• 제목/요약/키워드: $CD4^+$ Th cells differentiation

검색결과 44건 처리시간 0.034초

Resveratrol의 CD4+ T 세포 활성과 분화 억제 효과 (Resveratrol Suppresses CD4+ T Cell Activation and Differentiation in vitro)

  • 서동원;이영주;이상명
    • 한국자원식물학회지
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    • 제27권5호
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    • pp.567-575
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    • 2014
  • Resveratrol은 천연 stilbene으로 안전성 있는 항염증 활성을 가진 화합물로 알려져 있다. 최근의 연구들에서 resveratrol이 천식, 만성 대장염, 류마티스성 관절염과 같이 염증에 의해 발생하는 다양한 질병을 억제한다고 보고되었다. 이러한 연구들은 resveratrol이 $CD4^+$ helper T cells (Th cells)에 의한 면역반응을 조절할 것이라고 제시하였다. 그러나 resveratrol이 직접적으로 Th cells의 활성화와 분화를 조절하는지 완전히 밝혀지지 않았다. C57BL/6에서 Th cells을 분리하여 다양한 농도의 resveratrol을 세포에 처리하였다. 본 연구에서는 resveratrol이 직접적으로 Th cells의 활성화와 증식을 억제하는 것을 확인하였다. Th cells에 resveratrol을 처리하였을 때 IFN-${\gamma}$, IL-4, IL-17 사이토카인 생성이 농도에 따라 유의하게 감소하였고 또한 Th cells이 이러한 사이토카인들을 분비하는 Th1과 Th2과 Th17으로 분화되는 것이 억제되었다. 그리고 고농도의 resveratrol이 Th cells의 세포사멸을 유도하는 것으로 확인되었다. 본 연구에서는 resveratrol이 Th cells의 활성화와 분화를 직접적으로 억제하는 것을 확인하였으며, 이는 resveratrol이 $CD4^+$ Thcells에 의해 발생되는 자가면역질환의 효과적인 치료법이 될 수 있을 것이라고 제시한다.

Post-Translational Modifications in Transcription Factors that Determine T Helper Cell Differentiation

  • Kim, Hyo Kyeong;Jeong, Mi Gyeong;Hwang, Eun Sook
    • Molecules and Cells
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    • 제44권5호
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    • pp.318-327
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    • 2021
  • CD4+ T helper (Th) cells play a crucial role in the modulation of innate and adaptive immune responses through the differentiation of Th precursor cells into several subsets, including Th1, Th2, Th17, and regulatory T (Treg) cells. Effector Th and Treg cells are distinguished by the production of signature cytokines and are important for eliminating intracellular and extracellular pathogens and maintaining immune homeostasis. Stimulation of naive Th cells by T cell receptor and specific cytokines activates master transcription factors and induces lineage specification during the differentiation of Th cells. The master transcription factors directly activate the transcription of signature cytokine genes and also undergo post-translational modifications to fine-tune cytokine production and maintain immune balance through cross-regulation with each other. This review highlights the post-translational modifications of master transcription factors that control the differentiation of effector Th and Treg cells and provides additional insights on the immune regulation mediated by protein argininemodifying enzymes in effector Th cells.

Lineage re-commitment of CD4CD8αα intraepithelial lymphocytes in the gut

  • Park, Yunji;Moon, Sook-Jin;Lee, Seung-Woo
    • BMB Reports
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    • 제49권1호
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    • pp.11-17
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    • 2016
  • The gastrointestinal tract forms the largest surface in our body with constantly being exposed to various antigens, which provides unique microenvironment for the immune system in the intestine. Accordingly, the gut epithelium harbors the most T lymphocytes in the body as intraepithelial lymphocytes (IELs), which are phenotypically and functionally heterogeneous populations, distinct from the conventional mature T cells in the periphery. IELs arise either from pre-committed thymic precursors (natural IELs) or from conventional CD4 or CD8αβ T cells in response to peripheral antigens (induced IELs), both of which commonly express CD8α homodimers (CD8αα). Although lineage commitment to either conventional CD4 T helper (Th) or cytotoxic CD8αβ T cells as well as their respective co-receptor expression are mutually exclusive and irreversible process, CD4 T cells can be redirected to the CD8 IELs with high cytolytic activity upon migration to the gut epithelium. Recent reports show that master transcription factors for CD4 and CD8 T cells, ThPOK (Th-inducing BTB/POZ-Kruppel-like factor) and Runx3 (Runt related transcription factor 3), respectively, are the key regulators for re-programming of CD4 T cells to CD8 lineage in the intestinal epithelium. This review will focus on the unique differentiation process of IELs, particularly lineage re-commitment of CD4 IELs. [BMB Reports 2016; 49(1): 11-17]

Osteopontin Potentiates Pulmonary Inflammation and Fibrosis by Modulating IL-17/IFN-γ-secreting T-cell Ratios in Bleomycin-treated Mice

  • Oh, Keunhee;Seo, Myung Won;Kim, Young Whan;Lee, Dong-Sup
    • IMMUNE NETWORK
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    • 제15권3호
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    • pp.142-149
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    • 2015
  • Lung fibrosis is a life-threatening disease caused by overt or insidious inflammatory responses. However, the mechanism of tissue injury-induced inflammation and subsequent fibrogenesis remains unclear. Recently, we and other groups reported that Th17 responses play a role in amplification of the inflammatory phase in a murine model induced by bleomycin (BLM). Osteopontin (OPN) is a cytokine and extracellular-matrix-associated signaling molecule. However, whether tissue injury causes inflammation and consequent fibrosis through OPN should be determined. In this study, we observed that BLM-induced lung inflammation and subsequent fibrosis was ameliorated in OPNdeficient mice. OPN was expressed ubiquitously in the lung parenchymal and bone-marrow-derived components and OPN from both components contributed to pathogenesis following BLM intratracheal instillation. Th17 differentiation of $CD4^+$ ${\alpha}{\beta}$ T cells and IL-17-producing ${\gamma}{\delta}$ T cells was significantly reduced in OPN-deficient mice compared to WT mice. In addition, Th1 differentiation of $CD4^+$ ${\alpha}{\beta}$ T cells and the percentage of IFN-$\gamma$-producing ${\gamma}{\delta}$ T cells increased. T helper cell differentiation in vitro revealed that OPN was preferentially upregulated in $CD4^+$ T cells under Th17 differentiation conditions. OPN expressed in both parenchymal and bone marrow cell components and contributed to BLM-induced lung inflammation and fibrosis by affecting the ratio of pathogenic IL-17/protective IFN-$\gamma$ T cells.

Th17 Cell and Inflammatory Infiltrate Interactions in Cutaneous Leishmaniasis: Unraveling Immunopathogenic Mechanisms

  • Abraham U. Morales-Primo;Ingeborg Becker;Claudia Patricia Pedraza-Zamora;Jaime Zamora-Chimal
    • IMMUNE NETWORK
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    • 제24권2호
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    • pp.14.1-14.26
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    • 2024
  • The inflammatory response during cutaneous leishmaniasis (CL) involves immune and non-immune cell cooperation to contain and eliminate Leishmania parasites. The orchestration of these responses is coordinated primarily by CD4+ T cells; however, the disease outcome depends on the Th cell predominant phenotype. Although Th1 and Th2 phenotypes are the most addressed as steers for the resolution or perpetuation of the disease, Th17 cell activities, especially IL-17 release, are recognized to be vital during CL development. Th17 cells perform vital functions during both acute and chronic phases of CL. Overall, Th17 cells induce the migration of phagocytes (neutrophils, macrophages) to the infection site and CD8+ T cells and NK cell activation. They also provoke granzyme and perforin secretion from CD8+ T cells, macrophage differentiation towards an M2 phenotype, and expansion of B and Treg cells. Likewise, immune cells from the inflammatory infiltrate have modulatory activities over Th17 cells involving their differentiation from naive CD4+ T cells and further expansion by generating a microenvironment rich in optimal cytokines such as IL-1β, TGF-β, IL-6, and IL-21. Th17 cell activities and synergies are crucial for the resistance of the infection during the early and acute stages; however, if unchecked, Th17 cells might lead to a chronic stage. This review discusses the synergies between Th17 cells and the inflammatory infiltrate and how these interactions might destine the course of CL.

Segmented Filamentous Bacteria Induce Divergent Populations of Antigen-Specific CD4 T Cells in the Small Intestine

  • Yi, Jaeu;Jung, Jisun;Han, Daehee;Surh, Charles D.;Lee, You Jeong
    • Molecules and Cells
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    • 제42권3호
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    • pp.228-236
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    • 2019
  • CD4 T cells differentiate into $ROR{\gamma}t/IL$-17A-expressing cells in the small intestine following colonization by segmented filamentous bacteria (SFB). However, it remains unclear whether SFB-specific CD4 T cells can differentiate directly from naïve precursors, and whether their effector differentiation is solely directed towards the Th17 lineage. In this study, we used adoptive T cell transfer experiments and showed that naïve CD4 T cells can migrate to the small intestinal lamina propria (sLP) and differentiate into effector T cells that synthesize IL-17A in response to SFB colonization. Using single cell RT-PCR analysis, we showed that the progenies of SFB responding T cells are not uniform but composed of transcriptionally divergent populations including Th1, Th17 and follicular helper T cells. We further confirmed this finding using in vitro culture of SFB specific intestinal CD4 T cells in the presence of cognate antigens, which also generated heterogeneous population with similar features. Collectively, these findings indicate that a single species of intestinal bacteria can generate a divergent population of antigen-specific effector CD4 T cells, rather than it provides a cytokine milieu for the development of a particular effector T cell subset.

시호(柴胡)가 MC 및 Mouse의 염증관련 cytokine 분비에 미치는 영향 (Effect of Bupleuri Radix on Inflammatory Cytokine Secretion to HMC and Mouse Immmune Cells)

  • 최성우;강희;심범상;김성훈;최승훈;안규석
    • 동의생리병리학회지
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    • 제23권1호
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    • pp.150-157
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    • 2009
  • This research was performed in order to investigate the anti-inflammatory effects of Bupleuri Radix(BR) on the Immune response in vitro. Cellular proliferation and cytokine production were measured in mast cells or mouse B cells or CD4 Th cells. BR water extract inhibited the secretions of TNF-$\alpha$ and IL-6 in PMA/A23187 stimulated HMC-1 cells. It increased proliferation but did not affect the expressions of CD69 or CD23 in rIL-4/anti-CD40 activated S cells. BR reduced surface IgE expression and secreted IgE but increased the production of IL-4, IFN-$\gamma$ and IgG1 in the same cells. BR caused an increase in proliferation in anti-CD3/anti-CD28 stimulated CD4 Th cells but it did not affect the differentiation of Th1 or Th2 cells. However, IL-2 was increased in BR treated Th2 cells. Considering the above-mentioned results, BR can be applied to a broad range of anti-inflammatory reactions, but our data suggest that it will not be likely to exert any effects on type 1 allergic response.

Immunological benefits by ginseng through reciprocal regulation of Th17 and Treg cells during cyclosporine-induced immunosuppression

  • Heo, Seong Beom;Lim, Sun Woo;Jhun, Joo Yeon;Cho, Mi La;Chung, Byung Ha;Yang, Chul Woo
    • Journal of Ginseng Research
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    • 제40권1호
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    • pp.18-27
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    • 2016
  • Background: It is not clear whether ginseng affects cyclosporine A (CsA)-induced desirable immunosuppressive action. In this study, we evaluated the immunological influence of combined treatment of ginseng with CsA. Methods: Using CD4+ T cells from mouse spleens stimulated with the T cell receptor (TCR) or allogeneic antigen-presenting cells (APCs), we examined the differentiation of naïve T cells into T helper 1 (Th1), Th2, Th17, and regulatory T cells (Tregs), and their cytokine production during treatment by Korean Red Ginseng extract (KRGE) and/or CsA. The influence of KRGE on the allogeneic T cell response was evaluated by mixed lymphocyte reaction (MLR). We also evaluated whether signal transducer and activator of transcription 3 (STAT3) and STAT5 are implicated in this regulation. Results: Under TCR stimulation, KRGE treatment did not affect the population of CD4+interferon gamma ($IFN{\gamma}$)+ and CD4+interleukin (IL)-4+ cells and their cytokine production compared with CsA alone. Under the Th17-polarizing condition, KRGE significantly reduced the number of CD4+IL-17+ cells and CD4+/phosphorylated STAT3 (p-STAT3)+ cells, but increased the number of CD4+CD25+forkhead box P3 (Foxp3)+ cells and CD4+/p-STAT5+ cells compared with CsA alone. In allogeneic APCs-stimulated CD4+ T cells, KRGE significantly decreased total allogeneic T cell proliferation. Consistent with the effects of TCR stimulation, KRGE reduced the number of CD4+IL-17+ cells and increased the number of CD4+CD25+Foxp3+ cells under the Th17-polarizing condition. Conclusion: KRGE has immunological benefits through the reciprocal regulation of Th17 and Treg cells during CsA-induced immunosuppression.

Kinetics of IFN-${\gamma}$ and IL-17 Production by CD4 and CD8 T Cells during Acute Graft-versus-Host Disease

  • Ju, Ji-Min;Lee, Hakmo;Oh, Keunhee;Lee, Dong-Sup;Choi, Eun Young
    • IMMUNE NETWORK
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    • 제14권2호
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    • pp.89-99
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    • 2014
  • Graft-versus-host disease (GVHD) is a fatal complication that occurs after allogeneic hematopoietic stem cell transplantation. To understand the dynamics of CD4 and CD8 T cell production of IFN-${\gamma}$ and IL-17 during GVHD progression, we established a GVHD model by transplanting T cell-depleted bone marrow (TCD-BM) and purified T cells from B6 mice into irradiated BALB.B, creating an MHC-matched but minor histocompatibility (H) antigen-mismatched transplantation (B6 ${\rightarrow}$ BALB.B GVHD). Transplantation-induced GVHD was confirmed by the presence of the appropriate compositional changes in the T cell compartments and innate immune cells in the blood and the systemic secretion of inflammatory cytokines. Using this B6 ${\rightarrow}$ BALB.B GVHD model, we showed that the production of IFN-${\gamma}$ and IL-17 by CD4 T cells preceded that by CD8 T cells in the spleen, mesenteric lymph node, liver, and lung in the BALB.B GVHD host, and Th1 differentiation predated Th17 differentiation in all organs during GVHD progression. Such changes in cytokine production were based on changes in cytokine gene expression by the T cells at different time points during GVHD development. These results demonstrate that both IFN-${\gamma}$ and IL-17 are produced by CD4 and CD8 T cells but with different kinetics during GVHD progression.

가미패모탕이 보조 T 임파구 분화에 미치는 영향 (Effect of Gamipaemo-tang Ethanol Extract on Helper T Cell Differentiation)

  • 신재호;고은정;홍무창;정승기;신민규;배현수
    • 동의생리병리학회지
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    • 제18권5호
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    • pp.1397-1403
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    • 2004
  • By recently study, GM (Gamipaemo-tang) treatment have worked well on the allergic asthma. The purpose of this study was effect of GM extract on helper T cell, major regulator of immune system. Splenic cells from 8-week BALB/c mice were cultured in GM containing media without activation for 48 hours. The MTS assay and flow cytometry study revealed that lymphocyte treated with GM were not effective on CD4+ T cells. Subsequently CD4+ T cells were isolated and cultured in GM containing media. Either GM were not effective on CD4+ T cell without APCs. By FACS scan analysis, the expression of INF-γ, IL-4 were down-regulated in the condition skewed Th1 and Th2 cells respectively, Using ELISA analysis, the expression of INF-γ is up-regulated and IL-4 is down-regulated in the condition skewed Th1, Th2 cells respectively. With RT-PCR analysis, the expression of mRNA for INF-γ is down-regulated and IL-4 is down-regulated in the condition skewed Th1 and Th2 cells respectively. The result suggests that GM inhibited the differetiation of Th2 cells significantly and indicates GM could enhance anti-allergic immune system.