Mesenchymal stromal cells induce regulatory T cells via epigenetic conversion of human conventional CD4 T cells in vitro

IF 4 2区 医学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
STEM CELLS Pub Date : 2020-04-30 DOI:10.1002/stem.3185
Rita I. Azevedo, Ekaterina Minskaia, Ana Fernandes-Platzgummer, Ana I. S. Vieira, Cláudia L. da Silva, Joaquim M. S. Cabral, Jo?o F. Lacerda
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引用次数: 35

Abstract

Regulatory T cells (Treg) play a critical role in immune tolerance. The scarcity of Treg therapy clinical trials in humans has been largely due to the difficulty in obtaining sufficient Treg numbers. We performed a preclinical investigation on the potential of mesenchymal stromal cells (MSCs) to expand Treg in vitro to support future clinical trials. Human peripheral blood mononuclear cells from healthy donors were cocultured with allogeneic bone marrow-derived MSCs expanded under xenogeneic-free conditions. Our data show an increase in the counts and frequency of CD4+ CD25high Foxp3+ CD127low Treg cells (4- and 6-fold, respectively) after a 14-day coculture. However, natural Treg do not proliferate in coculture with MSCs. When purified conventional CD4 T cells (Tcon) are cocultured with MSCs, only cells that acquire a Treg-like phenotype proliferate. These MSC-induced Treg-like cells also resemble Treg functionally, since they suppress autologous Tcon proliferation. Importantly, the DNA methylation profile of MSC-induced Treg-like cells more closely resembles that of natural Treg than of Tcon, indicating that this population is stable. The expression of PD-1 is higher in Treg-like cells than in Tcon, whereas the frequency of PDL-1 increases in MSCs after coculture. TGF-β levels are also significantly increased MSC cocultures. Overall, our data suggest that Treg enrichment by MSCs results from Tcon conversion into Treg-like cells, rather than to expansion of natural Treg, possibly through mechanisms involving TGF-β and/or PD-1/PDL-1 expression. This MSC-induced Treg population closely resembles natural Treg in terms of phenotype, suppressive ability, and methylation profile.

Abstract Image

间充质间质细胞通过体外人常规CD4 T细胞的表观遗传转化诱导调节性T细胞
调节性T细胞(Treg)在免疫耐受中起着至关重要的作用。Treg治疗人体临床试验的缺乏主要是由于难以获得足够的Treg数量。我们对间充质基质细胞(MSCs)在体外扩增Treg的潜力进行了临床前研究,以支持未来的临床试验。来自健康供体的人外周血单核细胞与异种骨髓来源的间充质干细胞在无异种条件下共培养。我们的数据显示,在共培养14天后,CD4+ CD25high Foxp3+ CD127low Treg细胞的计数和频率分别增加了4倍和6倍。然而,天然Treg在与MSCs共培养时不会增殖。当纯化的常规CD4 T细胞(Tcon)与MSCs共培养时,只有获得treg样表型的细胞增殖。这些间充质干细胞诱导的Treg样细胞在功能上也类似Treg,因为它们抑制了自体Tcon的增殖。重要的是,msc诱导的Treg样细胞的DNA甲基化谱更接近于天然Treg,而不是Tcon,这表明该群体是稳定的。PD-1在Treg-like细胞中的表达高于Tcon,而在MSCs共培养后,PDL-1的表达频率增加。TGF-β水平也显著增加MSC共培养。总的来说,我们的数据表明,MSCs富集Treg是由于Tcon转化为Treg样细胞,而不是天然Treg的扩增,可能是通过TGF-β和/或PD-1/PDL-1表达的机制。这个msc诱导的Treg群体在表型、抑制能力和甲基化谱方面与天然Treg非常相似。
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来源期刊
STEM CELLS
STEM CELLS 医学-生物工程与应用微生物
CiteScore
10.30
自引率
1.90%
发文量
104
审稿时长
3 months
期刊介绍: STEM CELLS, a peer reviewed journal published monthly, provides a forum for prompt publication of original investigative papers and concise reviews. STEM CELLS is read and written by clinical and basic scientists whose expertise encompasses the rapidly expanding fields of stem and progenitor cell biology. STEM CELLS covers: Cancer Stem Cells, Embryonic Stem Cells/Induced Pluripotent Stem (iPS) Cells, Regenerative Medicine, Stem Cell Technology: Epigenetics, Genomics, Proteomics, and Metabonomics, Tissue-Specific Stem Cells, Translational and Clinical Research.
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