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Enhanced Immunosuppression of T Cells by Sustained Presentation of Bioactive Interferon‐γ Within Three‐Dimensional Mesenchymal Stem Cell Constructs

机译:通过持续呈现三维间充质干细胞构建物中的生物活性干扰素-γ增强T细胞的免疫抑制。

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The immunomodulatory activity of mesenchymal stem/stromal cells (MSCs) to suppress innate and adaptive immune responses offers a potent cell therapy for modulating inflammation and promoting tissue regeneration. However, the inflammatory cytokine milieu plays a critical role in stimulating MSC immunomodulatory activity. In particular, interferon‐γ (IFN‐γ)‐induced expression of indoleamine 2,3‐dioxygenase (IDO) is primarily responsible for MSC suppression of T‐cell proliferation and activation. Although pretreatment with IFN‐γ is commonly used to prime MSCs for immunomodulatory activity prior to transplantation, the transient effects of pretreatment may limit the potential of MSCs to potently modulate immune responses. Therefore, the objective of this study was to investigate whether microparticle‐mediated presentation of bioactive IFN‐γ within three‐dimensional spheroidal MSC aggregates could precisely regulate and induce sustained immunomodulatory activity. Delivery of IFN‐γ via heparin‐microparticles within MSC aggregates induced sustained IDO expression during 1 week of culture, whereas IDO expression by IFN‐γ‐pretreated MSC spheroids rapidly decreased during 2 days. Furthermore, sustained IDO expression induced by IFN‐γ‐loaded microparticles resulted in an increased and sustained suppression of T‐cell activation and proliferation in MSC cocultures with CD3/CD28‐activated peripheral blood mononuclear cells. The increased suppression of T cells by MSC spheroids containing IFN‐γ‐loaded microparticles was dependent on induction of IDO and supported by affecting monocyte secretion from pro‐ to anti‐inflammatory cytokines. Altogether, microparticle delivery of IFN‐γ within MSC spheroids provides a potent means of enhancing and sustaining immunomodulatory activity to control MSC immunomodulation after transplantation and thereby improve the efficacy of MSC‐based therapies aimed at treating inflammatory and immune diseases. S tem C ells T ranslational M edicine 2017;6:223–237
机译:间充质干/基质细胞(MSC)抑制先天性和适应性免疫反应的免疫调节活性为调节炎症和促进组织再生提供了有效的细胞疗法。但是,炎性细胞因子环境在刺激MSC免疫调节活性中起关键作用。特别是干扰素-γ(IFN-γ)诱导的吲哚胺2,3-双加氧酶(IDO)的表达主要负责MSC对T细胞增殖和活化的抑制作用。尽管通常在移植前使用IFN-γ预处理来启动MSC的免疫调节活性,但预处理的短暂作用可能会限制MSC潜在地调节免疫反应的潜力。因此,本研究的目的是调查在三维球形MSC聚集体中微粒介导的生物活性IFN-γ的表达是否可以精确调节并诱导持续的免疫调节活性。在培养的1周内,通过肝素微粒在MSC聚集体中传递IFN-γ诱导了持续的IDO表达,而在IFN-γ预处理的MSC球体中IDO表达迅速下降了2天。此外,由IFN-γ负载的微粒诱导的持续IDO表达导致MSC与CD3 / CD28激活的外周血单核细胞共培养时T细胞活化和增殖的抑制作用增加和持续。含有IFN-γ的MSC球体对T细胞的抑制作用增强取决于IDO的诱导,并通过影响单核细胞从促炎细胞因子到抗炎细胞因子的分泌来支持。总之,在MSC球体中的IFN-γ微粒递送提供了增强和维持免疫调节活性的有效手段,以控制移植后的MSC免疫调节,从而提高了以MSC为基础的治疗炎性和免疫性疾病的疗效。 STEM STEEL跨国翻译医学杂志2017; 6:223–237

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