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镉暴露鱼类中镉生物累积的综述。

Review of Cadmium Bioaccumulation in Fish Exposed to Cadmium.

作者信息

Lee Ju-Wook, Jo A-Hyun, Kang Yue-Jai, Lee Dain, Choi Cheol-Young, Kang Ju-Chan, Kim Jun-Hwan

机构信息

Incheon Regional Office of National Fishery Products Quality Management Service, Incheon 22346, Republic of Korea.

Department of Marine Life Science, Jeju National University, Jeju 63243, Republic of Korea.

出版信息

Toxics. 2024 Dec 25;13(1):7. doi: 10.3390/toxics13010007.

Abstract

Cadmium (Cd) is a highly toxic substance in the aquatic ecosystem, which can represent a high risk to fish. Fish are exposed to heavy metals through waterborne and dietary pathways, some of which are absorbed by the body and can accumulate in specific tissues without being eliminated. The accumulation varies depending on several factors such as dose, exposure route, exposure time, metal types, and biological status of the fish, and environmental parameters such as DO, salinity, pH, and metal speciation. As Cd speciation occurs in the water, the amount accumulated in the fish can vary, and consuming Cd-accumulated fish can pose a risk to human health. Cd introduced into the body of fish can directly affect blood properties through the circulatory system. Cd introduced into the circulatory system of fish can reach all tissues through the blood flow, and the accumulation of specific tissues is different depending on the blood flow by the energy and oxygen demand of each tissue. Therefore, this review aimed to determine the toxic effects of Cd exposure in fish and identify indicators to assess the extent of Cd bioaccumulation toxicity in fish induced by Cd exposure.

摘要

镉(Cd)是水生生态系统中的一种剧毒物质,对鱼类具有很高的风险。鱼类通过水体和饮食途径接触重金属,其中一些会被身体吸收,并在特定组织中积累而无法消除。积累量因多种因素而异,如剂量、暴露途径、暴露时间、金属种类、鱼类的生物学状态,以及环境参数如溶解氧(DO)、盐度、pH值和金属形态。由于镉在水中会发生形态变化,鱼类体内积累的量也会有所不同,食用积累了镉的鱼类会对人类健康构成风险。进入鱼体的镉可通过循环系统直接影响血液特性。进入鱼类循环系统的镉可通过血流到达所有组织,特定组织的积累情况因各组织的能量和氧气需求导致的血流情况而异。因此,本综述旨在确定镉暴露对鱼类的毒性作用,并确定评估镉暴露诱导的鱼类镉生物累积毒性程度的指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb16/11769446/17900cff3f00/toxics-13-00007-g001.jpg

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