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Nutrition, hormetic stress and health

机译:营养,精神压力和健康

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Hormesis defines an effect where exposure to a low dose of a toxic agent results in a beneficial response. It has been described in organisms exposed to low-dose radiation, heat stress, and chemicals. The effect is characterised by a J-shaped dosea€“response as opposed to a linear dosea€“response. Confirmation of the general phenomena of hormesis has proved difficult due to the lack of appropriate methodology and the absence of well-defined mechanisms to support the experimental observations. In the nutritional field there are few reports of its existence. The clearest illustration of the effect is seen in animals that are energy restricted when there is a clear benefit in the reduction of age-related disease, and an extension of maximum lifespan. DNA microarray experiments have shown that there is a down regulation of the stress-response genes that are up regulated through the ageing process. Electrophilic phytochemicals, that have been shown to have beneficial health effects at low doses, up regulate the antioxidanta€“electrophile response element. This probably occurs through an alteration in the redox state of the target cells which causes activation of protein kinases, the activation of the Nrf2 transcription factor and the up regulation of the phase II enzymes, similar to responses that occur under mild chemical stress. This situation might enable organisms to adapt to stress such that the effects of a subsequent exposure to a harmful challenge are reduced. There may be a permanent alteration in cellular homeostasis, or redox state, if the low level exposure is maintained. It remains to be proven if such a situation occurs in response to chronic low-dose exposure to dietary phytochemicals such that the target cells are better able to respond to a subsequent stress challenge.
机译:兴奋作用定义了一种效应,其中暴露于低剂量的毒剂会产生有益的反应。在暴露于低剂量辐射,热应激和化学物质的生物中已有描述。该效果的特征是呈J形剂量响应,而不是线性剂量响应。由于缺乏适当的方法论,也缺乏确定的机制来支持实验观察,因此难以确定一般的兴奋现象。在营养领域中,几乎没有关于其存在的报道。当在减少与年龄有关的疾病以及延长最大寿命方面具有明显益处时,这种能量的最清晰的例证出现在能量受限的动物中。 DNA微阵列实验表明,在衰老过程中上调的应激反应基因被下调。低剂量的亲电子植物化学物质已显示出对健康有益的作用,它可以上调抗氧化剂和亲电子反应元素。这可能是由于靶细胞的氧化还原状态发生改变,导致蛋白激酶激活,Nrf2转录因子激活以及II期酶的上调所致,类似于在轻度化学胁迫下发生的反应。这种情况可能使生物体适应压力,从而减少了随后暴露于有害挑战的影响。如果维持低水平接触,则细胞稳态或氧化还原状态可能会发生永久性改变。是否有这种情况是由于对饮食植物化学物质的长期低剂量暴露而发生的,从而使靶细胞能够更好地应对随后的应激挑战。

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