螺旋藻作为抗应激剂的分子机制

Priyanka Mishra, Sunil Kumar, J. Malik
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摘要

当处于压力之下时,我们的身体会通过释放激素和触发神经系统来做出反应。传递应激反应的下丘脑-垂体-肾上腺轴负责应激反应的神经内分泌适应。促肾上腺皮质激素释放激素神经元控制下丘脑-垂体-肾上腺功能增高。许多与压力有关的代谢和神经问题都与促肾上腺皮质激素释放激素的合成有关。γ -氨基丁酸(GABA)和GABA能抑制均在控制CRH神经元的活性中发挥重要作用。几种针对GABAa受体并激活GABAa活性的合成药物被用来减轻压力的影响。这些疗法有放松的效果,但也有各种各样的负面影响。由于它们没有副作用并且是无害的,抗压力草药被用作帮助肾上腺系统的替代疗法。螺旋藻(通常被称为“螺旋藻”),对它们的免疫系统调节很好;抗病毒活动;预防癌症,对心血管有益。本文尝试用分子对接的方法评价螺旋藻活性成分的抗胁迫潜力。
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Molecular Mechanistic Insight Spirulina as Anti-stress Agent
When under stress, our body reacts by releasing hormones and triggering the nervous system. The hypothalamic-pituitary-adrenal axis, which transmits the stress response, is in charge of the neuroendocrine adaptation of the stress response. Corticotrophin releasing hormone neurons control hypothalamic-pituitary-adrenal function Increased. Many metabolic and neurological problems linked to stress are associated with the synthesis of corticotrophin releasing hormone. Gamma-aminobutyric acid (GABA) and GABAergic inhibition both play a significant role in controlling the activity of CRH neurons. Several synthetic medicines that target the GABAa receptor and activate GABAa activity are used to lessen the effects of stress. These treatments have relaxing effects but also come with a variety of negative effects. As they have no adverse effects and are harmless, anti-stress herbs are utilised as an alternative therapy to help the adrenal system. Spirulina platensis (commonly referred to as ‘Spirulina’), are well for their Immune system modulation; anti-viral activity; cancer preventive properties, and cardiovascular benefits. In present work an attempt had been made to evaluate the anti-stress potential of active constituent of spirulina by molecular docking.
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