通过益生菌促进肠道脑轴调节铅暴露斑马鱼模型的神经免疫反应

A. A. Margret, M. Sukanya, C. Johnson, S. Kulandaivel, N. Nagendran
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引用次数: 1

摘要

揭示肠道生物群落的功效对健康有重大影响。不平衡的微生物组成与许多常见疾病有关,如肠道生态失调、精神畸形和免疫失衡。食用益生菌可以对肠道生物群系产生积极的影响。这将刺激重金属污染预期的神经保护和免疫调节。铅是神经毒素的主要来源,可引起神经畸形。对从凝乳中分离的乳杆菌进行了鉴定,以确定其特异性。在标准条件下饲养斑马鱼,并对诱导神经毒素铅的强度进行临床前评估。胚胎毒性实验、免疫调节效应和动物行为模型证实了神经毒性的后果。采用新颖的水箱潜水法,对不同浓度的标准抗抑郁药分离菌毒性及其对认知行为的影响进行了分析。通过血液学和组织病理学研究证实,所有测试样本的底部停留时间减少,也可以抑制动物的行为。淋巴细胞形态的改变被处理后的测试样品所平衡。本研究为益生菌作为抗重金属毒性的神经保护剂和免疫调节剂的双重潜力奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Facilitating the gut brain axis by probiotic bacteria to modulate neuroimmune response on lead exposed zebra fish models
Unravelling the efficacy of gut biome has a major impact on health. An unbalanced microbiome composition is linked to many common illnesses such as gut dysbiosis, mental deformities and immunological imbalance. An optimistic influence on the gut biome can be made by consuming probiotics. This would stimulate neuroprotection and immunomodulation intended by heavy metals pollution. Lead is a major source of neurotoxin that can induce neural deformities. Lactobacillus species isolated from curd were characterized to confirm its specificity. Zebra fish was reared at standard conditions and preclinical assessment on the intensity of induced neurotoxin lead was performed. The embryo toxic assay, immunomodulation effects and animal behavioural models endorsed the consequence of neurotoxicity. Different concentrations of bacterial isolate with standard antidepressant was considered for analysing the vigour of toxicity and its influence on cognitive behaviour by novel tank diving method. The restrain in the animal behaviour was also conferred by all the test samples with a decreased bottom dwelling time which was authenticated with haematology and histopathological studies. The alterations in morphology of the lymphocytes were balanced by the treated test samples. This study paves a twofold potential of probiotic as neuroprotectant and immune modulator against heavy metal toxicity.
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