Literature DB >> 31336255

Mechanistic study on uptake and transport of pharmaceuticals in lettuce from water.

Ya-Hui Chuang1, Cheng-Hua Liu2, J Brett Sallach3, Raymond Hammerschmidt3, Wei Zhang2, Stephen A Boyd3, Hui Li4.   

Abstract

The dissemination of pharmaceuticals in agroecosystems originating from land application of animal manure/sewage sludge and irrigation with treated wastewater in agricultural production has raised concern about the accumulation of pharmaceuticals in food products. The pathways of pharmaceutical entries via plant roots, transport to upper fractions, and the factors influencing these processes have yet been systematically elucidated, thus impeding the development of effective measures to mitigate pharmaceutical contamination in food crops. In this study, lettuce uptake of thirteen commonly used pharmaceuticals was investigated using a hydroponic experimental setting. Pharmaceutical sorption by lettuce roots was measured in order to evaluate the influence on pharmaceutical transport from roots to shoots. Small-sized pharmaceuticals e.g., caffeine and carbamazepine with molecular weight (MW) <300 g mol-1 and a low affinity to lettuce roots (sorption coefficient Kp < 0.05 L g-1) manifested substantial transport to shoots. Small-sized molecules lamotrigine and trimethoprim had a relatively strong affinity to lettuce roots (Kp > 12.0 L g-1) and demonstrated a reduced transport to shoots. Large-sized pharmaceuticals (e.g. MW >400 g mol-1) including lincomycin, monensin sodium, and tylosin could be excluded from cell membranes, resulting in the predominant accumulation in lettuce roots. Large-sized oxytetracycline existed as zwitterionic species that could slowly enter lettuce roots; however, the relatively strong interaction with lettuce roots limits its transport to shoots. The mass balance analysis revealed that acetaminophen, β-estradiol, carbadox, estrone and triclosan were readily metabolized in lettuce with >90% loss during 144-h exposure period. A scheme was proposed to describe pharmaceutical uptake and transport in plant, which could reasonably elucidate many literature-reported results. Molecular size, reactivity and ionic speciation of pharmaceuticals, as well as plant physiology, collectively determine their uptake, transport and accumulation in plants.
Copyright © 2019. Published by Elsevier Ltd.

Entities:  

Keywords:  Accumulation; Pharmaceuticals; Plant uptake; Sorption by roots; Transport

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Year:  2019        PMID: 31336255     DOI: 10.1016/j.envint.2019.104976

Source DB:  PubMed          Journal:  Environ Int        ISSN: 0160-4120            Impact factor:   9.621


  2 in total

1.  On the Use of Mechanistic Soil-Plant Uptake Models: A Comprehensive Experimental and Numerical Analysis on the Translocation of Carbamazepine in Green Pea Plants.

Authors:  Giuseppe Brunetti; Radka Kodešová; Helena Švecová; Miroslav Fér; Antonín Nikodem; Aleš Klement; Roman Grabic; Jiří Šimůnek
Journal:  Environ Sci Technol       Date:  2021-02-15       Impact factor: 9.028

Review 2.  Chitosan-Based Agronanochemicals as a Sustainable Alternative in Crop Protection.

Authors:  Farhatun Najat Maluin; Mohd Zobir Hussein
Journal:  Molecules       Date:  2020-04-01       Impact factor: 4.411

  2 in total

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