首页> 外文期刊>Journal of food protection >Effects of Modified Atmosphere Packaging on Toxin Production by Clostridium botulinum in Raw Aquacultured Summer Flounder Fillets (Paralichthys dentatus)
【24h】

Effects of Modified Atmosphere Packaging on Toxin Production by Clostridium botulinum in Raw Aquacultured Summer Flounder Fillets (Paralichthys dentatus)

机译:气调包装对生水产夏季比目鱼肉片中肉毒梭菌产生毒素的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Packaging fishery products under vacuum atmosphere packaging (VAC) and modified atmosphere packaging (MAP) conditions can significantly extend the shelf life of raw, refrigerated fish products. There is considerable commercial interest in marketing VAC and MAP refrigerated (never frozen) raw fish fillets. The objective of this study was to determine if Clostridium botulinum toxin development precedes microbiological spoilage in raw, refrigerated flounder fillets. Aquacultured flounder (Paralichthys dentatus) individual fish fillets either were packed with a film having an oxygen transmission rate (OTR) of 3,000 cm~3 m~(-2) 24 h~(-1) at 22.8℃ or were vacuum packaged or packaged under 100% CO_2 with a film having an OTR of 7.8 cm~3 m~(-2) 24 h~(-1) at 21.1℃ and were stored at 4 and 10℃. Samples were analyzed by aerobic plate count (APC) for spoilage and qualitatively for botulinum toxin with a mouse bioassay. The results demonstrate that flounder fillets (4℃) packaged with a film having an OTR of 3,000 were microbiologically spoiled (APC, > 10~7 CFU/g) on day 15, but there was no toxin formation, even after 35 days of storage. However, at 10℃, toxin production occurred (day 8), but it was after microbial spoilage and absolute sensory rejection (day 5). Vacuum-packaged fillets and 100% CO_2 fillets (4℃) packaged with a film having an OTR of 7.8 were toxic on days 20 and 25, respectively, with microbial spoilage (APC, >10~7 CFU/g) not occurring during the tested storage period (i.e., > 35 days). At 10℃, in vacuum-packaged flounder, toxin formation coincided with microbiological spoilage (days 8 to 9). In the 100% CO_2-packaged fillets, toxin formation occurred on day 9, with microbial spoilage occurring on day 15. This study indicates that films with an OTR of 3,000 can be used for refrigerated fish fillets and still maintain the safety of the product.
机译:在真空气氛包装(VAC)和气调包装(MAP)的条件下包装渔业产品可以显着延长生冷鱼产品的保质期。在销售VAC和MAP冷藏(从未冷冻)生鱼片时,有相当大的商业兴趣。这项研究的目的是确定肉毒梭菌毒素的发展是否先于原始的冷藏比目鱼片中的微生物变质。水产养殖比目鱼(Paralichthys dentatus)单个鱼片或在22.8℃上用透氧率(OTR)为3,000 cm〜3 m〜(-2)24 h〜(-1)的薄膜包装或真空包装或包装在100%CO_2的条件下,薄膜的OTR为7.8 cm〜3 m〜(-2)在24 h〜(-1)下在21.1℃下分别储存在4和10℃下。通过需氧板计数(APC)分析样品的变质,并通过小鼠生物测定定性分析肉毒杆菌毒素。结果表明,包装有OTR为3,000的薄膜的比目鱼柳(4℃)在第15天被微生物破坏(APC,> 10〜7 CFU / g),但即使在储存35天后也没有毒素形成。然而,在10℃时,会产生毒素(第8天),但这是在微生物变质和绝对感觉排斥后(第5天)产生的。真空包装的鱼片和OTR为7.8的薄膜包装的100%CO_2鱼片(4℃)分别在第20天和第25天有毒,在此过程中不会发生微生物变质(APC,> 10〜7 CFU / g)。测试的存储期限(即> 35天)。在10℃,在真空包装的比目鱼中,毒素形成与微生物变质同时发生(第8至9天)。在100%CO_2包装的鱼片中,毒素形成发生在第9天,而微生物变质发生在第15天。这项研究表明,OTR为3,000的薄膜可以用于冷藏鱼片,并且仍然可以保持产品的安全性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号