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Exploiting the Freshwater Shrimp Neocaridina denticulata as Aquatic Invertebrate Model to Evaluate Nontargeted Pesticide Induced Toxicity by Investigating Physiologic and Biochemical Parameters

As a nicotinoid neurotoxic insecticide, imidacloprid (IMI) works by disrupting nerve transmission via nicotinic acetylcholine receptor (nAChR). Although IMI is specifically targeting insects, nontarget animals such as the freshwater shrimp, Neocaridina denticulata, could also be affected, thus causi...

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Autores principales: Siregar, Petrus, Suryanto, Michael Edbert, Chen, Kelvin H.-C., Huang, Jong-Chin, Chen, Hong-Ming, Kurnia, Kevin Adi, Santoso, Fiorency, Hussain, Akhlaq, Ngoc Hieu, Bui Thi, Saputra, Ferry, Audira, Gilbert, Roldan, Marri Jmelou M., Fernandez, Rey Arturo, Macabeo, Allan Patrick G., Lai, Hong-Thih, Hsiao, Chung-Der
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7999401/
https://www.ncbi.nlm.nih.gov/pubmed/33807713
http://dx.doi.org/10.3390/antiox10030391
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author Siregar, Petrus
Suryanto, Michael Edbert
Chen, Kelvin H.-C.
Huang, Jong-Chin
Chen, Hong-Ming
Kurnia, Kevin Adi
Santoso, Fiorency
Hussain, Akhlaq
Ngoc Hieu, Bui Thi
Saputra, Ferry
Audira, Gilbert
Roldan, Marri Jmelou M.
Fernandez, Rey Arturo
Macabeo, Allan Patrick G.
Lai, Hong-Thih
Hsiao, Chung-Der
author_facet Siregar, Petrus
Suryanto, Michael Edbert
Chen, Kelvin H.-C.
Huang, Jong-Chin
Chen, Hong-Ming
Kurnia, Kevin Adi
Santoso, Fiorency
Hussain, Akhlaq
Ngoc Hieu, Bui Thi
Saputra, Ferry
Audira, Gilbert
Roldan, Marri Jmelou M.
Fernandez, Rey Arturo
Macabeo, Allan Patrick G.
Lai, Hong-Thih
Hsiao, Chung-Der
author_sort Siregar, Petrus
collection PubMed
description As a nicotinoid neurotoxic insecticide, imidacloprid (IMI) works by disrupting nerve transmission via nicotinic acetylcholine receptor (nAChR). Although IMI is specifically targeting insects, nontarget animals such as the freshwater shrimp, Neocaridina denticulata, could also be affected, thus causing adverse effects on the aquatic environment. To investigate IMI toxicity on nontarget organisms like N. denticulata, their physiology (locomotor activity, heartbeat, and gill ventilation) and biochemical factors (oxidative stress, energy metabolism) after IMI exposure were examined. IMI exposure at various concentrations (0.03125, 0.0625, 0.125, 0.25, 0.5, and 1 ppm) to shrimp after 24, 48, 72 h led to dramatic reduction of locomotor activity even at low concentrations. Meanwhile, IMI exposure after 92 h caused reduced heartbeat and gill ventilation at high concentrations. Biochemical assays were performed to investigate oxidative stress and energy metabolism. Interestingly, locomotion immobilization and cardiac activity were rescued after acetylcholine administration. Through molecular docking, IMI demonstrated high binding affinity to nAChR. Thus, locomotor activity and heartbeat in shrimp after IMI exposure may be caused by nAChR blockade and not alterations caused by oxidative stress and energy metabolism. To summarize, N. denticulata serves as an excellent and sensitive aquatic invertebrate model to conduct pesticide toxicity assays that encompass physiologic and biochemical examinations.
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spelling pubmed-79994012021-03-28 Exploiting the Freshwater Shrimp Neocaridina denticulata as Aquatic Invertebrate Model to Evaluate Nontargeted Pesticide Induced Toxicity by Investigating Physiologic and Biochemical Parameters Siregar, Petrus Suryanto, Michael Edbert Chen, Kelvin H.-C. Huang, Jong-Chin Chen, Hong-Ming Kurnia, Kevin Adi Santoso, Fiorency Hussain, Akhlaq Ngoc Hieu, Bui Thi Saputra, Ferry Audira, Gilbert Roldan, Marri Jmelou M. Fernandez, Rey Arturo Macabeo, Allan Patrick G. Lai, Hong-Thih Hsiao, Chung-Der Antioxidants (Basel) Article As a nicotinoid neurotoxic insecticide, imidacloprid (IMI) works by disrupting nerve transmission via nicotinic acetylcholine receptor (nAChR). Although IMI is specifically targeting insects, nontarget animals such as the freshwater shrimp, Neocaridina denticulata, could also be affected, thus causing adverse effects on the aquatic environment. To investigate IMI toxicity on nontarget organisms like N. denticulata, their physiology (locomotor activity, heartbeat, and gill ventilation) and biochemical factors (oxidative stress, energy metabolism) after IMI exposure were examined. IMI exposure at various concentrations (0.03125, 0.0625, 0.125, 0.25, 0.5, and 1 ppm) to shrimp after 24, 48, 72 h led to dramatic reduction of locomotor activity even at low concentrations. Meanwhile, IMI exposure after 92 h caused reduced heartbeat and gill ventilation at high concentrations. Biochemical assays were performed to investigate oxidative stress and energy metabolism. Interestingly, locomotion immobilization and cardiac activity were rescued after acetylcholine administration. Through molecular docking, IMI demonstrated high binding affinity to nAChR. Thus, locomotor activity and heartbeat in shrimp after IMI exposure may be caused by nAChR blockade and not alterations caused by oxidative stress and energy metabolism. To summarize, N. denticulata serves as an excellent and sensitive aquatic invertebrate model to conduct pesticide toxicity assays that encompass physiologic and biochemical examinations. MDPI 2021-03-05 /pmc/articles/PMC7999401/ /pubmed/33807713 http://dx.doi.org/10.3390/antiox10030391 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Siregar, Petrus
Suryanto, Michael Edbert
Chen, Kelvin H.-C.
Huang, Jong-Chin
Chen, Hong-Ming
Kurnia, Kevin Adi
Santoso, Fiorency
Hussain, Akhlaq
Ngoc Hieu, Bui Thi
Saputra, Ferry
Audira, Gilbert
Roldan, Marri Jmelou M.
Fernandez, Rey Arturo
Macabeo, Allan Patrick G.
Lai, Hong-Thih
Hsiao, Chung-Der
Exploiting the Freshwater Shrimp Neocaridina denticulata as Aquatic Invertebrate Model to Evaluate Nontargeted Pesticide Induced Toxicity by Investigating Physiologic and Biochemical Parameters
title Exploiting the Freshwater Shrimp Neocaridina denticulata as Aquatic Invertebrate Model to Evaluate Nontargeted Pesticide Induced Toxicity by Investigating Physiologic and Biochemical Parameters
title_full Exploiting the Freshwater Shrimp Neocaridina denticulata as Aquatic Invertebrate Model to Evaluate Nontargeted Pesticide Induced Toxicity by Investigating Physiologic and Biochemical Parameters
title_fullStr Exploiting the Freshwater Shrimp Neocaridina denticulata as Aquatic Invertebrate Model to Evaluate Nontargeted Pesticide Induced Toxicity by Investigating Physiologic and Biochemical Parameters
title_full_unstemmed Exploiting the Freshwater Shrimp Neocaridina denticulata as Aquatic Invertebrate Model to Evaluate Nontargeted Pesticide Induced Toxicity by Investigating Physiologic and Biochemical Parameters
title_short Exploiting the Freshwater Shrimp Neocaridina denticulata as Aquatic Invertebrate Model to Evaluate Nontargeted Pesticide Induced Toxicity by Investigating Physiologic and Biochemical Parameters
title_sort exploiting the freshwater shrimp neocaridina denticulata as aquatic invertebrate model to evaluate nontargeted pesticide induced toxicity by investigating physiologic and biochemical parameters
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7999401/
https://www.ncbi.nlm.nih.gov/pubmed/33807713
http://dx.doi.org/10.3390/antiox10030391
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