Kale Oluwafemi Ezekiel, Adebesin Adaeze Ngozi, Kale Temitope Funmi, Oladoja Farouk, Osonuga Ifabunmi Oduyemi, Soyinka Oluwatosin Omobola, Uwaezuoke Deborah, Olajide Oluwadunsin, Akinloye Victor, Adedugbe Olatoun, Odibosa Faith, Akindele Favour, Oladele Bolaji, Wahab Mariam, Ebele Chukwuemeka Cinderella
Department of Pharmacology and Therapeutics, Faculty of Basic Medical Sciences, Olabisi Onabajo University, Ago-Iwoye, Sagamu Campus, Ogun State, P.M.B. 2001 Ikeja, Nigeria.
Department of Clinical Pharmacology, Benjamin Carson (Snr.) College of Health and Medical Science, Babcock University, Ilishan Remo, Ogun, Nigeria.
Heliyon. 2023 Mar 30;9(4):e15048. doi: 10.1016/j.heliyon.2023.e15048. eCollection 2023 Apr.
Comparative toxicology continues to provide information on how the age of every living organism affects the frequency, severity, and nature of the potentially toxic agent. We investigated the effect of glyphosate-based herbicide (GBH) exposure on gametes and four developmental stages of Clarius gariepinus (C) (African Catfish). Gametes from healthy gravid female and mature male C were exposed to GBH in sublethal concentrations of 0.0 (G1, control), 0.02 (G2), 0.05 (G3), 0.1 (G4), 0.5 (G5), and 1.0 (G6) mg/L for 24 h at the standard conditions of temperature and water quality parameters. The surviving embryos were examined microscopically for malformation rate and edema occurrence post-GBH exposure. In a separate experiment; postfryer, fingerling, posfingerling and juvenile C were exposed to G1, G2, G3, G4, G5 and G6 of GBH concentrations daily consecutively for 28 days. Fish growth performance, behavioural changes, haematology, oxidative stress, and histology were assessed. From our results, GBH showed altered morphology 24 h post-fertilization, decreased body weight, growth parameters, behavioural indices, and survival rate in the various developmental stages. Oxidative stress metabolite, malondialdehyde levels, increases in the postfryer > postfingerlin > fingerling > juvenile C following GBH exposure. Leukopenia and thrombocytosis were observed in the postfingerlings and juvenile fish and decrease in the levels of reduced glutathione and activity of superoxide dismutase compared with the control. Histology showed gross necrosis of the fish gills, liver, brain, and cardiac myocytes in the exposed fish. Hence, our findings provide an insight into C developmental toxicity due to GBH, although continuous measurement of glyphosate levels in the fish and fish environment is essential.
比较毒理学持续提供关于每个生物体的年龄如何影响潜在有毒物质的频率、严重程度和性质的信息。我们研究了基于草甘膦的除草剂(GBH)暴露对尖吻鲈(C)(非洲鲶鱼)配子和四个发育阶段的影响。将来自健康怀孕雌鱼和成熟雄鱼的配子在温度和水质参数的标准条件下,以0.0(G1,对照)、0.02(G2)、0.05(G3)、0.1(G4)、0.5(G5)和1.0(G6)mg/L的亚致死浓度暴露于GBH中24小时。在GBH暴露后,通过显微镜检查存活胚胎的畸形率和水肿发生率。在另一个实验中, fryer期、鱼种期、postfingerling期和幼鱼期的C鱼每天连续暴露于GBH浓度的G1、G2、G3、G4、G5和G6中28天。评估了鱼类的生长性能、行为变化、血液学、氧化应激和组织学。根据我们的结果,GBH在受精后24小时显示出形态改变,在各个发育阶段体重、生长参数、行为指标和存活率下降。氧化应激代谢物丙二醛水平在GBH暴露后, fryer期>postfingerling期>鱼种期>幼鱼期升高。在postfingerling期和幼鱼中观察到白细胞减少和血小板增多,与对照组相比,还原型谷胱甘肽水平和超氧化物歧化酶活性降低。组织学显示暴露鱼的鳃、肝脏、脑和心肌细胞出现严重坏死。因此,我们的研究结果提供了对GBH导致的C鱼发育毒性的见解,尽管持续测量鱼和鱼环境中的草甘膦水平至关重要。