Anadón A, Arés I, Martínez M A, et al. Pyrethrins and Synthetic Pyrethroids: Use in Veterinary Medicine [M]//Ramawat K, Mérillon J M. Natural Products. Berlin, Heidelberg: Springer, 2013: 4061-4086
|
宋雪英, 刘伟健, 孙百惠, 等. 溴氰菊酯的急性毒性效应与毒性机理研究进展[J]. 沈阳大学学报(自然科学版), 2020, 32(1): 13-19 Song X Y, Liu W J, Sun B H, et al. Advances in study of acute toxicity effects and toxicity mechanisms of deltamethrin [J]. Journal of Shenyang University (Natural Science), 2020, 32(1): 13-19(in Chinese)
|
Ullah S, Li Z Q, Ul Arifeen M Z, et al. Multiple biomarkers based appraisal of deltamethrin induced toxicity in silver carp (Hypophthalmichthys molitrix) [J]. Chemosphere, 2019, 214: 519-533
|
国家市场监督管理总局, 国家标准化管理委员会. 生活饮用水卫生标准: GB 5749—2022[S]. 北京: 中国标准出版社, 2020
|
Andersen H R, David A, Freire C, et al. Pyrethroids and developmental neurotoxicity: A critical review of epidemiological studies and supporting mechanistic evidence [J]. Environmental Research, 2022, 214(Pt 2): 113935
|
Wang N, Huang M Y, Guo X Y, et al. Urinary metabolites of organophosphate and pyrethroid pesticides and neurobehavioral effects in Chinese children [J]. Environmental Science & Technology, 2016, 50(17): 9627-9635
|
Elser B A, Hing B, Stevens H E. A narrative review of converging evidence addressing developmental toxicity of pyrethroid insecticides [J]. Critical Reviews in Toxicology, 2022, 52(5): 371-388
|
Pitzer E M, Williams M T, Vorhees C V. Effects of pyrethroids on brain development and behavior: Deltamethrin [J]. Neurotoxicology and Teratology, 2021, 87: 106983
|
Vellingiri B, Chandrasekhar M, Sri Sabari S, et al. Neurotoxicity of pesticides: A link to neurodegeneration [J]. Ecotoxicology and Environmental Safety, 2022, 243: 113972
|
Lu Q R, Sun Y Q, Ares I, et al. Deltamethrin toxicity: A review of oxidative stress and metabolism [J]. Environmental Research, 2019, 170: 260-281
|
Field L M, Emyr Davies T G, O’Reilly A O, et al. Voltage-gated sodium channels as targets for pyrethroid insecticides [J]. European Biophysics Journal, 2017, 46(7): 675-679
|
Ullah S, Li Z Q, Zuberi A, et al. Biomarkers of pyrethroid toxicity in fish [J]. Environmental Chemistry Letters, 2019, 17(2): 945-973
|
Hossain M M, Liu J, Richardson J R. Pyrethroid insecticides directly activate microglia through interaction with voltage-gated sodium channels [J]. Toxicological Sciences: An Official Journal of the Society of Toxicology, 2017, 155(1): 112-123
|
Chrustek A, Hołyńska-Iwan I, Dziembowska I, et al. Current research on the safety of pyrethroids used as insecticides [J]. Medicina, 2018, 54(4): 61
|
Goyal R, Spencer K A, Borodinsky L N. From neural tube formation through the differentiation of spinal cord neurons: Ion channels in action during neural development [J]. Frontiers in Molecular Neuroscience, 2020, 13: 62
|
Shen H Y, Bocksteins E, Kondrychyn I, et al. Functional antagonism of voltage-gated K+ channel α-subunits in the developing brain ventricular system [J]. Development, 2016, 143(22): 4249-4260
|
Feriani A, Tir M, Hachani R, et al. Permethrin induced arterial retention of native and oxidized LDL in rats by promoting inflammation, oxidative stress and affecting LDL receptors, and collagen genes [J]. Ecotoxicology and Environmental Safety, 2021, 207: 111269
|
He B N, Wang X, Wei L, et al. β-cypermethrin and its metabolite 3-phenoxybenzoic acid induce cytotoxicity and block granulocytic cell differentiation in HL-60 cells [J]. Acta Biochimica et Biophysica Sinica, 2018, 50(8): 740-747
|
Olivares C I, Field J A, Simonich M, et al. Arsenic (Ⅲ, Ⅴ), indium (Ⅲ), and gallium (Ⅲ) toxicity to zebrafish embryos using a high-throughput multi-endpoint in vivo developmental and behavioral assay [J]. Chemosphere, 2016, 148: 361-368
|
MacRae C A, Peterson R T. Zebrafish as tools for drug discovery [J]. Nature Reviews Drug Discovery, 2015, 14(10): 721-731
|
Stewart A M, Braubach O, Spitsbergen J, et al. Zebrafish models for translational neuroscience research: From tank to bedside [J]. Trends in Neurosciences, 2014, 37(5): 264-278
|
Abe F R, Mendonça J N, Moraes L A, et al. Toxicological and behavioral responses as a tool to assess the effects of natural and synthetic dyes on zebrafish early life [J]. Chemosphere, 2017, 178: 282-290
|
Velki M, di Paolo C, Nelles J, et al. Diuron and diazinon alter the behavior of zebrafish embryos and larvae in the absence of acute toxicity [J]. Chemosphere, 2017, 180: 65-76
|
Hanigan D, Truong L, Simonich M, et al. Zebrafish embryo toxicity of 15 chlorinated, brominated, and iodinated disinfection by-products [J]. Journal of Environmental Sciences (China), 2017, 58: 302-310
|
卯明彩, 孟瑞媛, 李亚梦, 等. 环丙沙星对斑马鱼早期发育阶段的神经毒性研究[J]. 生态毒理学报, 2023, 18(4): 411-420
Mao M C, Meng R Y, Li Y M, et al. Neurotoxicity of ciprofloxacin on early life stages of Danio rerio [J]. Asian Journal of Ecotoxicology, 2023, 18(4): 411-420(in Chinese)
|
Tufi S, Leonards P, Lamoree M, et al. Changes in neurotransmitter profiles during early zebrafish (Danio rerio) development and after pesticide exposure [J]. Environmental Science & Technology, 2016, 50(6): 3222-3230
|
Xia S Y, Zhu X H, Yan Y P, et al. Developmental neurotoxicity of antimony (Sb) in the early life stages of zebrafish [J]. Ecotoxicology and Environmental Safety, 2021, 218: 112308
|
Chen J F, Li J N, Jiang H, et al. Developmental co-exposure of TBBPA and titanium dioxide nanoparticle induced behavioral deficits in larval zebrafish [J]. Ecotoxicology and Environmental Safety, 2021, 215: 112176
|
Liu X Y, Zhang Q P, Li S B, et al. Developmental toxicity and neurotoxicity of synthetic organic insecticides in zebrafish (Danio rerio): A comparative study of deltamethrin, acephate, and thiamethoxam [J]. Chemosphere, 2018, 199: 16-25
|
Pamanji R, Bethu M S, Yashwanth B, et al. Developmental toxic effects of monocrotophos, an organophosphorous pesticide, on zebrafish (Danio rerio) embryos [J]. Environmental Science and Pollution Research, 2015, 22(10): 7744-7753
|
Truong L, Gonnerman G, Simonich M T, et al. Assessment of the developmental and neurotoxicity of the mosquito control larvicide, pyriproxyfen, using embryonic zebrafish [J]. Environmental Pollution, 2016, 218: 1089-1093
|
Rosa J G S, Lima C, Lopes-Ferreira M. Zebrafish larvae behavior models as a tool for drug screenings and pre-clinical trials: A review [J]. International Journal of Molecular Sciences, 2022, 23(12): 6647
|
Vaz R, Hofmeister W, Lindstrand A. Zebrafish models of neurodevelopmental disorders: Limitations and benefits of current tools and techniques [J]. International Journal of Molecular Sciences, 2019, 20(6): 1296
|
Kinkhabwala A, Riley M, Koyama M, et al. A structural and functional ground plan for neurons in the hindbrain of zebrafish [J]. Proceedings of the National Academy of Sciences of the United States of America, 2011, 108(3): 1164-1169
|
Koyama M, Kinkhabwala A, Satou, et al. Mapping a sensory-motor network onto a structural and functional ground plan in the hindbrain [J]. Proceedings of the National Academy of Sciences of the United States of America, 2011, 108(3): 1170-1175
|
Randlett O, Wee C L, Naumann E A, et al. Whole-brain activity mapping onto a zebrafish brain atlas [J]. Nature Methods, 2015, 12(11): 1039-1046
|
Sands B, Mgidiswa N, Nyamukondiwa C, et al. Environmental consequences of deltamethrin residues in cattle feces in an African agricultural landscape [J]. Ecology and Evolution, 2018, 8(5): 2938-2946
|
Miao W Y, Jiang Y M, Hong Q Y, et al. Systematic evaluation of the toxicological effects of deltamethrin exposure in zebrafish larvae [J]. Environmental Toxicology and Pharmacology, 2023, 100: 104155
|
Liu X Y, Gao Q, Feng Z Y, et al. Protective effects of spermidine and melatonin on deltamethrin-induced cardiotoxicity and neurotoxicity in zebrafish [J]. Cardiovascular Toxicology, 2021, 21(1): 29-41
|
Li M, Liu X Y, Feng X Z. Cardiovascular toxicity and anxiety-like behavior induced by deltamethrin in zebrafish (Danio rerio) larvae [J]. Chemosphere, 2019, 219: 155-164
|
Boulanger-Weill J, Sumbre G. Functional integration of newborn neurons in the zebrafish optic tectum [J]. Frontiers in Cell and Developmental Biology, 2019, 7: 57
|
尚春峰, 穆宇, 杜久林. 以透明脑, 观澄明心: 斑马鱼神经功能研究进展[J]. 中国科学: 生命科学, 2015, 45(3): 223-236
Shang C F, Mu Y, Du J L. Zebrafish swimming into neuroscience research: A visible mind in a transparent brain [J]. Scientia Sinica Vitae, 2015, 45(3): 223-236(in Chinese)
|
Chueh T C, Hsu L S, Kao C M, et al. Transcriptome analysis of zebrafish embryos exposed to deltamethrin [J]. Environmental Toxicology, 2017, 32(5): 1548-1557
|
Kumar K, Patro N, Patro I. Impaired structural and functional development of cerebellum following gestational exposure of deltamethrin in rats: Role of reelin [J]. Cellular and Molecular Neurobiology, 2013, 33(5): 731-746
|
Yang Y, Wu N X, Wang C L. Toxicity of the pyrethroid bifenthrin insecticide [J]. Environmental Chemistry Letters, 2018, 16(4): 1377-1391
|