Related Experiment Video
Updated: Jan 27, 2026

Accumulation and Distribution of Fluorescent Microplastics in the Early Life Stages of Zebrafish
Published on: July 4, 2021
Insights into the uptake, elimination and accumulation of microplastics in mussel
Beatriz Fernández1, Marina Albentosa1
1Centro Oceanográfico de Murcia, Instituto Español de Oceanografía, IEO, Varadero, 1, 30740, San Pedro del Pinatar, Spain.
Abstract:
The majority of plastics present in the marine environment are microplastics (MPs, <5 mm). Suspension filter feeders are susceptible species to MPs ingestion. Once ingested MPs can be eliminated packed in fecal pellets, or they can be accumulated within tissues, and likely be transferred along the food web. The research on MPs is hampered by the difficulty on their quantification and the lack of standardized methodologies. Indeed, limited information exits about the capacity of marine organisms to ingest, accumulate and eliminate MPs. In this work we investigated the uptake, elimination and accumulation of MPs (irregularly shaped particles of high density polyethylene, ≤22 μm) in mussel. Mussels were exposed to two concentrations of MPs (2 and 4 mm3 l-1), and their uptake, elimination and accumulation in digestive gland was investigated. The results showed that the uptake of MPs increased at the high concentration tested, and that mussels cleared MPs at the same extent than a food item (microalgae) of similar size. Small MPs (2-4 μm) were less efficiently cleared than the larger ones. Large MPs (>10 μm) were faster eliminated than the smaller ones. The global balance showed that after 6 days of depuration mussels eliminated ≈85% of the MPs cleared, and that ≈2-6% of the MPs cleared remained in the digestive gland, essentially those <6 μm. We recorded a long retention time for MPs, contrasting with the lower times assumed to be necessary to empty mussel's gut before quantifying MPs. Our study emphasized the gap of knowledge on the feeding behaviour of mussels in relation to MPs, and the necessity to investigate it in different marine species, and under different exposure scenarios.
Insights
Mussels ingest microplastics (MPs), with smaller particles (<6 μm) retained longer in digestive glands. This study highlights the need for standardized methods to quantify MP accumulation in marine organisms.
Area of Science:
- Marine Biology
- Environmental Science
- Ecotoxicology
Background:
- Microplastics (MPs) are prevalent in marine environments, posing risks to suspension feeders like mussels.
- Ingested MPs can be eliminated, accumulated, or transferred through the food web.
- Quantifying MPs and standardizing methodologies remain significant challenges in marine organism research.
Purpose of the Study:
- To investigate the uptake, elimination, and accumulation of microplastics in mussels.
- To assess the influence of MP concentration and size on mussel's physiological processes.
- To determine the retention time of MPs in mussel tissues.
Main Methods:
- Mussels were exposed to two concentrations of high-density polyethylene MPs (≤22 μm).
- Uptake, elimination, and accumulation in the digestive gland were quantified.
- MP clearance was compared to microalgae of similar size.
Main Results:
- MP uptake increased with higher exposure concentrations.
- Mussels cleared MPs similarly to microalgae; smaller MPs (2-4 μm) were cleared less efficiently.
- Larger MPs (>10 μm) were eliminated faster than smaller ones.
- Approximately 2-6% of cleared MPs, primarily <6 μm, remained in the digestive gland after 6 days.
Conclusions:
- Mussels exhibit long retention times for microplastics, challenging current quantification assumptions.
- Particle size significantly influences MP elimination efficiency in mussels.
- Further research is needed on MP ingestion, accumulation, and elimination across diverse marine species and exposure conditions.
Related Concept Videos
Kinetics of Drug Elimination
Drug clearance depends on the rate of drug elimination and its plasma concentration. Another important parameter is the half-life of a drug, which is the time required for its concentration to decrease by half. In most cases, drug clearance follows first-order...
Enhanced Elimination of Poison
Antidotes serve a crucial role in counteracting the effects of poison by inhibiting enzymes responsible for producing harmful drug metabolites. In some cases, these toxic metabolites can be neutralized by endogenous cosubstrates, which are maintained at specific concentrations to prevent interaction with cellular macromolecules and subsequent cell death.
Renal excretion is the...
Radical Formation: Elimination
Elimination Reactions
Elimination Kinetics: First-Order and Zero-Order
Drug clearance depends on the rate of drug elimination and its plasma concentration. Another important parameter is a drug's half-life, which is the time required for its concentration to decrease by half. In most cases, drug clearance follows first-order...
Physiology of the Gastrointestinal System III: Elimination

