Pharmaceuticals and personal care products (PPCPs) in surface water and fish from three Asian countries: Species-specific bioaccumulation and potential ecological risks

生物累积 环境化学 生物浓缩 三氯卡班 药品和个人护理产品的环境影响 化学 大型水蚤 地表水 生物利用度 罗非鱼 环境科学 三氯生 污染 生态学 毒性 生物 渔业 环境工程 医学 生物信息学 有机化学 病理
作者
Kazusa Nozaki,Rumi Tanoue,Tatsuya Kunisue,Nguyen Minh Tue,Sadahiko Fujii,Nao Sudo,Tomohiko Isobe,Kei Nakayama,Agus Sudaryanto,Annamalai Subramanian,Keshav A. Bulbule,Peethambaram Parthasarathy,Le Huu Tuyến,Pham Hung Viet,Masakazu Kondo,Shinsuke Tanabe,Kei Nomiyama
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:866: 161258-161258 被引量:51
标识
DOI:10.1016/j.scitotenv.2022.161258
摘要

In Asian developing countries, undeveloped and ineffective sewer systems are causing surface water pollution by a lot of contaminants, especially pharmaceuticals and personal care products (PPCPs). Therefore, the risks for freshwater fauna need to be assessed. The present study aimed at: i) elucidating the contamination status; ii) evaluating the bioaccumulation; and iii) assessing the potential risks of PPCP residues in surface water and freshwater fish from three Asian countries. We measured 43 PPCPs in the plasma of several fish species as well as ambient water samples collected from India (Chennai and Bengaluru), Indonesia (Jakarta and Tangerang), and Vietnam (Hanoi and Hoa Binh). In addition, the validity of the existing fish blood-water partitioning model based solely on the lipophilicity of chemicals is assessed for ionizable and readily metabolizable PPCPs. When comparing bioaccumulation factors calculated from the PPCP concentrations measured in the fish and water (BAFmeasured) with bioconcentration factors predicted from their pH-dependent octanol-water partition coefficient (BCFpredicted), close values (within an order of magnitude) were observed for 58-91 % of the detected compounds. Nevertheless, up to 110 times higher plasma BAFmeasured than the BCFpredicted were found for the antihistamine chlorpheniramine in tilapia but not in other fish species. The plasma BAFmeasured values of the compound were significantly different in the three fish species (tilapia > carp > catfish), possibly due to species-specific differences in toxicokinetics (e.g., plasma protein binding and hepatic metabolism). Results of potential risk evaluation based on the PPCP concentrations measured in the fish plasma suggested that chlorpheniramine, triclosan, haloperidol, triclocarban, diclofenac, and diphenhydramine can pose potential adverse effects on wild fish. Results of potential risk evaluation based on the PPCP concentrations measured in the surface water indicated high ecological risks of carbamazepine, sulfamethoxazole, erythromycin, and triclosan on Asian freshwater ecosystems.
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