodal particle size distribution when analyzed by dynamic laser scattering techniques. Ames test results indicated that the equivalent bf up to 1 mg of ethanol extract of RMR per plate exhibited no genotoxicity toward Salmonella typhimurium strains TA 98, TA100, and TA102. In the feeding toxicity test, the no observed adverse effect level (NOAEL) of NRMR was found to be 1000 mg/kg/day for both male and female rats. In conclusion, red mold rice can be formulated as a stable nanoparticulate dispersion using wet milling technology. In vitro and in vivo safety evaluations of NRMR indicated that no mutagenic or toxic responses were observed in this study.
机译:如今,人们已经认识到红曲霉发酵产品具有许多健康益处,因此很重要。先前的研究证明了用于制备纳米颗粒红霉米(NRMR)的新颖配方方法。这项研究的目的是通过使用Ames试验评估其安全性和诱变性来确定稳定的NRMR分散体的可用性。在蒸馏水的存在下,使用湿磨技术处理粗制的红色发霉大米(RMR),以形成平均粒径为259.3 nm的水基纳米颗粒分散体。当通过动态激光散射技术进行分析时,发现配制的二分散体是均匀的,并且表现出单峰粒度分布。 Ames测试结果表明,每块板中直至1 mg RMR的乙醇提取物的当量bf对鼠伤寒沙门氏菌TA 98,TA100和TA102都没有遗传毒性。在摄食毒性试验中,对于雄性和雌性大鼠,未观察到的NRMR的不良反应水平(NOAEL)为1000 mg / kg /天。总之,使用湿磨技术可以将红霉米制成稳定的纳米颗粒分散体。 NRMR的体外和体内安全性评估表明,在这项研究中未观察到诱变或毒性反应。

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