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Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Detection Methods Marine & Wildlife Sign in to save

Determination of the pharmaceuticals–nano/microplastics in aquatic systems by analytical and instrumental methods

Environmental Monitoring and Assessment 2022 46 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Reza Pashaei, Reza Pashaei, Reza Pashaei, Reza Pashaei, Reza Pashaei, Reza Pashaei, Reza Pashaei, Reza Pashaei, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Reda Dzingelevičienė, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Reda Dzingelevičienė, Reda Dzingelevičienė, Reda Dzingelevičienė, Reda Dzingelevičienė, Reda Dzingelevičienė, Reda Dzingelevičienė, Reza Pashaei, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Reda Dzingelevičienė, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Reza Pashaei, Reda Dzingelevičienė, Sajjad Abbasi, Sajjad Abbasi, Małgorzata Szultka‐Młyńska, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Sajjad Abbasi, Reda Dzingelevičienė, Reda Dzingelevičienė, Sajjad Abbasi, Sajjad Abbasi, Reda Dzingelevičienė, Bogusław Buszewski Małgorzata Szultka‐Młyńska, Sajjad Abbasi, Sajjad Abbasi, Bogusław Buszewski Reda Dzingelevičienė, Reda Dzingelevičienė, Małgorzata Szultka‐Młyńska, Małgorzata Szultka‐Młyńska, Sajjad Abbasi, Bogusław Buszewski Sajjad Abbasi, Sajjad Abbasi, Bogusław Buszewski Bogusław Buszewski Bogusław Buszewski

Summary

Researchers reviewed analytical and instrumental methods for detecting pharmaceutical compounds associated with nano- and microplastic particles in aquatic systems. They examined how pharmaceuticals bind to plastic particles and the combined environmental risks these mixtures pose to water sources and marine life. The study identifies gaps in current detection capabilities and calls for improved methods to assess the combined impact of these co-occurring pollutants.

Body Systems
Study Type Environmental

Pharmaceutical residues and nanoplastic and microplastic particles as emerging pollutants in the aquatic environment are a subject of increasing concern in terms of the effect on water sources and marine organisms. There is lack of information about pharmaceutical-nanoplastic and pharmaceutical-microplastic mixtures. The present study aimed to investigate the fate and effect of pharmaceutical residues and nanoplastic and microplastic particles, the results of combinations of pharmaceutical residues with nanoplastic and microplastic particles, and toxic effects of pharmaceutical residues and nanoplastic and microplastic particles. Moreover, the objective was also to introduce analytical methods for pharmaceuticals, along with instrumental techniques for nanoplastic and microplastic particles in aquatic environments and organisms. PhAC alone can affect marine environments and aquatic organisms. When pharmaceutical residues combine with nanoplastic and microplastic particles, the rate of toxicity increases, and the result of this phenomenon constitutes this kind of pollutant in wastewater. Hence, the rate of mortality in organisms enhances. This study aimed to investigate the effect of pharmaceuticals residues and nanoplastic and microplastic particles, and a mixture of pharmaceutical residues and nanoplastic and microplastic particles in aquatic biota. Another object was survey methods for recognizing pharmaceutical residues and nanoplastic and microplastic particles. The findings show that pharmaceutical residues in organisms caused cell structure damage, inflammatory response, and nerve cell apoptosis. This study aimed to investigate the effect of microplastic particles in the human food chain and their impact on human health. Moreover, this review aims to present an innovative methodology based on comprehensive analytical techniques used to determine and identify pharmaceuticals adsorbed on nano- and microplastics in aquatic ecosystems. Finally, this review addresses the knowledge gaps and provides insights into future research strategies to better understand their interactions.

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