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Original Article

The chronic toxicity of ZnO nanoparticles and ZnCl2 to Daphnia magna and the use of different methods to assess nanoparticle aggregation and dissolution

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Pages 709-717 | Received 27 Dec 2012, Accepted 23 Jun 2014, Published online: 29 Jul 2013

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Niels Hadrup, Feriel Rahmani, Nicklas R. Jacobsen, Anne T. Saber, Petra Jackson, Stefan Bengtson, Andrew Williams, Håkan Wallin, Sabina Halappanavar & Ulla Vogel. (2019) Acute phase response and inflammation following pulmonary exposure to low doses of zinc oxide nanoparticles in mice. Nanotoxicology 13:9, pages 1275-1292.
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Fateh Moëzzi, Seyyed Aliakbar Hedayati & Amir Ghadermazi. (2018) Ecotoxicological impacts of exposure to copper oxide nanoparticles on the gill of the Swan mussel, Anodonta cygnea (Linnaeus, 1758). Molluscan Research 38:3, pages 187-197.
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Didem Gökçe, Süleyman Köytepe & İmren Özcan. (2018) Effects of nanoparticles on Daphnia magna population dynamics. Chemistry and Ecology 34:4, pages 301-323.
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Şeyda Fikirdeşici Ergen & Esra Üçüncü Tunca. (2018) Nanotoxicity modelling and removal efficiencies of ZnONP. International Journal of Phytoremediation 20:1, pages 16-26.
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Articles from other publishers (15)

Xiliang Yan, Tongtao Yue, David A. Winkler, Yongguang Yin, Hao Zhu, Guibin Jiang & Bing Yan. (2023) Converting Nanotoxicity Data to Information Using Artificial Intelligence and Simulation. Chemical Reviews 123:13, pages 8575-8637.
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Andreya Gonçalves Costa Motta, Vinicius Guerra, Diogo Ferreira do Amaral, Amanda Pereira da Costa Araújo, Lucélia Gonçalves Vieira, Daniela de Melo e Silva & Thiago Lopes Rocha. (2022) Assessment of multiple biomarkers in Lithobates catesbeianus (Anura: Ranidae) tadpoles exposed to zinc oxide nanoparticles and zinc chloride: integrating morphological and behavioral approaches to ecotoxicology. Environmental Science and Pollution Research 30:5, pages 13755-13772.
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Khaled Yassin Abdel-Halim, Safaa Ramadan Osman, Atef Mohamed Khedr Nassar, Alaa Khozimy & Heba Mohamed El-Danasoury. (2022) Use of DNA adduct and histopathological defects as indications for bio-persistence potency of zinc oxide nanoparticles in gastropod, Monacha cartusiana (Mǜller) after short-term exposure. Environmental Analysis Health and Toxicology 37:3, pages e2022025.
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Yunfei Sun, Bo Yu, Yulu Lei, Shanshan Qin, Kai Lyu & Zhou Yang. (2022) Differential Comprehensive Effects of Food Quality and ZnO Nanoparticles on the Key Traits of Early Life History of Daphnia magna. Frontiers in Environmental Science 10.
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Qianju Qi, Qi Li, Jing Li, Jiezhang Mo, Yulu Tian & Jiahua Guo. (2022) Transcriptomic analysis and transgenerational effects of ZnO nanoparticles on Daphnia magna: Endocrine-disrupting potential and energy metabolism. Chemosphere 290, pages 133362.
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Li Lin, Mingzhi Xu, Huawei Mu, Wenwen Wang, Jin Sun, Jing He, Jian-Wen Qiu & Tiangang Luan. (2019) Quantitative Proteomic Analysis to Understand the Mechanisms of Zinc Oxide Nanoparticle Toxicity to Daphnia pulex (Crustacea: Daphniidae): Comparing with Bulk Zinc Oxide and Zinc Salt . Environmental Science & Technology 53:9, pages 5436-5444.
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Calin A. David, Josep Galceran, Federico Quattrini, Jaume Puy & Carlos Rey-Castro. (2019) Dissolution and Phosphate-Induced Transformation of ZnO Nanoparticles in Synthetic Saliva Probed by AGNES without Previous Solid–Liquid Separation. Comparison with UF-ICP-MS. Environmental Science & Technology 53:7, pages 3823-3831.
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Rohit Rekulapally, Lakshmi Narsimha Murthy Chavali, Mohammed M. Idris & Shashi Singh. (2019) Toxicity of TiO 2 , SiO 2 , ZnO, CuO, Au and Ag engineered nanoparticles on hatching and early nauplii of Artemia sp. . PeerJ 6, pages e6138.
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Simona Schiavo, Maria Oliviero, Jiji Li & Sonia Manzo. (2017) Testing ZnO nanoparticle ecotoxicity: linking time variable exposure to effects on different marine model organisms. Environmental Science and Pollution Research 25:5, pages 4871-4880.
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Jiyoung Jeong, Sung-Hyun Kim, Seonghan Lee, Dong-Keon Lee, Youngju Han, Soyeon Jeon & Wan-Seob Cho. (2018) Differential Contribution of Constituent Metal Ions to the Cytotoxic Effects of Fast-Dissolving Metal-Oxide Nanoparticles. Frontiers in Pharmacology 9.
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Soyoun Kim, Palas Samanta, Jisu Yoo, Woo-Keun Kim & Jinho Jung. (2017) Time-Dependent Toxicity Responses in Daphnia magna Exposed to CuO and ZnO Nanoparticles. Bulletin of Environmental Contamination and Toxicology 98:4, pages 502-507.
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Mengting Li, Zhuanxi Luo, Yameng Yan, Zhenhong Wang, Qiaoqiao Chi, Changzhou Yan & Baoshan Xing. (2016) Arsenate Accumulation, Distribution, and Toxicity Associated with Titanium Dioxide Nanoparticles in Daphnia magna . Environmental Science & Technology 50:17, pages 9636-9643.
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Rodrigo Costa Puerari, Cristina H. da Costa, Denice S. Vicentini, Cristiane F. Fuzinatto, Silvia P. Melegari, Éder C. Schmidt, Zenilda L. Bouzon & William G. Matias. (2016) Synthesis, characterization and toxicological evaluation of Cr2O3 nanoparticles using Daphnia magna and Aliivibrio fischeri. Ecotoxicology and Environmental Safety 128, pages 36-43.
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Zitao Zhou, Jino Son, Bryan Harper, Zheng Zhou & Stacey Harper. (2015) Influence of surface chemical properties on the toxicity of engineered zinc oxide nanoparticles to embryonic zebrafish. Beilstein Journal of Nanotechnology 6, pages 1568-1579.
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Swayamprava Dalai, V. Iswarya, M. Bhuvaneshwari, Sunandan Pakrashi, N. Chandrasekaran & Amitava Mukherjee. (2014) Different modes of TiO2 uptake by Ceriodaphnia dubia: Relevance to toxicity and bioaccumulation. Aquatic Toxicology 152, pages 139-146.
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