Cargando…

Methods of determining titanium dioxide nanoparticles enhance inorganic arsenic bioavailability and methylation in two freshwater algae species

We developed the effect of titanium dioxide nanoparticles (nano-TiO(2)) on the bioaccumulation and biotransformation of arsenic (As), which remain largely unknown. We thus exposed two freshwater algae (Microcystis aeruginosa and Scenedesmus obliquus) to inorganic As with the aim of increasing our un...

Descripción completa

Detalles Bibliográficos
Autores principales: Luo, Zhuanxi, Wang, Zhenhong, Yan, Yameng, Li, Jinli, Yan, Changzhou, Xing, Baoshan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6019743/
https://www.ncbi.nlm.nih.gov/pubmed/30013944
http://dx.doi.org/10.1016/j.mex.2018.06.004
_version_ 1783335175312113664
author Luo, Zhuanxi
Wang, Zhenhong
Yan, Yameng
Li, Jinli
Yan, Changzhou
Xing, Baoshan
author_facet Luo, Zhuanxi
Wang, Zhenhong
Yan, Yameng
Li, Jinli
Yan, Changzhou
Xing, Baoshan
author_sort Luo, Zhuanxi
collection PubMed
description We developed the effect of titanium dioxide nanoparticles (nano-TiO(2)) on the bioaccumulation and biotransformation of arsenic (As), which remain largely unknown. We thus exposed two freshwater algae (Microcystis aeruginosa and Scenedesmus obliquus) to inorganic As with the aim of increasing our understanding on As bioaccumulation and methylation in the presence of nano-TiO(2). Direct evidence of TEM and EDX image showed that nano-TiO(2) (anatase) entered the exposed algae. Thus, nano-TiO(2) as carriers boosted arsenic accumulation and methylation in these two algae species, which varied with both inorganic As speciation and algae species. Specifically, nano-TiO(2) could enhance markedly arsenate accumulation in M. aerugginosa and arsenite accumulation in S. obliquus. Similarly, we found higher content of As methylation in M. aeruginosa of arsenite with 2 mg L(−1) of nano-TiO(2) treatment and in S. obliquus of arsenate treatment. Additionally, S. obliquus exhibited higher As methylation compared to M. aeruginosa, being more sensitive to As associated with nano-TiO(2) than M. aeruginosa. Due to changes in pH levels inside these exposed algae, the As dissociation from nano-TiO(2) inside algal cell enhanced As methylation. Accordingly, the potential influence of nanoparticles on the bioaccumulation and biotransformation of their co-contaminants deserves more attention. • Nano-TiO(2) entry is assumed to promote As accumulation into exposed algae. • Nano-TiO(2) had different carrying capacities for different forms of As and algae. • As dissociation from nano-TiO(2) is assumed to enhance As methylation in algae.
format Online
Article
Text
id pubmed-6019743
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-60197432018-07-16 Methods of determining titanium dioxide nanoparticles enhance inorganic arsenic bioavailability and methylation in two freshwater algae species Luo, Zhuanxi Wang, Zhenhong Yan, Yameng Li, Jinli Yan, Changzhou Xing, Baoshan MethodsX Environmental Science We developed the effect of titanium dioxide nanoparticles (nano-TiO(2)) on the bioaccumulation and biotransformation of arsenic (As), which remain largely unknown. We thus exposed two freshwater algae (Microcystis aeruginosa and Scenedesmus obliquus) to inorganic As with the aim of increasing our understanding on As bioaccumulation and methylation in the presence of nano-TiO(2). Direct evidence of TEM and EDX image showed that nano-TiO(2) (anatase) entered the exposed algae. Thus, nano-TiO(2) as carriers boosted arsenic accumulation and methylation in these two algae species, which varied with both inorganic As speciation and algae species. Specifically, nano-TiO(2) could enhance markedly arsenate accumulation in M. aerugginosa and arsenite accumulation in S. obliquus. Similarly, we found higher content of As methylation in M. aeruginosa of arsenite with 2 mg L(−1) of nano-TiO(2) treatment and in S. obliquus of arsenate treatment. Additionally, S. obliquus exhibited higher As methylation compared to M. aeruginosa, being more sensitive to As associated with nano-TiO(2) than M. aeruginosa. Due to changes in pH levels inside these exposed algae, the As dissociation from nano-TiO(2) inside algal cell enhanced As methylation. Accordingly, the potential influence of nanoparticles on the bioaccumulation and biotransformation of their co-contaminants deserves more attention. • Nano-TiO(2) entry is assumed to promote As accumulation into exposed algae. • Nano-TiO(2) had different carrying capacities for different forms of As and algae. • As dissociation from nano-TiO(2) is assumed to enhance As methylation in algae. Elsevier 2018-06-12 /pmc/articles/PMC6019743/ /pubmed/30013944 http://dx.doi.org/10.1016/j.mex.2018.06.004 Text en © 2018 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Environmental Science
Luo, Zhuanxi
Wang, Zhenhong
Yan, Yameng
Li, Jinli
Yan, Changzhou
Xing, Baoshan
Methods of determining titanium dioxide nanoparticles enhance inorganic arsenic bioavailability and methylation in two freshwater algae species
title Methods of determining titanium dioxide nanoparticles enhance inorganic arsenic bioavailability and methylation in two freshwater algae species
title_full Methods of determining titanium dioxide nanoparticles enhance inorganic arsenic bioavailability and methylation in two freshwater algae species
title_fullStr Methods of determining titanium dioxide nanoparticles enhance inorganic arsenic bioavailability and methylation in two freshwater algae species
title_full_unstemmed Methods of determining titanium dioxide nanoparticles enhance inorganic arsenic bioavailability and methylation in two freshwater algae species
title_short Methods of determining titanium dioxide nanoparticles enhance inorganic arsenic bioavailability and methylation in two freshwater algae species
title_sort methods of determining titanium dioxide nanoparticles enhance inorganic arsenic bioavailability and methylation in two freshwater algae species
topic Environmental Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6019743/
https://www.ncbi.nlm.nih.gov/pubmed/30013944
http://dx.doi.org/10.1016/j.mex.2018.06.004
work_keys_str_mv AT luozhuanxi methodsofdeterminingtitaniumdioxidenanoparticlesenhanceinorganicarsenicbioavailabilityandmethylationintwofreshwateralgaespecies
AT wangzhenhong methodsofdeterminingtitaniumdioxidenanoparticlesenhanceinorganicarsenicbioavailabilityandmethylationintwofreshwateralgaespecies
AT yanyameng methodsofdeterminingtitaniumdioxidenanoparticlesenhanceinorganicarsenicbioavailabilityandmethylationintwofreshwateralgaespecies
AT lijinli methodsofdeterminingtitaniumdioxidenanoparticlesenhanceinorganicarsenicbioavailabilityandmethylationintwofreshwateralgaespecies
AT yanchangzhou methodsofdeterminingtitaniumdioxidenanoparticlesenhanceinorganicarsenicbioavailabilityandmethylationintwofreshwateralgaespecies
AT xingbaoshan methodsofdeterminingtitaniumdioxidenanoparticlesenhanceinorganicarsenicbioavailabilityandmethylationintwofreshwateralgaespecies