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首页> 外文期刊>EFSA Journal >Safety evaluation of the food enzyme cellulase from the non‐genetically modified Penicillium funiculosum strain DP‐Lzc35
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Safety evaluation of the food enzyme cellulase from the non‐genetically modified Penicillium funiculosum strain DP‐Lzc35

机译:非遗传改性青霉菌菌株菌株DP-LZC35的食品酶纤维素酶的安全评价

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摘要

The food enzyme cellulase (4‐(1,3;1,4)‐β‐d‐glucan 4‐glucanohydrolase; EC 3.2.1.4) is produced with the non‐genetically modified Penicillium funiculosum strain Lzc35 by Danisco US Inc. The cellulase is intended to be used in distilled alcohol production, baking and brewing processes. Since residual amounts of total organic solids (TOS) are removed by distillation, dietary exposure was only calculated for baking and brewing processes. Based on the proposed maximum use levels, dietary exposure to the food enzyme–TOS was estimated to be up to 0.416 mg TOS/kg body weight (bw) per day. Genotoxicity tests did not raise a safety concern. The systemic toxicity was assessed by means of a repeated dose 90‐day oral toxicity study in rats. The Panel identified a no observed adverse effect level of 84 mg TOS/kg bw per day, the highest dose tested, which when compared with the estimated dietary exposure, resulted in a margin of exposure of at least 200. Similarity of the amino acid sequence of the food enzyme to those of known allergens was searched and no match was found. The Panel considered that, under the intended conditions of use, the risk of allergic sensitisation and elicitation reactions by dietary exposure cannot be excluded, but the likelihood is considered to be low. Based on the data provided, the Panel concluded that this food enzyme does not give rise to safety concerns under the intended conditions of use.
机译:食品酶纤维素酶(4-(1,3; 1,4)-β-D-葡聚糖4-葡聚糖水解酶; EC 3.2.1.4)与Danisco US Inc.的非遗传修饰的青霉菌菌株LZC35制备EC 3.2.1.4)。纤维素酶旨在用于蒸馏醇生产,烘焙和酿造过程。由于通过蒸馏除去除了总有机固体(TOS)的残留量,因此仅计算饮食暴露以烘焙和酿造过程。基于所提出的最大使用水平,估计食品酶-TO的膳食暴露于每天高达0.416mg TOS / kg体重(BW)。基因毒性测试没有提高安全问题。通过在大鼠中重复剂量的90天口服毒性研究评估全身毒性。该专利面板鉴定了每天84mg TOS / kg BW的未观察到的不良影响水平,测试最高的剂量,其与估计的膳食曝光相比,导致暴露的裕度至少为200.氨基酸序列的相似性对已知过敏原的食物酶进行了搜查,发现没有匹配。小组认为,在预期的使用条件下,不能排除膳食暴露的过敏性致敏和闪闪发光反应的风险,但可能性被认为是低的。基于所提供的数据,小组得出结论,该食品酶不会在预期使用条件下产生安全问题。
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