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Safety evaluation of nano/sub-microsized lignan glycosides from sesame meal.

机译:芝麻粉中纳米/亚微米级木脂素苷的安全性评估。

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Nanotechnology is an emerging field in the food industry, but the potential hazards and toxicities of nano-sized food ingredients are still not clear. The aim of this study was to evaluate the mutagenicity and oral toxicity of nano/submicro-sized ingredient, lignan glycosides from sesame meal (N-LGSM), prepared by a wet-milling method to reduce the average particle size to 189 nm. Genotoxicity assays including Ames test, chromosome aberration assay, micronuclei assay and a 28-day subacute oral toxicity assay were employed to evaluate the mutagenicity and oral toxicity. Results of the Ames test showed that neither lignan glycosides from sesame meal (LGSM) nor N-LGSM increased mutagenicity toward Salmonella typhimurium strains TA97, TA98, TA100, TA102 and TA1535. Furthermore, LGSM and N-LGSM were found to have no mutagenic effects on increasing chromosome aberrations in treated Chinese Hamster Ovary (CHO) cells and the number of micronuclei in mouse erythrocytes. Most importantly, in the 28-day subacute oral toxicity trial, the "no observed adverse effect levels" (NOAELs) of LGSM and N-LGSM were determined to be 1000 and 200 mg/kg/day, respectively for both male and female mice. In conclusion, the nano/submicrosizing process did not cause the mutagenicity and oral toxicity for LGSM, and therefore it is a safe processing method for sesame lignan glycosides. All rights reserved, Elsevier.
机译:纳米技术是食品工业的新兴领域,但纳米食品成分的潜在危害和毒性仍不清楚。这项研究的目的是评估通过湿磨法制备的将纳米/亚微米级成分芝麻粉中的木脂素苷(N-LGSM)的诱变性和口服毒性,以将平均粒径减小到189 nm。遗传毒性试验包括Ames试验,染色体畸变试验,微核试验和28天亚急性口服毒性试验,用于评估致突变性和口服毒性。 Ames试验的结果表明,芝麻粉(LGSM)的木脂苷和N-LGSM均不增强对鼠伤寒沙门氏菌TA97,TA98,TA100,TA102和TA1535的致突变性。此外,发现LGSM和N-LGSM对增加处理的中国仓鼠卵巢(CHO)细胞的染色体畸变和小鼠红细胞中微核的数量没有诱变作用。最重要的是,在28天的亚急性口服毒性试验中,雄性和雌性小鼠的LGSM和N-LGSM的“未观察到的不良反应水平”(NOAEL)分别确定为1000和200 mg / kg / day 。总之,纳米/亚微粉化工艺不会引起LGSM的致突变性和口服毒性,因此它是芝麻木脂素糖苷的安全加工方法。保留所有权利,Elsevier。

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