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批判性综述:房屋卫生管道材料促进或抑制军团菌及其他机会致病菌生长的倾向

Critical Review: Propensity of Premise Plumbing Pipe Materials to Enhance or Diminish Growth of and Other Opportunistic Pathogens.

作者信息

Cullom Abraham C, Martin Rebekah L, Song Yang, Williams Krista, Williams Amanda, Pruden Amy, Edwards Marc A

机构信息

Civil and Environmental Engineering, Virginia Tech, 1145 Perry St., 418 Durham Hall, Blacksburg, VA 24061, USA.

Civil and Environmental Engineering, Virginia Military Institute, Lexington, VA 24450, USA.

出版信息

Pathogens. 2020 Nov 17;9(11):957. doi: 10.3390/pathogens9110957.

Abstract

Growth of and other opportunistic pathogens (OPs) in drinking water premise plumbing poses an increasing public health concern. Premise plumbing is constructed of a variety of materials, creating complex environments that vary chemically, microbiologically, spatially, and temporally in a manner likely to influence survival and growth of OPs. Here we systematically review the literature to critically examine the varied effects of common metallic (copper, iron) and plastic (PVC, cross-linked polyethylene (PEX)) pipe materials on factors influencing OP growth in drinking water, including nutrient availability, disinfectant levels, and the composition of the broader microbiome. Plastic pipes can leach organic carbon, but demonstrate a lower disinfectant demand and fewer water chemistry interactions. Iron pipes may provide OPs with nutrients directly or indirectly, exhibiting a high disinfectant demand and potential to form scales with high surface areas suitable for biofilm colonization. While copper pipes are known for their antimicrobial properties, evidence of their efficacy for OP control is inconsistent. Under some circumstances, copper's interactions with premise plumbing water chemistry and resident microbes can encourage growth of OPs. Plumbing design, configuration, and operation can be manipulated to control such interactions and health outcomes. Influences of pipe materials on OP physiology should also be considered, including the possibility of influencing virulence and antibiotic resistance. In conclusion, all known pipe materials have a potential to either stimulate or inhibit OP growth, depending on the circumstances. This review delineates some of these circumstances and informs future research and guidance towards effective deployment of pipe materials for control of OPs.

摘要

饮用水管道系统中 及其他机会性病原体(OPs)的生长对公共卫生构成了日益严重的威胁。管道系统由多种材料构成,形成了复杂的环境,这些环境在化学、微生物、空间和时间上都有所不同,很可能会影响机会性病原体的生存和生长。在此,我们系统地回顾了文献,以批判性地研究常见金属(铜、铁)和塑料(聚氯乙烯、交联聚乙烯(PEX))管材对影响饮用水中机会性病原体生长的因素的各种影响,包括营养物质的可利用性、消毒剂水平以及更广泛的微生物群落组成。塑料管材会沥出有机碳,但消毒剂需求较低,与水的化学相互作用较少。铁管可能直接或间接地为机会性病原体提供营养物质,消毒剂需求高,且有可能形成具有高表面积的水垢,适合生物膜定植。虽然铜管以其抗菌特性而闻名,但其控制机会性病原体功效的证据并不一致。在某些情况下,铜与管道系统水化学和常驻微生物的相互作用会促进机会性病原体的生长。可以通过操纵管道设计、配置和运行来控制这种相互作用和健康结果。还应考虑管材对机会性病原体生理学的影响,包括影响其毒力和抗生素耐药性的可能性。总之,根据具体情况,所有已知的管材都有可能刺激或抑制机会性病原体的生长。本综述阐述了其中一些情况,并为未来关于有效部署管材以控制机会性病原体的研究和指导提供了信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/563b/7698398/0645344b6ed0/pathogens-09-00957-g001.jpg

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