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Effects of high pressure processing on hatching of eggs of the zoonotic rat tapeworm Hymenolepis diminuta

机译:高压处理对人畜共患的tape虫Hymenolepis diminuta卵孵化的影响

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High hydrostatic pressure processing (HPP) is an effective non-thermal treatment to remove pathogens from a variety of food and food products. It has been extensively examined using prokaryotic organisms but has had limited study on eukaryotic organisms. Treatment using HPP has been shown to be effective in inactivating nematode larvae in food and Ascaris suum eggs. Nothing is known on the efficacy of HPP on tapeworm cysts or eggs. Eggs of important zoonotic tapeworms including Echinococcus and Taenia spp. can potentially contaminate water and food intended for human consumption. The present study examined the efficacy of HPP on the viability of Hymenolepis diminuta eggs. Efficacy of HPP treatment was measured using an egg hatch assay in two experiments. One thousand unhatched H. diminuta eggs in Hanks balanced salt solution were packaged in sealable bags and exposed to 100-600 megapascals (MPa; 1 MPa = 10 atm = 147 psi) for 60s in a commercial HPP unit. Positive (no HPP) and negative (No HPP but frozen/thawed) controls were examined in each experiment. None of the HPP untreated and frozen eggs (negative controls) were able to hatch or exclude trypan blue when placed in the hatching solution in experiment 1 or 2. HPP untreated and nonfrozen eggs (positive controls) hatched and excluded trypan blue; 75% were positive in experiment 1 and 80% were positive in experiment 2. No hatched eggs were observed when they were exposed to 300-600 MPa for 60s. Treatment at 400 MPa and above caused rupturing of the oncosphere. Results from this study indicate that HPP is a possible method to inactivate tapeworm eggs and that the susceptibility of tapeworm eggs to HPP is similar to or greater than that of nematode eggs or tissue larvae
机译:高静水压处理(HPP)是一种有效的非热处理方法,可从多种食品和食品中去除病原体。已经使用原核生物对其进行了广泛的检查,但是对真核生物的研究有限。业已证明,使用HPP处理可有效灭活食品和A虫卵中的线虫幼虫。 HPP对tape虫的囊肿或卵的功效尚无定论。重要的人畜共患tape虫卵,包括棘球oc虫和Ta虫。可能会污染供人类食用的水和食物。本研究检查了HPP对短小Hymenolepis diminuta卵生存力的功效。在两个实验中,使用卵孵化法测量了HPP治疗的功效。将一千个未孵化的汉克斯(Hanks)平衡盐溶液中的H. diminuta卵包装在可密封的袋子中,并在商业HPP装置中暴露于100-600兆帕(MPa; 1 MPa = 10 atm = 147 psi)下60 s。在每个实验中检查阳性对照(无HPP)和阴性对照(无HPP,但冷冻/解冻)。在实验1或2的孵化溶液中放置HPP未经处理和冷冻的鸡蛋(阴性对照)均不能孵化或排除锥虫蓝。未经处理和未经冷冻的HPP鸡蛋(阳性对照)被孵化并排除了锥虫蓝。实验1的阳性率为75%,实验2的阳性率为80%。将卵暴露于300-600 MPa 60s时未观察到孵化的卵​​。在400 MPa及以上的压力下处理会导致溶栓层破裂。这项研究的结果表明,HPP是灭活tape虫卵的一种可行方法,tape虫卵对HPP的敏感性与线虫卵或组织幼虫的敏感性相似或更高。

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