Anti-Teratogenic Potential of Exogenously Applied Over-The-Counter L-Glutathione Supplement on Ethanol-Induced Teratogenesis in Zebrafish (Danio rerio)

Q4 Agricultural and Biological Sciences Malaysian applied biology Pub Date : 2023-12-30 DOI:10.55230/mabjournal.v52i6.2416
Jordan Ferdin Halili, Jose Miguel Daya, John Vincent Navalan, Lerrie Anne Ipulan-Colet
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Abstract

Glutathione is the body’s most abundant endogenous non-enzymatic antioxidant and is used as a substrate for free radical scavenging in the body, especially during ethanol metabolism. This study aims to shift the paradigm of using glutathione as a whitening agent into a potent antioxidant for therapy, particularly for ethanol-induced teratogenesis in the Philippines. Zebrafish embryos were treated with glutathione at various time points of ethanol exposure and concentration. Pre-treatments, co-treatments, and post-treatments with 100 μM glutathione solution were done to assess the most appropriate time point for glutathione intake upon exposure of the embryo to ethanol. Eye diameter and otic vesicle diameter were chosen as morphological parameters because dysmorphogenesis of these organs resembles mammalian fetal alcohol syndrome disorders. For eye diameter, alleviation of microphthalmia by glutathione was seen in pre-treatment (1% ethanol only) and post-treatment (1% & 1.5%) while co-treatment did not exhibit rescue for eye diameter reduction. For otic vesicle diameter, pre- and co-treatment with glutathione did not exhibit any changes in size but post-treatment showed abnormal enlargement suggesting possible teratogenic effect across all ethanol concentrations. The 2,2-diphenylpicryl-1-hydrazine (DPPH) assay was used as a confirmatory test for the free radical scavenging activity (FRSA) of treated tissues. Pre-treatment with GSH at 1% ethanol showed the highest FRSA while post-treatment showed FRSA insignificantly different to controls. This study suggests that glutathione can alleviate oxidative stress in embryo development which may lead to dysmorphogenesis and that supplementation before and after ethanol exposure may be a viable form of therapy for ethanol-induced teratogenesis.
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外源应用非处方 L-谷胱甘肽补充剂对乙醇诱导的斑马鱼(Danio rerio)畸形发生的抗致畸潜力
谷胱甘肽是人体内最丰富的内源性非酶抗氧化剂,可作为清除体内自由基的底物,尤其是在乙醇代谢过程中。本研究旨在改变谷胱甘肽作为美白剂的使用模式,使其成为一种有效的抗氧化剂,用于治疗,尤其是治疗菲律宾乙醇诱发的畸胎。斑马鱼胚胎在不同的乙醇暴露时间点和浓度下接受谷胱甘肽处理。用 100 μM 谷胱甘肽溶液对斑马鱼胚胎进行预处理、联合处理和后处理,以评估胚胎暴露于乙醇时摄入谷胱甘肽的最合适时间点。选择眼球直径和耳囊直径作为形态学参数,是因为这些器官的畸形发育与哺乳动物的胎儿酒精综合症相似。就眼球直径而言,谷胱甘肽在处理前(仅 1%乙醇)和处理后(1% 和 1.5%)可减轻小眼症,而联合处理则不能挽救眼球直径的缩小。至于耳泡直径,谷胱甘肽处理前和处理后的耳泡直径没有发生任何变化,但处理后的耳泡直径却异常增大,这表明所有浓度的乙醇都可能有致畸作用。2,2-二苯基吡啶-1-肼(DPPH)检测法被用来确认处理组织的自由基清除活性(FRSA)。用浓度为 1%的乙醇进行谷胱甘肽预处理后,自由基清除活性最高,而处理后的自由基清除活性与对照组相比差别不大。这项研究表明,谷胱甘肽可减轻胚胎发育过程中可能导致畸形发生的氧化应激,在接触乙醇前后补充谷胱甘肽可能是治疗乙醇诱发畸胎的一种可行方法。
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来源期刊
Malaysian applied biology
Malaysian applied biology Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
0.60
自引率
0.00%
发文量
69
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