Neurobiology Laboratory, Department of Zoology, School of Life Sciences, Ravenshaw University, Cuttack, 753003, Odisha, India.
Int Microbiol. 2023 Aug;26(3):551-561. doi: 10.1007/s10123-022-00320-2. Epub 2023 Jan 19.
The gut-brain axis directly regulates the brain homeostatic environment; an imbalance in gut microbial composition following ethanol exposure is maleficent. In this context, involvement of probiotics as prophylactic intervention against ethanol-induced neurotoxicity is elusive in the literature. Therefore, the present study was aimed to determine the impact of chronic ethanol exposure on the neurobehavioral response of zebrafish and possible neuroprotection through co-supplementation of probiotic Lactobacillus rhamnosus GG (LGG). Zebrafish were divided into naive, control, ethanol (0.01% v/v), LGG, and ethanol co-supplemented with LGG groups. Neurobehavioral assessment was performed after 7 days of chronic waterborne exposure to ethanol with LGG co-supplementation followed by histopathological studies. The findings indicated that there was a clear alteration in locomotor activity and habitat preference, with animals preferentially migrating toward altered zones on exposure to ethanol. However, co-supplementation of LGG showed restoration against ethanol-induced neurobehavioral and cognitive dysfunction. Brain tissue pyknosis and intestinal epithelial disruption were significantly mitigated on LGG co-supplementation against ethanol in zebrafish. The present study provides a novel approach toward supplementation of probiotics such as LGG in modulation of gut commensal microbiota influencing zebrafish behavior. Moreover, the findings delineate the possible role of probiotics as a curative administration to counter ethanol-persuaded neurological outcomes.
肠脑轴直接调节大脑的内稳态环境;乙醇暴露后肠道微生物组成的失衡是有害的。在这种情况下,益生菌作为预防乙醇诱导的神经毒性的干预措施在文献中尚未得到明确证实。因此,本研究旨在确定慢性乙醇暴露对斑马鱼神经行为反应的影响,以及通过补充益生菌鼠李糖乳杆菌 GG(LGG)可能产生的神经保护作用。斑马鱼被分为正常组、对照组、乙醇组(0.01%v/v)、LGG 组和乙醇联合 LGG 组。在进行为期 7 天的慢性水基乙醇暴露后,通过补充 LGG 进行神经行为评估,然后进行组织病理学研究。研究结果表明,暴露于乙醇后,动物的运动活性和栖息地偏好明显改变,它们更倾向于迁移到改变的区域。然而,LGG 的联合补充显示出对乙醇诱导的神经行为和认知功能障碍的恢复作用。LGG 联合补充可显著减轻乙醇诱导的斑马鱼脑组织固缩和肠道上皮破坏。本研究为补充益生菌(如 LGG)以调节影响斑马鱼行为的肠道共生菌群提供了一种新方法。此外,研究结果还描绘了益生菌作为一种治疗性药物,对抗乙醇诱导的神经学后果的可能作用。