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丙烯酰胺毒性对水生动物的影响及其缓解方法:最新综述。

Acrylamide toxicity in aquatic animals and its mitigation approaches: an updated overview.

机构信息

Department of Animal Production, Faculty of Agriculture, Zagazig University, Zagazig, 44519, Egypt.

Fish Biology and Ecology Department, Central Laboratory for Aquaculture Research (CLAR), Abbassa 44661, Agriculture Research Center, Giza, Egypt.

出版信息

Environ Sci Pollut Res Int. 2023 Nov;30(53):113297-113312. doi: 10.1007/s11356-023-30437-4. Epub 2023 Oct 23.

Abstract

Acrylamide (ACR) is widely applied in various industrial activities, as well as in the water purification process. Furthermore, ACR is synthesized naturally in some starchy grains exposed to high temperatures for an extended time during the cooking process. Because of its widespread industrial usage, ACR might be released into water stream sources. Also, ACR poses a high risk of contaminated surface and ground-water resources due to its high solubility and mobility in water. Furthermore, animal studies have indicated that ACR exposure may cause cancer (in many organs such as lung, prostate, uterus, and pancreas), genetic damage (in both somatic and germ cells), and severe effects on reproduction and development. Recently, numerous studies have shown that ACR has a mild acute cytotoxic impact on aquatic species, particularly during early life stages. Besides, wide-spectrum usage of ACR in many industrial activities presented higher environmental risks as well as major hazards to consumer health. This literature was designed to include all potential and accessible reports on ACR toxicity related with aquatic species. The Preferred Reporting Items for Systematic Reviews were applied to evaluate the risk effects of ACR on aquatic organisms, the ACR sub-lethal concentration in the ecosystem, and the possible protective benefits of various feed additives against ACR toxicity in fish. The major findings are summarized in Tables 2 and 3. The primary aim of this literature was to specify the hazards of ACR toxicity related with fish welfare and possible suggested strategies to reduce its risks.

摘要

丙烯酰胺(ACR)广泛应用于各种工业活动中,也用于水净化过程。此外,ACR 在一些淀粉类谷物中自然合成,这些谷物在烹饪过程中长时间暴露在高温下。由于其广泛的工业用途,ACR 可能会释放到水流源中。此外,由于其在水中的高溶解度和高迁移性,ACR 对受污染的地表水和地下水资源构成了高风险。此外,动物研究表明,ACR 暴露可能会导致癌症(在许多器官如肺、前列腺、子宫和胰腺)、遗传损伤(在体细胞和生殖细胞中),以及对生殖和发育的严重影响。最近,许多研究表明,ACR 对水生生物具有轻度急性细胞毒性影响,尤其是在早期生命阶段。此外,ACR 在许多工业活动中的广泛应用带来了更高的环境风险和对消费者健康的重大危害。本文献旨在包括所有与水生物种相关的 ACR 毒性的潜在和可获得的报告。系统评价的首选报告项目用于评估 ACR 对水生生物的风险影响、生态系统中的 ACR 亚致死浓度以及各种饲料添加剂对鱼类 ACR 毒性的可能保护作用。主要发现总结在表 2 和 3 中。本文献的主要目的是确定与鱼类福利相关的 ACR 毒性的危害,并提出可能的建议策略来降低其风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8dd9/10721689/8b2eaf810d16/11356_2023_30437_Fig1_HTML.jpg

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