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Toxicity of CdSe Nanoparticles in Caco-2 Cell Cultures

BACKGROUND: Potential routes of nanomaterial exposure include inhalation, dermal contact, and ingestion. Toxicology of inhalation of ultra-fine particles has been extensively studied; however, risks of nanomaterial exposure via ingestion are currently almost unknown. Using enterocyte-like Caco-2 cel...

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Autores principales: Wang, Lin, Nagesha, Dattatri K, Selvarasah, Selvapraba, Dokmeci, Mehmet R, Carrier, Rebecca L
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2584022/
https://www.ncbi.nlm.nih.gov/pubmed/18947410
http://dx.doi.org/10.1186/1477-3155-6-11
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author Wang, Lin
Nagesha, Dattatri K
Selvarasah, Selvapraba
Dokmeci, Mehmet R
Carrier, Rebecca L
author_facet Wang, Lin
Nagesha, Dattatri K
Selvarasah, Selvapraba
Dokmeci, Mehmet R
Carrier, Rebecca L
author_sort Wang, Lin
collection PubMed
description BACKGROUND: Potential routes of nanomaterial exposure include inhalation, dermal contact, and ingestion. Toxicology of inhalation of ultra-fine particles has been extensively studied; however, risks of nanomaterial exposure via ingestion are currently almost unknown. Using enterocyte-like Caco-2 cells as a small intestine epithelial model, the possible toxicity of CdSe quantum dot (QD) exposure via ingestion was investigated. Effect of simulated gastric fluid treatment on CdSe QD cytotoxicity was also studied. RESULTS: Commercially available CdSe QDs, which have a ZnS shell and poly-ethylene glycol (PEG) coating, and in-house prepared surfactant coated CdSe QDs were dosed to Caco-2 cells. Cell viability and attachment were studied after 24 hours of incubation. It was found that cytotoxicity of CdSe QDs was modulated by surface coating, as PEG coated CdSe QDs had less of an effect on Caco-2 cell viability and attachment. Acid treatment increased the toxicity of PEG coated QDs, most likely due to damage or removal of the surface coating and exposure of CdSe core material. Incubation with un-dialyzed in-house prepared CdSe QD preparations, which contained an excess amount of free Cd(2+), resulted in dramatically reduced cell viability. CONCLUSION: Exposure to CdSe QDs resulted in cultured intestinal cell detachment and death; cytotoxicity depended largely, however, on the QD coating and treatment (e.g. acid treatment, dialysis). Experimental results generally indicated that Caco-2 cell viability correlated with concentration of free Cd(2+ )ions present in cell culture medium. Exposure to low (gastric) pH affected cytotoxicity of CdSe QDs, indicating that route of exposure may be an important factor in QD cytotoxicity.
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spelling pubmed-25840222008-11-18 Toxicity of CdSe Nanoparticles in Caco-2 Cell Cultures Wang, Lin Nagesha, Dattatri K Selvarasah, Selvapraba Dokmeci, Mehmet R Carrier, Rebecca L J Nanobiotechnology Research BACKGROUND: Potential routes of nanomaterial exposure include inhalation, dermal contact, and ingestion. Toxicology of inhalation of ultra-fine particles has been extensively studied; however, risks of nanomaterial exposure via ingestion are currently almost unknown. Using enterocyte-like Caco-2 cells as a small intestine epithelial model, the possible toxicity of CdSe quantum dot (QD) exposure via ingestion was investigated. Effect of simulated gastric fluid treatment on CdSe QD cytotoxicity was also studied. RESULTS: Commercially available CdSe QDs, which have a ZnS shell and poly-ethylene glycol (PEG) coating, and in-house prepared surfactant coated CdSe QDs were dosed to Caco-2 cells. Cell viability and attachment were studied after 24 hours of incubation. It was found that cytotoxicity of CdSe QDs was modulated by surface coating, as PEG coated CdSe QDs had less of an effect on Caco-2 cell viability and attachment. Acid treatment increased the toxicity of PEG coated QDs, most likely due to damage or removal of the surface coating and exposure of CdSe core material. Incubation with un-dialyzed in-house prepared CdSe QD preparations, which contained an excess amount of free Cd(2+), resulted in dramatically reduced cell viability. CONCLUSION: Exposure to CdSe QDs resulted in cultured intestinal cell detachment and death; cytotoxicity depended largely, however, on the QD coating and treatment (e.g. acid treatment, dialysis). Experimental results generally indicated that Caco-2 cell viability correlated with concentration of free Cd(2+ )ions present in cell culture medium. Exposure to low (gastric) pH affected cytotoxicity of CdSe QDs, indicating that route of exposure may be an important factor in QD cytotoxicity. BioMed Central 2008-10-23 /pmc/articles/PMC2584022/ /pubmed/18947410 http://dx.doi.org/10.1186/1477-3155-6-11 Text en Copyright © 2008 Wang et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Wang, Lin
Nagesha, Dattatri K
Selvarasah, Selvapraba
Dokmeci, Mehmet R
Carrier, Rebecca L
Toxicity of CdSe Nanoparticles in Caco-2 Cell Cultures
title Toxicity of CdSe Nanoparticles in Caco-2 Cell Cultures
title_full Toxicity of CdSe Nanoparticles in Caco-2 Cell Cultures
title_fullStr Toxicity of CdSe Nanoparticles in Caco-2 Cell Cultures
title_full_unstemmed Toxicity of CdSe Nanoparticles in Caco-2 Cell Cultures
title_short Toxicity of CdSe Nanoparticles in Caco-2 Cell Cultures
title_sort toxicity of cdse nanoparticles in caco-2 cell cultures
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2584022/
https://www.ncbi.nlm.nih.gov/pubmed/18947410
http://dx.doi.org/10.1186/1477-3155-6-11
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