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Effects of copper/graphene oxide core-shell nanoparticles on Rhipicephalus ticks and their detoxification enzymes
by
Gad, Mohammed E.
, Senbill, Haytham
, Zeb, Jehan
, Fahmy, Alaa
, Gangan, Amr
, Saeed, Ahmed M.
in
631/601/1466
/ 639/638/161
/ 639/638/298
/ 639/638/440
/ 639/638/542
/ Acaricides - chemistry
/ Acaricides - pharmacology
/ Acetylcholinesterase
/ Acetylcholinesterase - metabolism
/ Animals
/ Antioxidants
/ Copper
/ Copper - chemistry
/ Copper - pharmacology
/ Copper/graphene oxide
/ Detoxification
/ Enzymes
/ Graphene
/ Graphite - chemistry
/ Graphite - pharmacology
/ Humanities and Social Sciences
/ Inactivation, Metabolic
/ Introduced species
/ Metal Nanoparticles - chemistry
/ multidisciplinary
/ Nanoparticles
/ Nanoparticles - chemistry
/ Nanopesticides
/ Pesticides
/ Proteins
/ Rhipicephalus - drug effects
/ Rhipicephalus - enzymology
/ Rhipicephalus rutilus
/ Rhipicephalus turanicus
/ Science
/ Science (multidisciplinary)
/ Superoxide Dismutase - metabolism
2025
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Effects of copper/graphene oxide core-shell nanoparticles on Rhipicephalus ticks and their detoxification enzymes
by
Gad, Mohammed E.
, Senbill, Haytham
, Zeb, Jehan
, Fahmy, Alaa
, Gangan, Amr
, Saeed, Ahmed M.
in
631/601/1466
/ 639/638/161
/ 639/638/298
/ 639/638/440
/ 639/638/542
/ Acaricides - chemistry
/ Acaricides - pharmacology
/ Acetylcholinesterase
/ Acetylcholinesterase - metabolism
/ Animals
/ Antioxidants
/ Copper
/ Copper - chemistry
/ Copper - pharmacology
/ Copper/graphene oxide
/ Detoxification
/ Enzymes
/ Graphene
/ Graphite - chemistry
/ Graphite - pharmacology
/ Humanities and Social Sciences
/ Inactivation, Metabolic
/ Introduced species
/ Metal Nanoparticles - chemistry
/ multidisciplinary
/ Nanoparticles
/ Nanoparticles - chemistry
/ Nanopesticides
/ Pesticides
/ Proteins
/ Rhipicephalus - drug effects
/ Rhipicephalus - enzymology
/ Rhipicephalus rutilus
/ Rhipicephalus turanicus
/ Science
/ Science (multidisciplinary)
/ Superoxide Dismutase - metabolism
2025
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Effects of copper/graphene oxide core-shell nanoparticles on Rhipicephalus ticks and their detoxification enzymes
by
Gad, Mohammed E.
, Senbill, Haytham
, Zeb, Jehan
, Fahmy, Alaa
, Gangan, Amr
, Saeed, Ahmed M.
in
631/601/1466
/ 639/638/161
/ 639/638/298
/ 639/638/440
/ 639/638/542
/ Acaricides - chemistry
/ Acaricides - pharmacology
/ Acetylcholinesterase
/ Acetylcholinesterase - metabolism
/ Animals
/ Antioxidants
/ Copper
/ Copper - chemistry
/ Copper - pharmacology
/ Copper/graphene oxide
/ Detoxification
/ Enzymes
/ Graphene
/ Graphite - chemistry
/ Graphite - pharmacology
/ Humanities and Social Sciences
/ Inactivation, Metabolic
/ Introduced species
/ Metal Nanoparticles - chemistry
/ multidisciplinary
/ Nanoparticles
/ Nanoparticles - chemistry
/ Nanopesticides
/ Pesticides
/ Proteins
/ Rhipicephalus - drug effects
/ Rhipicephalus - enzymology
/ Rhipicephalus rutilus
/ Rhipicephalus turanicus
/ Science
/ Science (multidisciplinary)
/ Superoxide Dismutase - metabolism
2025
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Effects of copper/graphene oxide core-shell nanoparticles on Rhipicephalus ticks and their detoxification enzymes
Journal Article
Effects of copper/graphene oxide core-shell nanoparticles on Rhipicephalus ticks and their detoxification enzymes
2025
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Overview
Nanopesticides have been recently introduced as novel pesticides to overcome the drawbacks of using traditional synthetic pesticides. The present study evaluated the acaricidal activity of Copper/Graphene oxide core-shell nanoparticles against two tick species,
Rhipicephalus rutilus
and
Rhipicephalus turanicus
. The Copper/Graphene oxide core-shell nanoparticles were synthetized through the solution plasma (SP) method under different conditions. The nanoparticles synthesized at 180 W and 45 min were highly toxic to
Rh. rutilus
and
Rh. turanicus
, with 50% lethal concentration (LC
50
) values of 248.1 and 195.7 mg ml
−1
, respectively, followed by those which were synthesized at 120 W/30 mins (LC
50
= 581.5 and 526.5 mg ml
−1
), 120 W/15 mins (LC
50
= 606.9 and 686.7 mg ml
−1
), and 100/45 mins (LC
50
= 792.9 and 710.7 mg ml
−1
), after 24 h of application. The enzyme assays revealed that 180 W/45 min treatment significantly inhibited the activity of acetylcholinesterase (115 ± 0.81 and 123 ± 0.33 U/ mg protein/min) and superoxide dismutase (290 ± 0.18 and 310 ± 0.92 U/ mg protein/min) in
Rh. rutilus
and
Rh. turanicus
, respectively, as compared with the negative control. The results also revealed a significantly increased catalase activity (895 ± 0.37 and 870 ± 0.31 U/ mg protein/min) in
Rh. rutilus
and
Rh. turanicus
, respectively. The above results indicated that Copper/Graphene oxide core-shell nanoparticles could be a promising alternatives for the management of ticks.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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