Under specific conditions (pH, concentrations), trace metals may form, with environmental inorganic ligands, neutral complexes which, in principle, might diffuse passively through biological membranes or influence the response of (bio)analytical sensors for trace metals based on permeation liquid membrane (PLM). In this study, metal (Cu, Cd, Pb) transport through the planar PLM device was evaluated in the presence of major environmental inorganic ligands such as sulfate, carbonate and chloride under conditions where neutral complexes may be formed (up to 73% of neutral metal complex in the solution). In the presence of sulfate, comparison of predicted and experimental PLM fluxes of Cu, Pb and Cd, suggests that passive transport of neutral sulfate-metal complexes does not occur. This was confirmed by comparing fluxes in the presence and absence of carrier. In the presence of carbonate (for Cd, Cu and Pb) and chloride (for Pb and Cd), however, experimental PLM fluxes were greater than predicted (up to 4 and 25 times in the presence of carbonate and chloride, respectively), but experiments in the absence of carrier in the membrane revealed that no passive transport of neutral complexes (MCl(2) or MCO(3)) occurs through PLM. A possible mechanism is discussed. In parallel to the experiments with PLM, the influence of carbonate on the internalization fluxes of Cu(II) and Pb(II) by the freshwater algae, Chlamydomonas reinhardtii, was assessed. Similarly to the results of PLM, the fluxes of these two metals were larger than expected (based on the free metal ion activity model). Thus, even though PLM and bioaccumulation mechanisms are certainly different, similar unexpected behaviours occur for the metal transport through the PLM and biological membrane of C. reinhardtii, in the presence of carbonate.
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http://dx.doi.org/10.1016/j.aca.2009.04.040 | DOI Listing |
Stem Cell Res Ther
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Department of Pediatric Surgery, Qilu Hospital of Shandong University, Jinan, China.
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Biol Trace Elem Res
January 2025
Laboratory for Toxicology and Micronutrient Metabolism, Chemical Pathology Department, College of Medicine, University of Ibadan, Ibadan, Nigeria.
Auto-mechanics who often work without safety measures are vulnerable to the harmful effects of toxic metals like lead (Pb) and cadmium (Cd). These toxic metals exert their deleterious effect by interacting with the micronutrients at their primary site of action. This study aimed to investigate the effects of toxic metal exposure on serum micronutrient levels of auto-mechanics in Nigeria.
View Article and Find Full Text PDFToxicol Lett
January 2025
Sinopharm Tongmei General Hospital, Shanxi Health Commission Key Laboratory of Nervous System Disease Prevention and Treatment, Datong, Shanxi 037003,China. Electronic address:
Background: Trace element and metal exposure is closely related to the occurrence of chronic diseases, particularly affecting blood pressure and blood glucose. Current studies suggest that heavy metal exposure is a risk factor for hypertension and diabetes. Aluminum can enter the human body through daily life and occupational exposure from food, environment, drugs, and other sources, affecting the cardiovascular, endocrine, and other systems.
View Article and Find Full Text PDFSci Total Environ
January 2025
Department of Geosciences & Natural Resource Management, Geology, University of Copenhagen, Denmark.
Due to increasing plastic production, the continuous release of primary and secondary nanoplastic particles (NPs, <1 μm) has become an emerging contaminant in terrestrial environments. The fate and transport of NPs in subsurface environments remain poorly understood, largely due to the complex interplay of mineralogical, chemical, biological, and morphological heterogeneity. This study examines interactions between abundant subsurface minerals and NPs under controlled water chemistry (1 mM KCl, pH 5.
View Article and Find Full Text PDFEcotoxicol Environ Saf
January 2025
Department of Environmental Science and Engineering, Faculty of Natural Resources and Marine Sciences, Tarbiat Modares University, 46417-76489, Iran. Electronic address:
Nayband Marine National Park in the northern Persian Gulf is an important ecological areas, significantly impacted by industrial activites that poses risk of trace metal pollution to living organisms. In this study, we investigated the bioaccumulation of trace metals in scleractinian corals using annual growth bands and biota-sediment accumulation factor to assess their potential as biomonitoring organisms. Furthermore, to assess the sediment quality, sediment pollution indices and international guidelines was employed.
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