Adipose-derived stem cell modulate tolerogenic dendritic cell-induced T cell regulation is correlated with activation of Notch-NFκB signaling

IF 3.7 3区 医学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Cytotherapy Pub Date : 2024-08-01 DOI:10.1016/j.jcyt.2024.03.482
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Abstract

Background

Adipose-derived stem cells (ASCs) are recognized for their potential immunomodulatory properties. In the immune system, tolerogenic dendritic cells (DCs), characterized by an immature phenotype, play a crucial role in inducing regulatory T cells (Tregs) and promoting immune tolerance. Notch1 signaling has been identified as a key regulator in the development and function of DCs. However, the precise involvement of Notch1 pathway in ASC-mediated modulation of tolerogenic DCs and its impact on immune modulation remain to be fully elucidated. This study aims to investigate the interplay between ASCs and DCs, focusing the role of Notch1 signaling and downstream pathways in ASC-modulated tolerogenic DCs.

Methods

Rat bone marrow-derived myeloid DCs were directly co-cultured with ASCs to generate ASC-treated DCs (ASC-DCs). Notch signaling was inhibited using DAPT, while NFκB pathways were inhibited by NEMO binding domain peptide and si-NIK. Flow cytometry assessed DC phenotypes. Real-time quantitative PCR, Western blotting and immunofluorescence determined the expression of Notch1, Jagged1 and the p52/RelB complex in ASC- DCs.

Results

Notch1 and Jagged1 were highly expressed on both DCs and ASCs. ASC-DCs displayed significantly reduced levels of CD80, CD86 and MHC II compared to mature DCs. Inhibiting the Notch pathway with DAPT reversed the dedifferentiation effects. The percentage of induced CD25+/FOXP3+/CD4+ Tregs decreased when ASC-DCs were treated with DAPT (inhibition of the Notch pathway) and si-NIK (inhibition of the non-canonical NFκB pathway).

Conclusions

ASCs induce DC tolerogenicity by inhibiting maturation and promoting downstream Treg generation, involving the Notch and NFκB pathways. ASC-induced tolerogenic DCs can be a potential immunomodulatory tool for clinical application.

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脂肪来源干细胞调节树突状细胞诱导的耐受性 T 细胞调控与 Notch-NFκB 信号的激活有关
背景脂肪源性干细胞(ASCs)被认为具有潜在的免疫调节特性。在免疫系统中,具有未成熟表型特征的耐受性树突状细胞(DCs)在诱导调节性T细胞(Tregs)和促进免疫耐受方面发挥着至关重要的作用。Notch1 信号已被确定为 DCs 发育和功能的关键调节因子。然而,Notch1 通路在 ASC 介导的耐受性 DCs 调节中的确切参与及其对免疫调节的影响仍有待全面阐明。本研究旨在研究 ASC 与 DCs 之间的相互作用,重点研究 Notch1 信号及其下游通路在 ASC 调节耐受性 DCs 中的作用。用DAPT抑制Notch信号,用NEMO结合域肽和si-NIK抑制NFκB通路。流式细胞术评估了 DC 的表型。结果Notch1和Jagged1在DC和ASC上都有高表达。与成熟的 DCs 相比,ASC-DCs 的 CD80、CD86 和 MHC II 水平明显降低。用DAPT抑制Notch通路可逆转去分化效应。用 DAPT(抑制 Notch 通路)和 si-NIK(抑制非经典 NFκB 通路)处理 ASC-DCs 时,诱导的 CD25+/FOXP3+/CD4+ Tregs 百分比下降。ASC诱导的耐受性DC可作为一种潜在的免疫调节工具应用于临床。
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来源期刊
Cytotherapy
Cytotherapy 医学-生物工程与应用微生物
CiteScore
6.30
自引率
4.40%
发文量
683
审稿时长
49 days
期刊介绍: The journal brings readers the latest developments in the fast moving field of cellular therapy in man. This includes cell therapy for cancer, immune disorders, inherited diseases, tissue repair and regenerative medicine. The journal covers the science, translational development and treatment with variety of cell types including hematopoietic stem cells, immune cells (dendritic cells, NK, cells, T cells, antigen presenting cells) mesenchymal stromal cells, adipose cells, nerve, muscle, vascular and endothelial cells, and induced pluripotential stem cells. We also welcome manuscripts on subcellular derivatives such as exosomes. A specific focus is on translational research that brings cell therapy to the clinic. Cytotherapy publishes original papers, reviews, position papers editorials, commentaries and letters to the editor. We welcome "Protocols in Cytotherapy" bringing standard operating procedure for production specific cell types for clinical use within the reach of the readership.
期刊最新文献
Editorial Board Table of Contents Aims and Scope Subscription information Identification and culture of meniscons, meniscus cells with their pericellular matrix.
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