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胚胎期暴露于大麻二酚会导致胚胎严重畸形,并抑制成年斑马鱼生殖系统的发育。

Cannabidiol exposure during embryonic period caused serious malformation in embryos and inhibited the development of reproductive system in adult zebrafish.

机构信息

Key Laboratory of Agro-products Quality and Safety Control in Storage and Transport Process, Ministry of Agriculture and Rural Affairs/Institute of Food Science and Technology, Chinese Academy of Agricultural Sciences, Beijing 100193, PR China.

Key Laboratory of Agro-products Quality and Safety Control in Storage and Transport Process, Ministry of Agriculture and Rural Affairs/Institute of Food Science and Technology, Chinese Academy of Agricultural Sciences, Beijing 100193, PR China; Western Agricultural Research Center, Chinese Academy of Agricultural Sciences, Changji 831100, PR China.

出版信息

Sci Total Environ. 2024 Nov 10;950:175315. doi: 10.1016/j.scitotenv.2024.175315. Epub 2024 Aug 5.

Abstract

Cannabidiol (CBD) is a non-psychoactive component of cannabis with potential applications in biomedicine, food, and cosmetics due to its analgesic, anti-inflammatory, and anticonvulsant properties. However, increasing reports of adverse CBD exposure events underscore the necessity of evaluating its toxicity. In this study, we investigated the developmental toxicity of CBD in zebrafish during the embryonic (0-4 dpf, days post fertilization) and early larval stages (5-7 dpf). The median lethal concentration of CBD in embryos/larvae is 793.28 μg/L. CBD exhibited concentration-dependent manner (ranging from 250 to 1500 μg/L) in inducing serious malformed somatotypes, like shorter body length, pericardial cysts, vitelline cysts, spinal curvature, and smaller eyes. However, no singular deformity predominates. The 5-month-old zebrafish treated with 100 and 200 μg/L of CBD during the embryonic and early larval stages produced fewer offspring with higher natural mortality and malformation rate. Gonadal growth and gamete development were inhibited. Transcriptomic and metabolomic analyses conducted with 400 μg/L CBD on embryos/larvae from 0 to 5 dpf suggested that CBD promoted the formation and transportation of extracellular matrix components on 1 dpf, promoting abnormal cell division and migration, probably resulting in random malformed somatotypes. It inhibited optical vesicle development and photoreceptors formation on 2 and 3 dpf, resulting in damaged sight and smaller eye size. CBD also induced an integrated stress response on 4 and 5 dpf, disrupting redox, protein, and cholesterol homeostasis, contributing to cellular damage, physiological dysfunction, embryonic death, and inhibited reproductive system and ability in adult zebrafish. At the tested concentrations, CBD exhibited developmental toxicity, lethal toxicity, and reproductive inhibition in zebrafish. These findings demonstrate that CBD threatens the model aquatic animal, highlighting the need for additional toxicological evaluations of CBD before its inclusion in dietary supplements, edible food, and other products.

摘要

大麻二酚(CBD)是大麻的一种非精神活性成分,具有镇痛、抗炎和抗惊厥特性,因此在生物医药、食品和化妆品领域具有应用潜力。然而,越来越多的 CBD 暴露不良事件报告强调了评估其毒性的必要性。在这项研究中,我们在胚胎期(受精后 0-4 天,dpf)和早期幼虫期(5-7 dpf)研究了 CBD 对斑马鱼的发育毒性。胚胎/幼虫的 CBD 半数致死浓度为 793.28μg/L。CBD 以浓度依赖的方式(范围为 250 至 1500μg/L)诱导严重的畸形体型,如体长变短、心包囊肿、卵黄囊肿、脊柱弯曲和眼睛变小。然而,没有单一的畸形占主导地位。在胚胎期和早期幼虫期用 100 和 200μg/L 的 CBD 处理的 5 个月大的斑马鱼产生的后代数量较少,自然死亡率和畸形率较高。性腺生长和配子发育受到抑制。对 0 至 5 dpf 胚胎/幼虫用 400μg/L CBD 进行的转录组和代谢组分析表明,CBD 在 1 dpf 时促进细胞外基质成分的形成和运输,促进异常细胞分裂和迁移,可能导致随机的畸形体型。它在 2 和 3 dpf 时抑制视泡发育和光感受器形成,导致视力受损和眼睛变小。CBD 还在 4 和 5 dpf 时诱导整体应激反应,破坏氧化还原、蛋白质和胆固醇稳态,导致细胞损伤、生理功能障碍、胚胎死亡以及成年斑马鱼生殖系统和能力受到抑制。在测试浓度下,CBD 对斑马鱼表现出发育毒性、致死毒性和生殖抑制作用。这些发现表明 CBD 对模式水生动物构成威胁,强调在将 CBD 纳入膳食补充剂、食用食品和其他产品之前,需要对其进行额外的毒理学评估。

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