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Effect of Fill Temperature on Clostridium botulinum Type A Toxin Activity during the Hot Filling of Juice Bottles

机译:灌装温度对果汁瓶热灌装过程中肉毒梭菌A型毒素活性的影响

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摘要

The potential threat of terrorist attacks against the United States food supply using neurotoxin produced by Clostridium botulinum (BoNT) has resulted in the need for studying the effect of various food process operations on the bioavailability of this toxin. The objective of this study was to evaluate C. botulinum type A neurotoxin bioavailability after a simulated hot fill juice bottling operation. C. botulinum type A acid mud toxin (~10~6 mouse lethal dose [MLD_(50)]/ml) was deposited into juice bottles at an experimentally determined fastest cooling spot. Bottles (12 or 20 oz [355 and 592 ml]) were filled with either apple juice or an orange drink, at 80 or 85℃, in either upright or inverted orientations. Toxicity of the juice was evaluated as a function of holding time (1 to 2 min) by the mouse bioassay. The fastest cooling point in the upright orientation was determined to be at a bottle's bottom rim. In the inverted orientation, the fastest cooling point was in the bottle cap region. With respect to these two points, the upright bottle cooled faster than the inverted bottle, which was reflected in a higher inactivation of BoNT in the latter. For the orange drink (pH 2.9) toxicity was reduced by 0.5 × 10~6 MLD_(50)/ml to a nondetectable level after 1 min in all bottle sizes, orientations, and temperatures as measured by the mouse bioassay. This indicates that there was at least a 0.5 × 10~6 MLD_(50)/ml reduction in activity. Inactivation in apple juice (pH 4.0), to the same degree as in the orange drink, was found only for the inverted orientation at 85 ℃. Complete inactivation in apple juice for all conditions was found at a lower added toxin level of 0.25 × 10~5 MLD_(50)/ml. In general, bottle inversion and filling at 85℃ provided complete inactivation of BoNT to the 0.5 × 106 MLD_(50)/ml level. All experiments resulted in the inactivation of 2.5 × 10~4 MLD_(50)/ml of BoNT regardless of juice type, fill temperature, or bottle orientation and size.
机译:使用肉毒梭菌(BoNT)产生的神经毒素对美国食品供应进行恐怖袭击的潜在威胁导致需要研究各种食品加工操作对该毒素的生物利用度的影响。这项研究的目的是评估模拟热灌装果汁装瓶后的A型肉毒梭菌神经毒素的生物利用度。 A型肉毒梭菌酸性泥毒素(〜10〜6小鼠致死剂量[MLD_(50)] / ml)以实验确定的最快冷却点沉积在果汁瓶中。在80或85℃的瓶子(12或20盎司[355和592毫升])中分别装满苹果汁或橙汁,直立或倒置。通过小鼠生物测定法评估果汁的毒性与保持时间(1-2分钟)的关系。垂直方向上最快的冷却点被确定为位于瓶子的底部边缘。在倒置方向上,最快的冷却点在瓶盖区域。关于这两个方面,直立瓶的冷却速度比倒置瓶快,这反映在后者中BoNT的失活程度更高。对于橙饮料(pH 2.9),通过小鼠生物测定法在所有瓶型,方向和温度下1分钟后,毒性都降低了0.5×10〜6 MLD_(50)/ ml,降至不可检测的水平。这表明活性至少降低了0.5×10〜6 MLD_(50)/ ml。苹果汁(pH 4.0)中的失活程度与橙汁中的失活程度相同,只有在85℃时才发生倒置。在所有条件下,苹果汁中的完全失活均以较低的添加毒素水平0.25×10〜5 MLD_(50)/ ml进行。一般而言,在85℃进行瓶倒置和灌装可使BoNT完全失活至0.5×106 MLD_(50)/ ml的水平。所有实验均导致BoNT的2.5×10〜4 MLD_(50)/ ml失活,而与果汁类型,灌装温度或瓶的方向和大小无关。

著录项

  • 来源
    《Journal of food protection》 |2015年第8期|1506-1511|共6页
  • 作者单位

    U.S. Food and Drug Administration, 6502 South Archer Road, Bedford Park, Illinois 60501, USA,Institute for Food Safety and Health (IFSH), 6502 South Archer Road, Bedford Park, Illinois 60501, USA;

    U.S. Food and Drug Administration, 6502 South Archer Road, Bedford Park, Illinois 60501, USA,Institute for Food Safety and Health (IFSH), 6502 South Archer Road, Bedford Park, Illinois 60501, USA;

    Institute for Food Safety and Health (IFSH), 6502 South Archer Road, Bedford Park, Illinois 60501, USA,Illinois Institute of Technology (IIT), 6502 South Archer Road, Bedford Park, Illinois 60501, USA,Illinois Department of Public Health (IFPH), 2121 Taylor Street, Chicago, IL 60612, USA;

    U.S. Food and Drug Administration, 6502 South Archer Road, Bedford Park, Illinois 60501, USA,Institute for Food Safety and Health (IFSH), 6502 South Archer Road, Bedford Park, Illinois 60501, USA;

    U.S. Food and Drug Administration, 6502 South Archer Road, Bedford Park, Illinois 60501, USA,Institute for Food Safety and Health (IFSH), 6502 South Archer Road, Bedford Park, Illinois 60501, USA;

    U.S. Food and Drug Administration, 6502 South Archer Road, Bedford Park, Illinois 60501, USA,Institute for Food Safety and Health (IFSH), 6502 South Archer Road, Bedford Park, Illinois 60501, USA,National Center for Food Protection and Defense, Learning and Environmental Sciences Building, University of Minnesota, 1954 Buford Avenue, St. Paul, MN 55108, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 23:25:02

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