Related Experiment Video
Updated: Jan 30, 2026

Resurrection of Dormant Daphnia magna: Protocol and Applications
Published on: January 19, 2018
Mitigating risk of tire wear particles in Daphnia pulex: In silico approaches
Xixi Li1, Yuan Niu2, Zuning Zhang3
1State Key Laboratory of Environmental Criteria and Risk Assessment, National Engineering Laboratory for Lake Pollution Control and Ecological Restoration, State Environmental Protection Key Laboratory for Lake Pollution Control, State Environmental Protection Key Laboratory of Ecological Effect and Risk Assessment of Chemicals, Chinese Research Academy of Environmental Sciences, Beijing, 100012, China; Northern Region Persistent Organic Pollution Control (NRPOP) Laboratory, Faculty of Engineering and Applied Science, Memorial University, St. John's, NL, A1B 3X5, Canada.
Abstract:
Tire wear particles (TWPs), commonly detected emerging contaminants in aquatic environments, have recently attracted global attention. Therefore, the toxicity and potential mitigation of TWPs in the experimental model species Daphnia pulex (D. pulex) were evaluated using molecular docking and molecular dynamic simulation methods. The binding energy of styrene-butadiene rubber, along with tire additives (i.e., antioxidants, flame retardants, heat stabilizers, light stabilizers and lubricants) and arginine kinase protein was used as an indicator of ecological risk of TWPs on D. pulex. Ninety-six proportioning schemes for styrene-butadiene rubber tire microplastics were generated, and Formulation No. 38 was identified as the one with the minimum ecological risk, corresponding to a binding energy value of -46.486 kJ/mol. Based on a full factorial design, the third-order interaction effect was determined to account for the most substantial proportion, relative to both the main effects and second-order interaction effects. Consequently, the competitive or synergistic effects governing the molecular docking of tire additives cannot be neglected in subsequent analyses. Furthermore, the applicability of the developed tire proportioning schemes was validated using the jumping frequency of D. pulex-a key ecotoxicological endpoint. This finding indicates that the tire formulations screened in the present study exhibit a certain degree of representativeness for mitigating risks to the aquatic ecological environment. This is a novel ecological risk evaluation method that can be effectively used to reduce the ecological risk of tire additives in aquatic environments.
Related Concept Videos
Relative Risk
Subatomic Particles
The Nucleosome Core Particle
The paradox
Nucleosomes, paradoxically, perform two opposite functions simultaneously. On the one hand, their main responsibility is to protect the delicate DNA strands from physical damage and help achieve a higher compaction ratio. While on the other hand, they must allow polymerase enzymes to access DNA...
The Nucleosome Core Particle
Nucleosomes, paradoxically, perform two opposite functions simultaneously. On the one hand, their primary aim is to protect the delicate DNA strands from physical damage and help achieve a higher compaction ratio. On the other hand, they must allow polymerase enzymes to access histone-bound DNA during...
Factors Affecting the Risk of Infection
The integrity and count of the white blood cells help the body resist pathogens and fight infection. When impaired, it reduces the body's resistance to pathogens. The acidic pH levels of the gastrointestinal, genitourinary tracts, and skin...
Frustration and Conflict: Approach-Approach, Approach-Avoidance
One common type of conflict is the Approach–Approach Conflict. In this case, a person faces two desirable...

