552
Views
25
CrossRef citations to date
0
Altmetric
Original Article

Sensory systems and ionocytes are targets for silver nanoparticle effects in fish

, , , , , , , , , , , & show all
Pages 1276-1286 | Received 15 Apr 2015, Accepted 09 Jun 2016, Published online: 18 Jul 2016

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Lidia Strużyńska, Beata Dąbrowska-Bouta & Grzegorz Sulkowski. (2022) Developmental neurotoxicity of silver nanoparticles: the current state of knowledge and future directions. Nanotoxicology 16:4, pages 500-525.
Read now
Helinor J. Johnston, Rachel Verdon, Suzanne Gillies, David M. Brown, Teresa F. Fernandes, Theodore B. Henry, Adriano G. Rossi, Lang Tran, Carl Tucker, Charles R. Tyler & Vicki Stone. (2018) Adoption of in vitro systems and zebrafish embryos as alternative models for reducing rodent use in assessments of immunological and oxidative stress responses to nanomaterials. Critical Reviews in Toxicology 48:3, pages 252-271.
Read now

Articles from other publishers (23)

Puja Chakraborty, Kishore Kumar Krishnani, Ashok Mulchandani, Dhruba Jyoti Sarkar, Basanta Kumar Das, Kurcheti Paniprasad, Paramita Banerjee Sawant, Neeraj Kumar, Biplab Sarkar, Nalini Poojary, Abhijit Mallik & Prasenjit Pal. (2023) Toxicity assessment of poultry-waste biosynthesized nanosilver in Anabas testudineus (Bloch, 1792) for responsible and sustainable aquaculture development-A multi-biomarker approach. Environmental Research 235, pages 116648.
Crossref
K.M. Geils, B.D. Slongo, L.D. Hayhurst, T. Ripku, C.D. Metcalfe & M.D. Rennie. (2023) Consumption and activity decline in Northern Pike (Esox lucius) during and after silver nanoparticle addition to a lake. Aquatic Toxicology 257, pages 106458.
Crossref
S. Gaillard, D. Réveillon, P.L. Mason, N. Ayache, M. Sanderson, J.L. Smith, S. Giddings, P. McCarron, V. Séchet, H. Hégaret, P. Hess & W.K. Vogelbein. (2023) Mortality and histopathology in sheepshead minnow (Cyprinodon variegatus) larvae exposed to pectenotoxin-2 and Dinophysis acuminata. Aquatic Toxicology 257, pages 106456.
Crossref
Bregje W. Brinkmann, Bjørn E.V. Koch, Willie J.G.M. Peijnenburg & Martina G. Vijver. (2022) Microbiota-dependent TLR2 signaling reduces silver nanoparticle toxicity to zebrafish larvae. Ecotoxicology and Environmental Safety 237, pages 113522.
Crossref
Iris Hansjosten, Masanari Takamiya, Juliane Rapp, Luisa Reiner, Susanne Fritsch-Decker, Dorit Mattern, Silvia Andraschko, Chantal Anders, Giuseppina Pace, Thomas Dickmeis, Ravindra Peravali, Sepand Rastegar, Uwe Strähle, I.-Lun Hsiao, Douglas Gilliland, Isaac Ojea-Jimenez, Selina V. Y. Ambrose, Marie-France A. Belinga-Desaunay-Nault, Abdullah O. Khan, Iseult Lynch, Eugenia Valsami-Jones, Silvia Diabaté & Carsten Weiss. (2022) Surface functionalisation-dependent adverse effects of metal nanoparticles and nanoplastics in zebrafish embryos. Environmental Science: Nano 9:1, pages 375-392.
Crossref
Utsav N. Patel, Urvesh D. Patel, Aniket V. Khadayata, Rahul K. Vaja, Harshad B. Patel & Chirag M. Modi. (2021) Assessment of Neurotoxicity Following Single and Co-exposure of Cadmium and Mercury in Adult Zebrafish: Behavior Alterations, Oxidative Stress, Gene Expression, and Histological Impairment in Brain. Water, Air, & Soil Pollution 232:8.
Crossref
Paige C. Robinson, Hannah R. Littler, Anke Lange & Eduarda M. Santos. (2020) Developmental exposure window influences silver toxicity but does not affect the susceptibility to subsequent exposures in zebrafish embryos. Histochemistry and Cell Biology 154:5, pages 579-595.
Crossref
Liyuan Qiang, Zeinab H. Arabeyyat, Qi Xin, Vesselin N. Paunov, Imogen J. F. Dale, Richard I. Lloyd Mills, Jeanette M. Rotchell & Jinping Cheng. (2020) Silver Nanoparticles in Zebrafish (Danio rerio) Embryos: Uptake, Growth and Molecular Responses. International Journal of Molecular Sciences 21:5, pages 1876.
Crossref
Loutfy H. Madkour. 2020. Reactive Oxygen Species (ROS), Nanoparticles, and Endoplasmic Reticulum (ER) Stress-Induced Cell Death Mechanisms. Reactive Oxygen Species (ROS), Nanoparticles, and Endoplasmic Reticulum (ER) Stress-Induced Cell Death Mechanisms 623 644 .
Loutfy H. MadkourLoutfy H. Madkour. 2020. Nanoparticles Induce Oxidative and Endoplasmic Reticulum Stresses. Nanoparticles Induce Oxidative and Endoplasmic Reticulum Stresses 521 556 .
Parastoo Razmara, Ebrahim Lari, Effat Mohaddes, Yueyang Zhang, Greg G. Goss & Greg G. Pyle. (2019) The effect of copper nanoparticles on olfaction in rainbow trout ( Oncorhynchus mykiss ) . Environmental Science: Nano 6:7, pages 2094-2104.
Crossref
Wei E. Gordon, Jose A. Espinoza, Dena M. Leerberg, Deborah Yelon & Amro Hamdoun. (2019) Xenobiotic transporter activity in zebrafish embryo ionocytes. Aquatic Toxicology 212, pages 88-97.
Crossref
Erika Calvo-Ochoa & Christine Byrd-Jacobs. (2019) The Olfactory System of Zebrafish as a Model for the Study of Neurotoxicity and Injury: Implications for Neuroplasticity and Disease. International Journal of Molecular Sciences 20:7, pages 1639.
Crossref
Tiago Alves Jorge de Souza, Lilian Rodrigues Rosa Souza & Leonardo Pereira Franchi. (2019) Silver nanoparticles: An integrated view of green synthesis methods, transformation in the environment, and toxicity. Ecotoxicology and Environmental Safety 171, pages 691-700.
Crossref
Eduardo A. González, Dennis R. Carty, Franklin D. Tran, Austin M. Cole & Pamela J. Lein. (2018) Developmental exposure to silver nanoparticles at environmentally relevant concentrations alters swimming behavior in zebrafish ( Danio rerio ) . Environmental Toxicology and Chemistry 37:12, pages 3018-3024.
Crossref
Ying Shen, Xin Li, Bin Zhao, Yanru Xue, Shenghang Wang, Xin Chen, Jiancheng Yang, Huanhuan Lv & Peng Shang. (2018) Iron metabolism gene expression and prognostic features of hepatocellular carcinoma. Journal of Cellular Biochemistry 119:11, pages 9178-9204.
Crossref
Bin-Hsu Mao, Zi-Yu Chen, Ying-Jang Wang & Shian-Jang Yan. (2018) Silver nanoparticles have lethal and sublethal adverse effects on development and longevity by inducing ROS-mediated stress responses. Scientific Reports 8:1.
Crossref
Nadja R. Brun, Bjørn E. V. Koch, Mónica Varela, Willie J. G. M. PeijnenburgHerman P. Spaink & Martina G. Vijver. (2018) Nanoparticles induce dermal and intestinal innate immune system responses in zebrafish embryos. Environmental Science: Nano 5:4, pages 904-916.
Crossref
Peter Laux, Christian Riebeling, Andy M. Booth, Joseph D. Brain, Josephine Brunner, Cristina Cerrillo, Otto Creutzenberg, Irina Estrela-Lopis, Thomas Gebel, Gunnar Johanson, Harald Jungnickel, Heiko Kock, Jutta Tentschert, Ahmed Tlili, Andreas Schäffer, Adriënne J. A. M. Sips, Robert A. Yokel & Andreas Luch. (2018) Challenges in characterizing the environmental fate and effects of carbon nanotubes and inorganic nanomaterials in aquatic systems. Environmental Science: Nano 5:1, pages 48-63.
Crossref
Dércia Santos, Raquel Vieira, Ana Luzio & Luís Félix. 2018. 151 179 .
Vahid Mirshafiee, Olivia J. Osborne, Bingbing Sun & Tian Xia. 2018. Handbook of Nanomaterials for Industrial Applications. Handbook of Nanomaterials for Industrial Applications 1063 1072 .
Eric Block, Victor S. Batista, Hiroaki Matsunami, Hanyi Zhuang & Lucky Ahmed. (2017) The role of metals in mammalian olfaction of low molecular weight organosulfur compounds. Natural Product Reports 34:5, pages 529-557.
Crossref
Lisa Truong, Tatiana Zaikova, Nicole M. Schaeublin, Ki-Tae Kim, Saber M. Hussain, James E. Hutchison & Robert L. Tanguay. (2017) Residual weakly bound ligands influence biological compatibility of mixed ligand shell, thiol-stabilized gold nanoparticles. Environmental Science: Nano 4:8, pages 1634-1646.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.