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Helios enhances the preferential differentiation of human fetal CD4 naïve T cells into regulatory T cells.海洛因增强人胎儿 CD4 初始 T 细胞向调节性 T 细胞的优先分化。
Sci Immunol. 2019 Nov 22;4(41). doi: 10.1126/sciimmunol.aav5947.
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Transcriptional Regulation of Differentiation and Functions of Effector T Regulatory Cells.效应性 T 调节细胞分化和功能的转录调控。
Cells. 2019 Aug 20;8(8):939. doi: 10.3390/cells8080939.
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T Helper 9 Cells: A New Player in Immune-Related Diseases.辅助性 T 细胞 9 型:免疫相关性疾病的新角色。
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Singular role for T-BET+CXCR3+ regulatory T cells in protection from autoimmune diabetes.T-BET+CXCR3+调节性T细胞在预防自身免疫性糖尿病中的独特作用。
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Humanized mouse model of mast cell-mediated passive cutaneous anaphylaxis and passive systemic anaphylaxis.肥大细胞介导的被动皮肤过敏反应和被动全身过敏反应的人源化小鼠模型。
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Translating Treg Therapy in Humanized Mice.在人源化小鼠中翻译调节性T细胞疗法。
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Stable inhibitory activity of regulatory T cells requires the transcription factor Helios.调节性T细胞的稳定抑制活性需要转录因子Helios。
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MUCOSAL IMMUNOLOGY. Individual intestinal symbionts induce a distinct population of RORγ⁺ regulatory T cells.黏膜免疫学。个体肠道共生菌诱导出不同群体的RORγ⁺调节性T细胞。
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人源 CD36 单核细胞诱导 Foxp3+CD25+T 细胞具有调节功能,其来源于 CD4 和 CD8 亚群。

Human CD36 monocytes induce Foxp3  CD25 T cells with regulatory functions from CD4 and CD8 subsets.

机构信息

Department of Microbiology and Immunology, Stritch School of Medicine, Loyola University Chicago, Maywood, IL, USA.

Van Kampen Cardio-Pulmonary Research Laboratory, Stritch School of Medicine, Loyola University Chicago, Maywood, IL, USA.

出版信息

Immunology. 2021 Jul;163(3):293-309. doi: 10.1111/imm.13316. Epub 2021 Mar 7.

DOI:10.1111/imm.13316
PMID:33524161
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8207412/
Abstract

The fetal and neonatal immune systems are uniquely poised to generate tolerance to self, maternal and environmental antigens encountered in the womb and shortly after birth. However, the tolerogenic nature of fetal and neonatal immunity can be detrimental in the context of pathogens, leading to overwhelming bacterial infections or chronic viral infections. A variety of mechanisms contribute to fetal and neonatal tolerance, including a propensity to generate Foxp3 regulatory T cells (Treg cells). However, the mechanism(s) of fetal Foxp3 T-cell differentiation, the specific antigen-presenting cells required and factors that inhibit Treg generation after the neonatal period are poorly understood. Here, we demonstrate that a subset of CD14 monocytes expressing the scavenger molecule, CD36, can generate CD4 and CD8 T cells that coexpress Foxp3 and T-bet from both umbilical cord blood. These Foxp3 T-bet T cells potently suppress T-cell proliferation and ameliorate xenogeneic graft-versus-host disease. CD14 CD36 monocytes provide known Treg-inducing signals: membrane-bound transforming growth factor-beta and retinoic acid. Unexpectedly, adult peripheral blood monocytes are also capable of inducing Foxp3 T cells from both cord blood and adult peripheral naïve T cells. The induction of Foxp3 T cells in umbilical cord blood by monocytes was inhibited by the lymphoid fraction of adult peripheral blood cells. These studies highlight a novel immunoregulatory role of monocytes and suggest that antigen presentation by CD36 monocytes may contribute to the peripheral development of Foxp3 T-bet T cells with regulatory functions in both neonates and adults.

摘要

胎儿和新生儿的免疫系统具有独特的优势,可以对在子宫内和出生后不久遇到的自身、母体和环境抗原产生耐受性。然而,在病原体的情况下,胎儿和新生儿免疫的耐受性可能是有害的,导致细菌感染过重或慢性病毒感染。多种机制有助于胎儿和新生儿的耐受,包括产生 Foxp3 调节性 T 细胞(Treg 细胞)的倾向。然而,胎儿 Foxp3 T 细胞分化的机制、所需的特定抗原呈递细胞以及新生儿期后抑制 Treg 生成的因素尚不清楚。在这里,我们证明了表达清道夫分子 CD36 的 CD14 单核细胞亚群可以从脐带血中产生共表达 Foxp3 和 T-bet 的 CD4 和 CD8 T 细胞。这些 Foxp3 T-bet T 细胞强烈抑制 T 细胞增殖并改善异种移植物抗宿主病。CD14 CD36 单核细胞提供已知的 Treg 诱导信号:膜结合转化生长因子-β和视黄酸。出乎意料的是,成人外周血单核细胞也能够从脐带血和成人外周幼稚 T 细胞中诱导 Foxp3 T 细胞。成人外周血淋巴细胞部分抑制了单核细胞对脐带血中 Foxp3 T 细胞的诱导。这些研究强调了单核细胞的新的免疫调节作用,并表明 CD36 单核细胞的抗原呈递可能有助于 Foxp3 T-bet T 细胞在新生儿和成人中的外周发育,具有调节功能。