首页> 外文期刊>Journal of pineal research >Injury switches melatonin production source from endocrine (pineal) to paracrine (phagocytes) - melatonin in human colostrum and colostrum phagocytes.
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Injury switches melatonin production source from endocrine (pineal) to paracrine (phagocytes) - melatonin in human colostrum and colostrum phagocytes.

机译:损伤将褪黑激素的产生源从内分泌(松果体)转变为旁分泌(吞噬细胞)-人初乳和初乳吞噬细胞中的褪黑激素。

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A large number of data show that melatonin has immunomodulatory properties and is produced by immunocompetent cells; also, some evidence suggests a 'feedback' of the activated immune system on the pineal gland. In this paper, we studied immune-pineal interactions in colostrum obtained from healthy puerperae and mothers with mastitis taking into account that, (a) melatonin levels in milk reflects pineal activity and (b) colostrum quiescent mononuclear and polymorphonuclear phagocytes from healthy mothers in culture are adequate for evaluating the ability of immunocompetent cells to produce melatonin. Here we compared the diurnal and nocturnal melatonin levels in colostrum from healthy puerperae and mothers with mastitis; this is a unique noninvasive model for determining pineal activity in the proinflammatory phase of a defense response. In addition, we determined the 'in vitro' production of melatonin by colostrum immunocompetent cells stimulated by enteropathogenic Escherichia coli or zymosan. Suppression of nocturnal melatonin rise in mothers with mastitis was highly correlated with increased tumor necrosis factor-alpha (TNF-alpha) secretion. This result, interpreted taking into account the presence of the transcription factor nuclear factor kappa B in pineal gland, suggest that the proinflammatory cytokine can inhibit nocturnal pineal melatonin production. On the other hand, stimulated, but not quiescent, immunocompetent cells secreted in the colostrum produced melatonin in vitro. In addition, this production ceases after bacteria killing. These results suggest that during the response to an injury the production of melatonin can be transiently shifted from an endocrine (pineal) to a paracrine (immunocompetent cells) source.
机译:大量数据表明褪黑激素具有免疫调节特性,是由具有免疫功能的细胞产生的。同样,一些证据表明松果体上激活的免疫系统会“反馈”。在本文中,我们研究了从健康的产妇和患有乳腺炎的母亲的初乳中的免疫-松果相互作用,考虑到(a)牛奶中的褪黑激素水平反映了松果体的活动,并且(b)来自健康母亲的初乳静止的单核和多形核吞噬细胞足以评估具有免疫能力的细胞产生褪黑激素的能力。在这里,我们比较了健康产妇和患有乳腺炎的母亲初乳中的褪黑素的昼夜水平。这是一种独特的非侵入性模型,用于确定防御反应促炎阶段的松果体活动。此外,我们确定了由肠致病性大肠杆菌或酵母聚糖刺激的初乳免疫活性细胞在体外“产生”褪黑激素。患有乳腺炎的母亲夜间褪黑激素升高的抑制与肿瘤坏死因子-α(TNF-α)分泌的增加高度相关。考虑到松果体中存在转录因子核因子κB,可以解释该结果,表明促炎细胞因子可以抑制夜间松果体褪黑激素的产生。另一方面,初乳中分泌的刺激的但不是静止的免疫活性细胞在体外产生褪黑激素。另外,在杀死细菌后该生产停止。这些结果表明,在对损伤的反应过程中,褪黑激素的产生可以从内分泌(松果体)瞬时转移到旁分泌(免疫活性细胞)源。

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