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蜕膜自然杀伤细胞的多面性。

The multiple faces of the decidual natural killer cell.

机构信息

Laboratory for Reproductive Medicine & Immunology, San Jose, CA, USA.

出版信息

Am J Reprod Immunol. 2013 Jul;70(1):1-9. doi: 10.1111/aji.12103. Epub 2013 Feb 28.

Abstract

The decidual NK (dNK) cell is called on to support placental growth by providing an array of growth factors that directly transform the spiral artery and direct trophoblast invasion. Successful transformation is dependent upon adequate stimulation paradoxically stimulating the cell for placental support rather than cytotoxicity. With the identification of its supportive role, the presence of an intact cytotoxic mechanism has been confusing. Investigators have found that the cell remains fully capable of cytotoxic responses particularly in response to pathogen-specific signals. We postulate a dual threshold model where moderate stimulation results in release of stimulatory factors supporting placentation while intense stimulation, particularly triggered through pathogen-specific receptors, restores the cell to its protective, cytotoxic, role. Individual dNK cells mature attaining the capacity to respond to the delivery of cognate signals. The process, known as 'licensing' tunes responsiveness to the degree to which stochastically selected inhibitory receptors block cytotoxic response to self. A changing licensing milieu within the decidua may result in altered and unsuitable receptor expression. We postulate that a heterogeneous population of dNK cells where cells inappropriately licensed for the milieu contributes to pathology.

摘要

蜕膜自然杀伤 (dNK) 细胞通过提供一系列生长因子来支持胎盘生长,这些生长因子可直接转化螺旋动脉并指导滋养细胞侵袭。成功的转化取决于适当的刺激,这是一种矛盾的刺激方式,目的是为了支持胎盘而不是细胞毒性。随着其支持作用的确定,其完整的细胞毒性机制一直令人困惑。研究人员发现,该细胞仍然完全能够产生细胞毒性反应,特别是在对病原体特异性信号的反应中。我们假设存在一个双重阈值模型,其中适度的刺激会导致释放支持胎盘形成的刺激因子,而强烈的刺激,特别是通过病原体特异性受体触发的刺激,会使细胞恢复到其保护和细胞毒性作用。单个 dNK 细胞成熟后,获得了对同源信号传递做出反应的能力。这个过程被称为“许可”,可以根据随机选择的抑制性受体阻止对自身的细胞毒性反应的程度来调节反应性。蜕膜内许可环境的变化可能导致受体表达的改变和不适当。我们假设存在一个异质的 dNK 细胞群体,其中细胞对环境的许可不当,这可能导致病理学改变。

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