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Published on: April 14, 2012
Dual drive acute lethal toxicity of methylene blue to Daphnia magna by polystyrene microplastics and light
Xiangmei Xiang1, Juanjuan Zhou2, Shaochen Lin3
1Guangdong Key Laboratory of Environmental Pollution and Health, School of Environment, Jinan University, Guangzhou 510632, China.
Abstract:
Microplastics (MPs) can adsorb and influence the toxicity of traditional pollutants significantly. Although the complex toxicity of MPs and molecular pollutants were frequently reported, rare work has been done on the influence of MPs on the phototoxicity of photosensitive pollutants under light illumination condition. Herein, polystyrene microplastics (PS) (~1 μm in diameter, 5.0 mg/L) was used as a model MP to investigate its influence on the phototoxicity of a soluble blue dye, methylene blue (MB) using Daphnia magna as a model organism. The results indicate that PS could adsorb MB effectively and quickly, thus led to concentrated MB on PS/water interface. D. magna ingested MB-adsorbed PS very quickly within tens of minutes. Although MB or PS alone led to negligible lethal phototoxicity to D. magna, PS significantly enhanced the lethal phototoxicity of MB (0.25 mg/L) to D. magna after light illumination (10 h) with the survival rate decreased by 63.3 % compared with the control in the dark. Further, the phototoxicity of MB was found positively consistent with PS concentration from 0.50 mg/L to 7.50 mg/L. The singlet oxygen fluorescence assay indicates that the presence of PS did not increase the total amount of singlet oxygen in the aquatic environment but increased the local concentration in the gut area via non-selective ingestion of D. magna. High level singlet oxygen generated in the gut might possibly be the main reason that led to the massive death of D. magna. Surface adsorption of photosensitive pollutants may transform inert MPs into persistent solid sources of singlet oxygen production and become a new potential lethal threat to aquatic small organisms and ecological equilibrium. This kind of MPs and light dual drive phototoxicity of photosensitive pollutants needs to paid more attention in understanding the uncertain ecological risk of MPs.
Insights
Polystyrene microplastics (PS) significantly increase the lethal phototoxicity of methylene blue (MB) to Daphnia magna by concentrating MB and enhancing singlet oxygen production in their gut. This highlights a dual-drive threat to aquatic ecosystems.
Area of Science:
- Environmental Science
- Ecotoxicology
- Aquatic Toxicology
Background:
- Microplastics (MPs) can adsorb and alter the toxicity of pollutants.
- The influence of MPs on the phototoxicity of photosensitive pollutants under light is understudied.
Purpose of the Study:
- To investigate how polystyrene microplastics (PS) affect the phototoxicity of methylene blue (MB) to Daphnia magna under light illumination.
- To elucidate the mechanisms behind MP-enhanced phototoxicity.
Main Methods:
- Using polystyrene microplastics (~1 μm) and methylene blue as a model system.
- Exposing Daphnia magna to MB-adsorbed PS under light and dark conditions.
- Quantifying phototoxicity and measuring singlet oxygen production.
Main Results:
- PS effectively adsorbed MB, leading to rapid ingestion by D. magna.
- PS significantly enhanced MB's lethal phototoxicity under light, reducing survival by 63.3%.
- Enhanced phototoxicity correlated positively with PS concentration and was linked to increased localized singlet oxygen in the organism's gut.
Conclusions:
- Microplastic adsorption of photosensitive pollutants can create persistent sources of singlet oxygen.
- This dual-drive phototoxicity poses a significant threat to aquatic organisms and ecological balance.
- Further attention is needed to understand the ecological risks of MPs and light-driven pollutant toxicity.

