Departamento de Biologia & CESAM, Universidade de Aveiro, Portugal.
Departamento de Biologia & CESAM, Universidade de Aveiro, Portugal.
J Hazard Mater. 2021 Jun 15;412:125028. doi: 10.1016/j.jhazmat.2020.125028. Epub 2021 Jan 10.
Cyclophosphamide (CP) and Cisplatin (CDDP) are antineoplastic drugs widely used in the treatment of neoplastic diseases that have been detected in the aquatic environment. This review summarizes the current knowledge on the presence in the aquatic environment of these two drugs and their effects on freshwater and marine invertebrates, which includes good model species in ecotoxicology and risk assessment programs. The consumption levels, occurrence in freshwater and marine ecosystems, and the impacts exerted on aquatic organisms, even at low concentrations, justifies this review and the selection of these two drugs. Both pharmaceuticals were detected in different aquatic environments, with concentrations ranging from ng L up to 687.0 μg L (CP) and 250 μg L (CDDP). The available studies showed that CP and CDDP induce individual and sub-individual impacts on aquatic invertebrate species. The most common effects reported were changes in the reproductive function, oxidative stress, genotoxicity, cytotoxicity and neurotoxicity. The literature used in this review supports the need to increase monitoring studies concerning the occurrence of antineoplastic drugs in the aquatic environment since negative effects have been reported even at trace concentrations (ng L). Furthermore, marine ecosystems should be considered as a priority since less is known on the occurrence and effects of antineoplastic drugs in this environment comparing to freshwater ecosystems.
环磷酰胺(CP)和顺铂(CDDP)是广泛用于治疗肿瘤疾病的抗肿瘤药物,已在水生环境中检测到。本综述总结了这两种药物在水生环境中的存在及其对淡水和海洋无脊椎动物的影响的现有知识,其中包括生态毒理学和风险评估计划中的良好模式物种。这两种药物的消费水平、在淡水和海洋生态系统中的存在以及对水生生物的影响,即使在低浓度下,也证明了本综述和这两种药物的选择是合理的。这两种药物都在不同的水生环境中被检测到,浓度范围从 ng/L 到 687.0μg/L(CP)和 250μg/L(CDDP)。现有研究表明,CP 和 CDDP 对水生无脊椎动物物种个体和亚个体产生影响。报道的最常见影响是生殖功能改变、氧化应激、遗传毒性、细胞毒性和神经毒性。本综述中使用的文献支持增加监测研究的必要性,以了解抗肿瘤药物在水生环境中的存在,因为即使在痕量浓度(ng/L)下也报告了负面效应。此外,由于与淡水生态系统相比,海洋生态系统中抗肿瘤药物的存在和影响知之甚少,因此应优先考虑海洋生态系统。