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首页> 外文期刊>Cardiovascular Research >Natural killer cell crosstalk with allogeneic human cardiac-derived stem/progenitor cells controls persistence
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Natural killer cell crosstalk with allogeneic human cardiac-derived stem/progenitor cells controls persistence

机译:与同种异体人类心脏干/祖细胞的自然杀伤细胞串扰控制持久性

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Aims Allogeneic human cardiac-derived stem/progenitor cells (hCPC) are promising candidates for cardiac repair. They interact with T cells, major effectors of the adaptive immune response, inducing 'paracrine' anti-inflammatory effects that could sustain tissue repair/regeneration. Natural killer (NK) cells are major effectors of the innate immune system that might influence the persistence of therapeutic stem/progenitor cells. Therefore, to get through successful clinical translation and anticipate allogeneic hCPC persistence, we defined their crosstalk with NK cells under steady state and inflammatory conditions. Methods and results By using an experimental model of allogeneic hCPC/NK cell interaction, we demonstrate that hCPC moderately trigger cytokine-activated, but not resting, NK cell killing that occurs through formation of lytic immunological synapse and NK cell natural cytotoxicity. Yet, inflammatory context substantially decreases their capacity to set cytokine-activated NK cell functions towards NK cell-cytotoxicity and protects hCPC from NK cell killing. Allogeneic hCPC also restrain NK cell-cytotoxicity against conventional targets and inflammatory cytokine secretion biasing the latter towards anti-inflammatory cytokines. Thus, hCPC are unprivileged targets for allogeneic NK cells and can restrain NK cell functions in allogeneic setting. Conclusion Collectively, our data suggest that allogeneic hCPC/innate NK cells crosstalk within injured inflamed myocardium would permit their retention and might contribute to attenuating inflammation and to preventing adverse cardiac remodelling.
机译:目的同种异体人类心脏来源的干/祖细胞(hCPC)是有希望进行心脏修复的候选药物。它们与T细胞相互作用,T细胞是适应性免疫反应的主要效应物,诱导“旁分泌”抗炎作用,可以维持组织修复/再生。天然杀伤(NK)细胞是先天免疫系统的主要效应物,可能会影响治疗性干/祖细胞的持久性。因此,为了获得成功的临床翻译结果并预测同种hCPC的持久性,我们定义了它们在稳定状态和炎性条件下与NK细胞的串扰。方法和结果通过使用同种异体hCPC / NK细胞相互作用的实验模型,我们证明了hCPC适度触发通过裂解性免疫突触和NK细胞自然细胞毒性形成的细胞因子激活的NK细胞杀伤,但不是静止的。然而,炎性背景实质上降低了它们将细胞因子激活的NK细胞功能设定为对NK细胞毒性的能力,并保护hCPC免受NK细胞杀伤。同种异体hCPC还可以抑制NK细胞对常规靶标的细胞毒性和炎症细胞因子的分泌,从而使后者倾向于抗炎细胞因子。因此,hCPC是同种异体NK细胞的无特权目标,并且可以在同种异体环境中抑制NK细胞的功能。结论总的来说,我们的数据表明,异基因的hCPC /先天性NK细胞在受损的发炎心肌内发生串扰会保留它们,并可能减轻炎症反应并防止不良的心脏重塑。

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