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Bioindication Testing of Stream Environment Suitability for Young Freshwater Pearl Mussels Using In Situ Exposure Methods
Published on: September 5, 2018
Mussels as integrative sentinels of emerging contaminants in aquatic ecosystems
Nicla Tranchida1, Roberta Fusco1, Enrico Gugliandolo2
1Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, Messina, Viale F. Stagno D'Alcontres 31, 98166, Italy.
Abstract:
Emerging pollutants (EPs), including emerging contaminants (ECs) such as pharmaceuticals andpersonal care products, alongside with microplastics are increasingly causing world water quality concerns. Their typically low concentrations and irregular discharge patterns complicate monitoring efforts, and traditional chemical analyses are often insufficient to fully assess their biological relevance. In this context, biomonitoring-using living organisms to detect and quantify environmental contaminants-provides an essential complementary approach. Mussels represent one of the most effective bioindicator species in aquatic environments. Their sessile lifestyle, filter-feeding activity, and widespread distribution enable them to efficiently accumulate contaminants directly from the water column, thereby providing an integrated record of pollutant exposure over time. As a result, mussel-based biomonitoring offers ecologically meaningful insights into the presence and biological effects of emerging contaminants, contributing to more sustainable water-quality management strategies. The aim of this review is to summarize recent advances and future perspectives on the use of mussels as monitors of emerging contaminants. We address the physiological foundations supporting their reliability-including filtration processes, bioaccumulation mechanisms, and their role as "sentinel species." Furthermore, we examine the major classes of contaminants detected in mussel tissues, ranging from pharmaceuticals to plastic polymers. Finally, the review evaluates the latest findings in the field, while also critically discussing the limitations and challenges associated with mussel-based biomonitoring.
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