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The oxidative toxicity of Ag and ZnO nanoparticles towards the aquatic plant Spirodela punctuta and the role of testing media parameters: Conference paper

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dc.contributor.author Thwala, Melusi
dc.contributor.author Musee, N
dc.contributor.author Sikhwivhilu, L
dc.contributor.author Wepener, V
dc.date.accessioned 2014-03-25T06:37:59Z
dc.date.available 2014-03-25T06:37:59Z
dc.date.issued 2013-08
dc.identifier.citation Thwala, M., Musee, N., Sikhwivhilu, L., and Wepener, V. 2013. The oxidative toxicity of Ag and ZnO nanoparticles towards the aquatic plant Spirodela punctuta and the role of testing media parameters. In: First Human Capital Development Workshop for Nanotechnologies and Nanosciences Risk Assessment, Pretoria, CSIR Knowledge Commons, 13 August 2013 en_US
dc.identifier.uri http://hdl.handle.net/10204/7292
dc.description First Human Capital Development Workshop for Nanotechnologies and Nanosciences Risk Assessment, Pretoria, CSIR Knowledge Commons, 13 August 2013 en_US
dc.description.abstract The toxicity effects of silver (nAg) and zinc oxide (nZnO) engineered nanoparticles (ENPs) on the duckweed Spirodela punctuta were studied to investigate the potential risks posed by these ENPs towards higher aquatic plants. The influence of media abiotic factors on the stability of the ENPs was also evaluated. Marked agglomeration of ENPs was observed after introduction into testing media whereby large particles settled out of suspension and accumulated at the bottom of testing vessels. The high ionic strength (IS) promoted agglomeration of ENPs because it reduced the inter-particle repulsion caused by a reduction in their surface charge. Low dissolution was observed for nAg, reaching only 0.015% at 1000 mg/L, whilst improved dissolution was observed for nZnO, only falling below analytical quantification at 0.1 mg/L and lower. The quantification of free radicals namely, reactive oxygen and nitrogen species (ROS/RNS) and hydrogen peroxide (H2O2), indicated the induction of oxidative stress in plants exposed to the ENPs. A definite dose influence was observed for ROS/RNS volumes in plants exposed to nZnO for 14 days, a response not always observed. The total antioxidant capacity (TAC) and superoxide dismutase (SOD) activity in plants indicated varying degrees of oxidative toxicity caused by exposure to ENPs. This toxicity was driven mainly by particulates in plants exposed to nAg, whilst dissolved Zn2+ was the main driver for toxicity in plants exposed to nZnO. Our findings suggest that the toxicity of nAg and nZnO could be caused by both the particulates and ionic forms, as modified by media properties. en_US
dc.language.iso en en_US
dc.relation.ispartofseries Workflow;12223
dc.subject Nanotoxicity en_US
dc.subject Oxidative stress en_US
dc.subject Antioxidant capacity en_US
dc.subject Nanoparticle characterisation en_US
dc.title The oxidative toxicity of Ag and ZnO nanoparticles towards the aquatic plant Spirodela punctuta and the role of testing media parameters: Conference paper en_US
dc.type Conference Presentation en_US
dc.identifier.apacitation Thwala, M., Musee, N., Sikhwivhilu, L., & Wepener, V. (2013). The oxidative toxicity of Ag and ZnO nanoparticles towards the aquatic plant Spirodela punctuta and the role of testing media parameters: Conference paper. http://hdl.handle.net/10204/7292 en_ZA
dc.identifier.chicagocitation Thwala, Melusi, N Musee, L Sikhwivhilu, and V Wepener. "The oxidative toxicity of Ag and ZnO nanoparticles towards the aquatic plant Spirodela punctuta and the role of testing media parameters: Conference paper." (2013): http://hdl.handle.net/10204/7292 en_ZA
dc.identifier.vancouvercitation Thwala M, Musee N, Sikhwivhilu L, Wepener V, The oxidative toxicity of Ag and ZnO nanoparticles towards the aquatic plant Spirodela punctuta and the role of testing media parameters: Conference paper; 2013. http://hdl.handle.net/10204/7292 . en_ZA
dc.identifier.ris TY - Conference Presentation AU - Thwala, Melusi AU - Musee, N AU - Sikhwivhilu, L AU - Wepener, V AB - The toxicity effects of silver (nAg) and zinc oxide (nZnO) engineered nanoparticles (ENPs) on the duckweed Spirodela punctuta were studied to investigate the potential risks posed by these ENPs towards higher aquatic plants. The influence of media abiotic factors on the stability of the ENPs was also evaluated. Marked agglomeration of ENPs was observed after introduction into testing media whereby large particles settled out of suspension and accumulated at the bottom of testing vessels. The high ionic strength (IS) promoted agglomeration of ENPs because it reduced the inter-particle repulsion caused by a reduction in their surface charge. Low dissolution was observed for nAg, reaching only 0.015% at 1000 mg/L, whilst improved dissolution was observed for nZnO, only falling below analytical quantification at 0.1 mg/L and lower. The quantification of free radicals namely, reactive oxygen and nitrogen species (ROS/RNS) and hydrogen peroxide (H2O2), indicated the induction of oxidative stress in plants exposed to the ENPs. A definite dose influence was observed for ROS/RNS volumes in plants exposed to nZnO for 14 days, a response not always observed. The total antioxidant capacity (TAC) and superoxide dismutase (SOD) activity in plants indicated varying degrees of oxidative toxicity caused by exposure to ENPs. This toxicity was driven mainly by particulates in plants exposed to nAg, whilst dissolved Zn2+ was the main driver for toxicity in plants exposed to nZnO. Our findings suggest that the toxicity of nAg and nZnO could be caused by both the particulates and ionic forms, as modified by media properties. DA - 2013-08 DB - ResearchSpace DP - CSIR KW - Nanotoxicity KW - Oxidative stress KW - Antioxidant capacity KW - Nanoparticle characterisation LK - https://researchspace.csir.co.za PY - 2013 T1 - The oxidative toxicity of Ag and ZnO nanoparticles towards the aquatic plant Spirodela punctuta and the role of testing media parameters: Conference paper TI - The oxidative toxicity of Ag and ZnO nanoparticles towards the aquatic plant Spirodela punctuta and the role of testing media parameters: Conference paper UR - http://hdl.handle.net/10204/7292 ER - en_ZA


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