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Human Cardiac-Derived Stem/Progenitor Cells Fine-Tune Monocyte-Derived Descendants Activities toward Cardiac Repair

机译:人心脏衍生的干/祖细胞微调单核细胞衍生的后代对心脏修复的活动

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摘要

Cardiac repair following MI relies on a finely regulated immune response involving sequential recruitment of monocytes to the injured tissue. Monocyte-derived cells are also critical for tissue homeostasis and healing process. Our previous findings demonstrated the interaction of T and natural killer cells with allogeneic human cardiac-derived stem/progenitor cells (hCPC) and suggested their beneficial effect in the context of cardiac repair. Therefore, we investigated here whether monocytes and their descendants could be also modulated by allogeneic hCPC toward a repair/anti-inflammatory phenotype. Through experimental in vitro assays, we assessed the impact of allogeneic hCPC on the recruitment, functions and differentiation of monocytes. We found that allogeneic hCPC at steady state or under inflammatory conditions can incite CCL-2/CCR2-dependent recruitment of circulating CD14+CD16 monocytes and fine-tune their activation toward an anti-inflammatory profile. Allogeneic hCPC also promoted CD14+CD16 monocyte polarization into anti-inflammatory/immune-regulatory macrophages with high phagocytic capacity and IL10 secretion. Moreover, hCPC bended the differentiation of CD14+CD16 monocytes to dendritic cells (DCs) toward anti-inflammatory macrophage-like features and impaired their antigen-presenting function in favor of immune-modulation. Collectively, our results demonstrate that allogeneic hCPC could reshape monocytes, macrophages as well as DCs responses by favoring their anti-inflammatory/tolerogenic activation/polarization. Thereby, therapeutic allogeneic hCPC might also contribute to post-infarct myocardial healing by modeling the activities of monocytes and their derived descendants.
机译:心肌梗死后的心脏修复依赖于精细调节的免疫反应,该免疫反应涉及单核细胞向受损组织的顺序募集。单核细胞衍生的细胞对于组织稳态和愈合过程也至关重要。我们先前的发现证明了T和自然杀伤细胞与同种异体人类心脏干/祖细胞(hCPC)的相互作用,并暗示了它们在心脏修复中的有益作用。因此,我们在这里研究了同种异体hCPC是否还可以朝修复/抗炎表型调节单核细胞及其后代。通过体外实验,我们评估了同种异体hCPC对单核细胞募集,功能和分化的影响。我们发现,同种异体hCPC在稳定状态或炎性条件下均可激发循环CD14 + CD16 -单核细胞的CCL-2 / CCR2依赖性募集并对其激活进行微调抗炎特性。同种异体hCPC还促进CD14 + CD16 -单核细胞极化为具有高吞噬能力和IL10分泌的抗炎/免疫调节巨噬细胞。此外,hCPC使CD14 + CD16 -单核细胞向树突状细胞(DC)的分化趋向于抗炎性巨噬细胞样特征,并削弱了它们的抗原呈递功能,有利于免疫调节。总体而言,我们的研究结果表明,同种异体hCPC可以通过促进单核细胞,巨噬细胞以及DC的反应来重塑它们的抗炎/致耐受性激活/极化作用。因此,通过对单核细胞及其衍生后代的活动进行建模,同种异体治疗性hCPC也可能有助于梗塞后心肌的愈合。

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