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鉴于全球变暖,抗精神病药氯丙嗪对浮游动物生存、繁殖和种群增长(而非神经递质)的抑制作用。

Inhibitory Effects of Antipsychotic Chlorpromazine on the Survival, Reproduction and Population Growth Other Than Neurotransmitters of Zooplankton in Light of Global Warming.

机构信息

School of Ecology and Environment, Anhui Normal University, Wuhu 241002, China.

Collaborative Innovation Center of Recovery and Reconstruction of Degraded Ecosystem in Wanjiang Basin Co-Founded by Anhui Province and Ministry of Education, Wuhu 241002, China.

出版信息

Int J Environ Res Public Health. 2022 Dec 2;19(23):16167. doi: 10.3390/ijerph192316167.

Abstract

Global warming and environmental pollution have created a unique combination of abiotic and biotic stresses to zooplankton. However, little information is available on the effects of antipsychotic drugs commonly used to treat psychosis, such as chlorpromazine (CPZ), on non-target aquatic organisms in light of global warming. This study investigated how dopamine concentrations (DAC), acute toxicity and chronic toxicity of Brachionus calyciflorus changed in response to CPZ and gradually increasing temperatures. The results showed that the concentration range of rotifer DAC was 1.06~2.51 ng/g. At 18, 25 and 32 °C, the 24 h LC50 was 1.795, 1.242 and 0.833 mg/L, respectively. Compared to the control, exposure to CPZ significantly decreased life expectancy at hatching, the net reproduction rate, generation time, population growth rate and dopamine concentration of B. calyciflorus in all three temperatures (p < 0.05). The toxicity of CPZ to rotifers was increased by high temperature. These findings indicated that CPZ is highly toxic to rotifers, displaying high ecological risks to aquatic ecosystems.

摘要

全球变暖和环境污染给浮游动物带来了独特的非生物和生物胁迫组合。然而,鉴于全球变暖,关于常用于治疗精神病的抗精神病药物(如氯丙嗪)对非目标水生生物的影响的信息却很少。本研究调查了多巴胺浓度(DAC)、急性毒性和慢性毒性桡足类的变化,以响应 CPZ 和逐渐升高的温度。结果表明,轮虫 DAC 的浓度范围为 1.06~2.51ng/g。在 18、25 和 32°C 下,24 小时 LC50 分别为 1.795、1.242 和 0.833mg/L。与对照组相比,暴露于 CPZ 显著降低了三种温度下的孵化寿命、净生殖率、世代时间、种群增长率和 B. calyciflorus 的多巴胺浓度(p<0.05)。高温会增加 CPZ 对桡足类的毒性。这些发现表明 CPZ 对桡足类具有高度毒性,对水生生态系统具有很高的生态风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6558/9736287/16119e5b848a/ijerph-19-16167-g001.jpg

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