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Contaminated liquid nitrogen vapour as a risk factor in pathogen transfer

机译:液氮蒸气污染是病原体转移的危险因素

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Liquid nitrogen in storage containers will gather particulate matter from the atmosphere, or the surfaces of containers placed into it, with time. Some of these accumulating particles may be pathogenic organisms and it can be demonstrated that their viability may be conserved by immersion in the liquid nitrogen. This contamination constitutes a risk to the status of stored samples that can, largely, be avoided by the use of appropriate techniques for sealing sample containers and sterilizing their outer surfaces. The present study uses fungal spores and organic crystals to demonstrate that such particles contained in liquid nitrogen are released back into the environment when nitrogen vapour cools programmable freezers or dry shippers. This demonstrates that storage in the vapour phase above liquid nitrogen still carries a real risk of sample, or facility, contamination. Regardless of the safety of the stored sample, this is a potential source of cross-contamination between repositories or experimental sites, both locally and internationally, that could have serious consequences in clinical and agricultural situations. This study provides evidence to suggest that this possibility, as yet unquantified, should be included in risk analysis of storage protocols for reproductive materials. The risk becomes diverse when, for example, semen and embryos are frozen at an agricultural site and the dry shipper can co-transport spores of contaminating crop plant pathogens to the destination site.
机译:随着时间的流逝,存储容器中的液氮会从大气或放置在其中的容器表面收集颗粒物。这些积聚的颗粒中的一些可能是病原性生物,并且可以证明通过浸入液氮中可以保留它们的生存力。这种污染构成了对所存储样品状态的威胁,可以通过使用适当的技术来密封样品容器并对其外表面进行消毒,从而在很大程度上避免这种污染。本研究使用真菌孢子和有机晶体来证明,当氮气蒸气冷却可编程冷冻机或干货船时,液氮中包含的此类颗粒会释放回环境中。这表明在液氮上方的气相中存储仍然会带来样品或设施被污染的真实风险。无论存储样品的安全性如何,这都是本地和国际存储库或实验站点之间交叉污染的潜在来源,可能在临床和农业环境中产生严重后果。这项研究提供了证据表明,这种可能性(尚未量化)应包括在生殖材料存储方案的风险分析中。例如,当精液和胚胎在农业场所被冷冻,而干燥的托运人可以将污染农作物病原体的孢子共同运输到目的地时,风险就会变得多样化。

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