Effects of two strobilurins (azoxystrobin and Picoxystrobin (cas 117428-22-5)) on embryonic development and enzyme activities in juveniles and adult fish livers of zebrafish (Danio rerio)
-
Add time:07/13/2019 Source:sciencedirect.com
Azoxystrobin and picoxystrobin are two primary strobilurin fungicides used worldwide. This study was conducted to test their effects on embryonic development and the activity of several enzyme in the zebrafish (Danio rerio). After fish eggs were separately exposed to azoxystrobin and picoxystrobin from 24 to 144 h post fertilization (hpf), the mortality, hatching, and teratogenetic rates were measured. Additionally, effects of azoxystrobin and picoxystrobin on activities of three important antioxidant enzymes [catalase (CAT), superoxide dismutase (SOD) and peroxidase (POD)] and two primary detoxification enzymes [carboxylesterase (CarE) and glutathione S-transferase (GST)] and malondialdehyde (MDA) content in zebrafish larvae (96 h) and livers of adult zebrafish of both sexes were also assessed for potential toxicity mechanisms. Based on the embryonic development test results, the mortality, hatching, and teratogenetic rates of eggs treated with azoxystrobin and picoxystrobin all showed significant dose- and time-dependent effects, and the 144-h LC50 values of azoxystrobin and picoxystrobin were 1174.9 and 213.8 μg L−1, respectively. In the larval zebrafish (96 h) test, activities of CAT, POD, CarE, and GST and MDA content in azoxystrobin and picoxystrobin-treated zebrafish larvae increased significantly with concentrations of the pesticides compared with those in the control. We further revealed that azoxystrobin and picoxystrobin exposure both caused significant oxidative stress in adult fish livers and the changes differed between the sexes. Our results indicated that picoxystrobin led to higher embryonic development toxicity and oxidative stress than azoxystrobin in zebrafish and the male zebrafish liver had stronger ability to detoxify than that of the females.
We also recommend Trading Suppliers and Manufacturers of Picoxystrobin (cas 117428-22-5). Pls Click Website Link as below: cas 117428-22-5 suppliers
Prev:Effect of substituents on properties of diphenylphosphoryl-substituted bis-cyclometalated Ir(III) complexes with a picolinic acid as ancillary ligand
Next:Developmental toxicity, oxidative stress and immunotoxicity induced by three strobilurins (pyraclostrobin, trifloxystrobin and Picoxystrobin (cas 117428-22-5)) in zebrafish embryos) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Exploring alternative hapten tethering sites for high-affinity anti-Picoxystrobin (cas 117428-22-5) antibody generation07/22/2019
- Hapten synthesis, monoclonal antibody generation, and development of competitive immunoassays for the analysis of Picoxystrobin (cas 117428-22-5) in beer07/20/2019
- Development of monoclonal antibody-based competitive immunoassays for the detection of Picoxystrobin (cas 117428-22-5) in cereal and oilseed flours07/21/2019
- Electrochemical determination of Picoxystrobin (cas 117428-22-5) on boron-doped diamond electrode: Square-wave voltammetry versus BIA-multiple pulse amperometry07/19/2019
- Fluorescence polarisation immunoassays for strobilurin fungicides kresoxim-methyl, trifloxystrobin and Picoxystrobin (cas 117428-22-5)07/18/2019
- Determination of the fungicide Picoxystrobin (cas 117428-22-5) using anodic stripping voltammetry on a metal film modified glassy carbon electrode07/17/2019
- Thiamethoxam and Picoxystrobin (cas 117428-22-5) reduce the survival and overload the hepato-nephrocitic system of the Africanized honeybee07/16/2019
- Soil microorganisms' carbon transformation test for Picoxystrobin (cas 117428-22-5) 25% SC (w/v) in loamy sand soil07/15/2019
- Developmental toxicity, oxidative stress and immunotoxicity induced by three strobilurins (pyraclostrobin, trifloxystrobin and Picoxystrobin (cas 117428-22-5)) in zebrafish embryos07/14/2019


