1.Paroxetine alleviates dendritic cell and T lymphocyte activation via GRK2-mediated PI3K-AKT signaling in rheumatoid arthritis.
Tingting LIU ; Chao JIN ; Jing SUN ; Lina ZHU ; Chun WANG ; Feng XIAO ; Xiaochang LIU ; Liying LV ; Xiaoke YANG ; Wenjing ZHOU ; Chao TAN ; Xianli WANG ; Wei WEI
Chinese Medical Journal 2025;138(4):441-451
BACKGROUND:
G protein-coupled receptor kinase 2 (GRK2) could participate in the regulation of diverse cells via interacting with non-G-protein-coupled receptors. In the present work, we explored how paroxetine, a GRK2 inhibitor, modulates the differentiation and activation of immune cells in rheumatoid arthritis (RA).
METHODS:
The blood samples of healthy individuals and RA patients were collected between July 2021 and March 2022 from the First Affiliated Hospital of Anhui Medical University. C57BL/6 mice were used to induce the collagen-induced arthritis (CIA) model. Flow cytometry analysis was used to characterize the differentiation and function of dendritic cells (DCs)/T cells. Co-immunoprecipitation was used to explore the specific molecular mechanism.
RESULTS:
In patients with RA, high expression of GRK2 in peripheral blood lymphocytes, accompanied by the increases of phosphatidylinositol 3 kinase (PI3K), protein kinase B (AKT), and mammalian target of rapamycin (mTOR). In animal model, a decrease in regulatory T cells (T regs ), an increase in the cluster of differentiation 8 positive (CD8 + ) T cells, and maturation of DCs were observed. Paroxetine, when used in vitro and in CIA mice, restrained the maturation of DCs and the differentiation of CD8 + T cells, and induced the proportion of T regs . Paroxetine inhibited the secretion of pro-inflammatory cytokines, the expression of C-C motif chemokine receptor 7 in DCs and T cells. Simultaneously, paroxetine upregulated the expression of programmed death ligand 1, and anti-inflammatory cytokines. Additionally, paroxetine inhibited the PI3K-AKT-mTOR metabolic pathway in both DCs and T cells. This was associated with a reduction in mitochondrial membrane potential and changes in the utilization of glucose and lipids, particularly in DCs. Paroxetine reversed PI3K-AKT pathway activation induced by 740 Y-P (a PI3K agonist) through inhibiting the interaction between GRK2 and PI3K in DCs and T cells.
CONCLUSION
Paroxetine exerts an immunosuppressive effect by targeting GRK2, which subsequently inhibits the metabolism-related PI3K-AKT-mTOR pathway of DCs and T cells in RA.
G-Protein-Coupled Receptor Kinase 2/metabolism*
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Arthritis, Rheumatoid/immunology*
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Animals
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Dendritic Cells/metabolism*
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Paroxetine/therapeutic use*
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Proto-Oncogene Proteins c-akt/metabolism*
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Mice
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Humans
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Mice, Inbred C57BL
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Signal Transduction/drug effects*
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Male
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Phosphatidylinositol 3-Kinases/metabolism*
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Lymphocyte Activation/drug effects*
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Female
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T-Lymphocytes/metabolism*
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Middle Aged
2.A novel fully human LAG-3 monoclonal antibody LBL-007 combined with PD-1 antibody inhibits proliferation, migration and invasion of tumor cells via blocking NF-κB pathway.
Huinan ZHOU ; Jianfei LIU ; Chenglin WU ; Kewei QIN ; Lijun ZHOU
Chinese Journal of Cellular and Molecular Immunology 2025;41(5):398-405
Objective To investigate the effects of LBL-007, a novel fully human lymphocyte activation gene 3 (LAG-3) monoclonal antibody, in combination with programmed cell death protein 1 (PD-1) antibody, on the invasion, migration and proliferation of tumor cells, and to elucidate the underlying mechanisms. Methods Human lymphocyte cells Jurkat were co-cultured with A549 and MGC803 tumor cell lines and treated with the isotype control antibody human IgG, LBL-007, anti-PD-1 antibody BE0188, or tumor necrosis factor-alpha (TNF-α, the NF-κB signaling pathway agonist). Tumor cell proliferation was assessed using a colony formation assay; invasion was measured by TranswellTM assay; migration was evaluated using a wound healing assay. Western blotting was employed to determine the expression levels of NF-κB pathway-related proteins: IκB inhibitor kinase alpha (Ikkα), phosphorylated Ikkα (p-IKKα), NF-κB subunit p65, phosphorylated p65 (p-p65), NF-κB Inhibitor Alpha (IκBα), phosphorylated IκBα (p-IκBα), matrix metalloproteinase 9 (MMP9), and MMP2. Results Compared with the control and IgG isotype groups, LBL-007 and BE0188 significantly reduced tumor cell proliferation, invasion, and migration. They also decreased the phosphorylation of p-IKKα, p-p65 and p-IκBα, and the expression of MMP9 and MMP2 of tumor cells in the co-culture system. The combined treatment of LBL-007 and BE0188 enhanced inhibitory effects. Treatment with the NF-κB signaling pathway agonist TNF-α reversed the suppressive effects of LBL-007 and BE0188 on tumor cell proliferation, invasion, migration, and NF-κB signaling. Conclusion LBL-007 and anti-PD-1 antibody synergistically inhibit the invasion, migration, and proliferation of A549 and MGC803 tumor cells by blocking the NF-κB signaling pathway.
Humans
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Cell Proliferation/drug effects*
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Cell Movement/drug effects*
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Signal Transduction/drug effects*
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NF-kappa B/metabolism*
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Neoplasm Invasiveness
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Antibodies, Monoclonal/pharmacology*
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Programmed Cell Death 1 Receptor/antagonists & inhibitors*
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Cell Line, Tumor
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Antigens, CD/immunology*
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Lymphocyte Activation Gene 3 Protein
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A549 Cells
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I-kappa B Kinase/metabolism*
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Jurkat Cells
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Matrix Metalloproteinase 9/metabolism*
3.Single-cell Analysis of CAR-T Cell Activation Reveals A Mixed T1/T2 Response Independent of Differentiation.
Iva XHANGOLLI ; Burak DURA ; GeeHee LEE ; Dongjoo KIM ; Yang XIAO ; Rong FAN
Genomics, Proteomics & Bioinformatics 2019;17(2):129-139
The activation mechanism of chimeric antigen receptor (CAR)-engineered T cells may differ substantially from T cells carrying native T cell receptor, but this difference remains poorly understood. We present the first comprehensive portrait of single-cell level transcriptional and cytokine signatures of anti-CD19/4-1BB/CD28/CD3ζ CAR-T cells upon antigen-specific stimulation. Both CD4 helper T (T) cells and CD8 cytotoxic CAR-T cells are equally effective in directly killing target tumor cells and their cytotoxic activity is associated with the elevation of a range of T1 and T2 signature cytokines, e.g., interferon γ, tumor necrotic factor α, interleukin 5 (IL5), and IL13, as confirmed by the expression of master transcription factor genes TBX21 and GATA3. However, rather than conforming to stringent T1 or T2 subtypes, single-cell analysis reveals that the predominant response is a highly mixed T1/T2 function in the same cell. The regulatory T cell activity, although observed in a small fraction of activated cells, emerges from this hybrid T1/T2 population. Granulocyte-macrophage colony stimulating factor (GM-CSF) is produced from the majority of cells regardless of the polarization states, further contrasting CAR-T to classic T cells. Surprisingly, the cytokine response is minimally associated with differentiation status, although all major differentiation subsets such as naïve, central memory, effector memory, and effector are detected. All these suggest that the activation of CAR-engineered T cells is a canonical process that leads to a highly mixed response combining both type 1 and type 2 cytokines together with GM-CSF, supporting the notion that polyfunctional CAR-T cells correlate with objective response of patients in clinical trials. This work provides new insights into the mechanism of CAR activation and implies the necessity for cellular function assays to characterize the quality of CAR-T infusion products and monitor therapeutic responses in patients.
Antigens
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metabolism
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CTLA-4 Antigen
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metabolism
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Cell Differentiation
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drug effects
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Cell Line
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Cytokines
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metabolism
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Cytotoxicity, Immunologic
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drug effects
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Granulocyte-Macrophage Colony-Stimulating Factor
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pharmacology
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Humans
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Lymphocyte Activation
;
drug effects
;
immunology
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Lymphocyte Subsets
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drug effects
;
metabolism
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Phenotype
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Proteomics
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Receptors, Chimeric Antigen
;
metabolism
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Single-Cell Analysis
;
methods
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T-Lymphocytes, Regulatory
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drug effects
;
metabolism
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Th1 Cells
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cytology
;
drug effects
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Th2 Cells
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cytology
;
drug effects
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Transcription, Genetic
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drug effects
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Up-Regulation
;
drug effects
4.Research on immune-modulation effects and its mechanisms of Guizhi Fuling capsule and its active ingredient combination.
Yi-ping JIANG ; Xiu WU ; Na LI ; Liang CAO ; Gang DING ; Zhen-zhong WANG ; Wei XIAO
China Journal of Chinese Materia Medica 2015;40(15):3068-3071
The effects of Guizhi Fuling capsule and its active ingredient combination within different concentration on SPL proliferate were observed by MTT method. The ratio of CD80/86, CD3CD25 and CD3CD69 was used to evaluate cell activation effects of Guizhi Fuling capsule and its active ingredient combination by FCM. Guizhi Fuling capsule with concentration of 400 mg · L(-1)can promote spleen lymphocyte proliferation, as well as the active ingredient combination, which showed the obvious dose-effect relationship. Compared with control group, the difference has statistical significance (P≤0.01). The result of FCM showed that Guizhi Fuling capsule and its active ingredient combination can promote CD80 and CD86 expression on spleen lymphocyte, and also can increase CD25 and CD69 ratio between spleen CD3+ cells. Compared with control group, the difference has statistical significance (P≤0.01). Thus, Guizhi Fuling capsule and its active ingredient combination may have immune-modulate effects, and the mechanism may have a close relationship with the lymphocyte activation.
Animals
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Capsules
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Drugs, Chinese Herbal
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analysis
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pharmacology
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Immunologic Factors
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pharmacology
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Lymphocyte Activation
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drug effects
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Male
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Mice
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Mice, Inbred BALB C
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T-Lymphocytes
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drug effects
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immunology
6.Inhibitory effect of arctigenin on lymphocyte activation stimulated with PMA/ionomycin.
Cheng-Hong SUN ; Xin-Qiang LAI ; Li ZHANG ; Jing-Chun YAO ; Yong-Xia GUAN ; Li-Hong PAN ; Ying YAN
Acta Pharmaceutica Sinica 2014;49(4):482-489
This study investigated the effect of arctigenin (Arc) on the cell activation, cytokines expression, proliferation, and cell-cycle distribution of mouse T lymphocytes. Mouse lymphocytes were prepared from lymph node and treated with Phorbol-12-myristate-13-acetate (PMA)/Ionimycin (Ion) and/or Arc. CD69, CD25, cytokines, proliferation and cell cycle were assayed by flow cytometry. The results showed that, at concentrations of less than 1.00 micromol x L(-1), Arc expressed non-obvious cell damage to cultured lymphocytes, however, it could significantly down-regulate the expression of CD69 and CD25, as well as TNF-alpha, IFN-gamma, IL-2, IL-4, IL-6 and IL-10 on PMA/Ion stimulated lymphocytes. At the same time, Arc could also inhibit the proliferation of PMA/Ion-activated lymphocytes and exhibited lymphocyte G 0/G1 phase cycle arrest. These results suggest that Arc possesses significant anti-inflammatory effects that may be mediated through the regulation of cell activation, cytokines expression and cell proliferation.
Animals
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Anti-Inflammatory Agents
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isolation & purification
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pharmacology
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Antigens, CD
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metabolism
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Antigens, Differentiation, T-Lymphocyte
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metabolism
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Arctium
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chemistry
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Cell Cycle Checkpoints
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drug effects
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Cell Proliferation
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drug effects
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Cytokines
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metabolism
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Female
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Furans
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isolation & purification
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pharmacology
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Interferon-gamma
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metabolism
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Interleukin-10
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metabolism
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Interleukin-2
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metabolism
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Interleukin-2 Receptor alpha Subunit
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metabolism
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Interleukin-4
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metabolism
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Interleukin-6
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metabolism
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Ionomycin
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pharmacology
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Lectins, C-Type
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metabolism
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Lignans
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isolation & purification
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pharmacology
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Lymphocyte Activation
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drug effects
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Mice
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Mice, Inbred BALB C
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Plants, Medicinal
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chemistry
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T-Lymphocytes
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cytology
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drug effects
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immunology
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Tetradecanoylphorbol Acetate
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pharmacology
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Tumor Necrosis Factor-alpha
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metabolism
7.In vitro anti-tumor effect of human dendritic cells vaccine induced by astragalus polysacharin: an experimental study.
Xue-Ning JING ; Bo QIU ; Jin-Feng WANG ; Yong-Gang WU ; Ji-Biao WU ; Dan-Dan CHEN
Chinese Journal of Integrated Traditional and Western Medicine 2014;34(9):1103-1107
OBJECTIVETo explore the in vitro anti-tumor effect and mechanism of dendritic cell (DC) tumor vaccine induced by astragalus polysacharin (APS).
METHODSPeripheral blood mononuclear cells (PBMCs) isolated from human peripheral blood. DCs obtained from human peripheral blood were cultivated and added with culture solution for in vitro inducing them to immature DCs. On the 5th day of culture, 100 microg/mL (as the final concentration) APS was added to cells in the APS group. DCs were induced to mature in the cytokine groups by adding 20 ng/mL rhTNF-alpha (as the final concentration). Changes of morphology and phenotype of DCs were observed. Mature DCs were sensitized with tumor antigen SGC-7901 and co-cultured with allogeneic T cells. The proliferative function of T lymphocytes was detected by MTT assay. Levels of IL-12 and IFN-gamma in co-cultured supernatant were detected by ELISA. Cytotoxic lymphocytes (CTL) activated by DC were co-cultured with tumor cell SGC-7901. The specific killing capacity of CTL to target cells was detected by LDH release assay.
RESULTSThe morphological observation and phenotypic identification of APS induced DCs were in accordance with the characteristics of mature DCs. APS induced mature DCs could stimulate the proliferation of allogeneic T lymphocytes. The proliferation index of T cells increased with increased ratio of stimulator cells to effector cells (P < 0.05). Levels of IL-12 and IFN-gamma in co-culture supernatant significantly increased in a time-dependent manner (P < 0.05). CTL cells activated by sensitization of DCs could significantly kill tumor cells, and the killing effect increased along with increased effector-to-target ratio.
CONCLUSIONAPS could in vitro induce DCs to mature, promote its antigen-presenting capacity, effectively activate CTLs, and enhance anti-tumor function of the organism.
Antigen-Presenting Cells ; cytology ; drug effects ; immunology ; Cancer Vaccines ; immunology ; Cell Line ; Cell Proliferation ; drug effects ; Coculture Techniques ; Dendritic Cells ; cytology ; drug effects ; immunology ; Drugs, Chinese Herbal ; pharmacology ; Humans ; Interferon-gamma ; immunology ; Interleukin-12 ; immunology ; Leukocytes, Mononuclear ; cytology ; immunology ; Lymphocyte Activation ; T-Lymphocytes, Cytotoxic ; cytology ; drug effects
8.Tanshinone II A inhibits dendritic cell-mediated adaptive immunity: potential role in anti-atherosclerotic activity.
Hong-zhan LI ; Yong-heng LU ; Guang-sheng HUANG ; Qi CHEN ; Qiang FU ; Zhi-liang LI
Chinese journal of integrative medicine 2014;20(10):764-769
OBJECTIVEAntigen-presenting cells such as monocytes and dendritic cells (DCs) stimulate T-cell proliferation and activation during adaptive immunity. This cellular interaction plays a role in the growth of atherosclerotic plaques. Tanshinone II A (TSN) had been shown to decrease the growth of atherosclerotic lesions. We therefore investigated the ability of TSN to inhibit human monocyte-derived DCs and their T-cellstimulatory capacity.
METHODSDCs derived from human monocytes cultured with recombinant human interleukin (IL)-4 and recombinant human granulocyte-macrophage colony-stimulating factor were co-cultured with TSN and lipopolysaccharide for 48 h. Phosphate-buffered saline was used as a negative control. Activation markers and the capacity of DCs for endocytosis were measured by flow cytometry, and proinflammatory cytokines were measured by enzyme-linked immunosorbent assays. DCs were co-cultured with lymphocytes to measure T-cell proliferation and IL-2 secretion by mixed lymphocyte reactions.
RESULTSTSN dose-dependently attenuated DC expression of costimulatory molecules (CD86), and decreased expression of major histocompatibility complex class II (human loukocyte antigen-DR) and adhesion molecules (CD54). Moreover, TSN reduced secretion of the proinflammatory cytokines IL-12 and IL-1 by human DCs, and restored the capacity for endocytosis. Finally, TSN-preincubated DCs showed a reduced capacity to stimulate T-cell proliferation and cytokine secretion.
CONCLUSIONSTSN inhibits DC maturation and decreases the expression of proinflammatory cytokines, while impairing their capacity to stimulate T-cell proliferation and cytokine secretion. These effects may contribute to the influence of TSN on the progression of atherosclerotic lesions.
Antigen-Presenting Cells ; drug effects ; Atherosclerosis ; immunology ; pathology ; B7-2 Antigen ; metabolism ; Cell Membrane ; drug effects ; metabolism ; Cytokines ; secretion ; Dendritic Cells ; drug effects ; immunology ; secretion ; Diterpenes, Abietane ; pharmacology ; Endocytosis ; drug effects ; Flow Cytometry ; Humans ; Immunity, Cellular ; drug effects ; Inflammation Mediators ; metabolism ; Lymphocyte Activation ; drug effects
9.Rhamnogalacturonan II is a Toll-like receptor 4 agonist that inhibits tumor growth by activating dendritic cell-mediated CD8+ T cells.
Sung Nam PARK ; Kyung Tae NOH ; Young Il JEONG ; In Duk JUNG ; Hyun Kyu KANG ; Gil Sun CHA ; Su Jung LEE ; Jong Keun SEO ; Dae Hwan KANG ; Tae Ho HWANG ; Eun Kyung LEE ; Byungsuk KWON ; Yeong Min PARK
Experimental & Molecular Medicine 2013;45(2):e8-
We evaluated the effectiveness of rhamnogalacturonan II (RG-II)-stimulated bone marrow-derived dendritic cells (BMDCs) vaccination on the induction of antitumor immunity in a mouse lymphoma model using EG7-lymphoma cells expressing ovalbumin (OVA). BMDCs treated with RG-II had an activated phenotype. RG-II induced interleukin (IL)-12, IL-1beta, tumor necrosis factor-alpha (TNF-alpha) and interferon-gamma (IFN-gamma) production during dendritic cell (DC) maturation. BMDCs stimulated with RG-II facilitate the proliferation of CD8+ T cells. Using BMDCs from the mice deficient in Toll-like receptors (TLRs), we revealed that RG-II activity is dependent on TLR4. RG-II showed a preventive effect of immunization with OVA-pulsed BMDCs against EG7 lymphoma. These results suggested that RG-II expedites the DC-based immune response through the TLR4 signaling pathway.
Acute-Phase Proteins/metabolism
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Adaptor Proteins, Vesicular Transport/metabolism
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Animals
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Antigens, CD14/metabolism
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Bone Marrow Cells/cytology/drug effects
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CD8-Positive T-Lymphocytes/*immunology
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Carrier Proteins/metabolism
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Cell Differentiation/drug effects
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Cell Nucleus/drug effects/metabolism
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Cell Proliferation/drug effects
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Cytokines/biosynthesis
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Dendritic Cells/cytology/drug effects/enzymology/*immunology
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Enzyme Activation/drug effects
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Lymphocyte Activation/*drug effects
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Membrane Glycoproteins/metabolism
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Mice
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Mice, Inbred C57BL
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Mice, Knockout
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Mitogen-Activated Protein Kinases/metabolism
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Myeloid Differentiation Factor 88/metabolism
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NF-kappa B/metabolism
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Neoplasms/immunology/*pathology
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Pectins/*pharmacology
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Phenotype
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Protein Transport/drug effects
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Receptors, Chemokine/metabolism
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Signal Transduction/drug effects
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T-Lymphocytes, Cytotoxic/cytology/drug effects
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Toll-Like Receptor 4/*agonists/metabolism
10.Effect of blood cooling and detoxification formula and its dismantled formulae on keratinocyte proliferation induced by activated T lymphocytes.
Xin-Ran XIE ; Xin LIU ; Yan WANG ; Lu ZHANG ; Ping LI
China Journal of Chinese Materia Medica 2013;38(22):3953-3956
OBJECTIVETo observe the effect of the blood cooling and detoxification formula and its dismantled formulae on activated T lymphocytes-induced keratinocyte proliferation and cytokine secretion.
METHODRat drug-containing serum was prepared. PDB-stimulated T lymphocytes and Colo-16 cells were co-cultured, then added with the drug-containing serum, and laid aside for 24 h. The cell proliferation was detected by MTT assay. Cytokines TNF-alpha, sICAM-1 and IFN-gamma were detected by ELISA.
RESULTThe blood cooling and detoxification formula has a notable inhibitory effect on activated T lymphocyte-induced Colo-16 keratinocyte proliferation, with a significant difference between the whole formula group and the blood cooling group (P < 0.01). After activated T lymphocytes had added into Colo-16 cells for 24 hour, sICAM-1, TNF-alpha and IFN-gamma significantly increased. Though the whole blood cooling and detoxification formula, the blood cooling formula and the detoxification formula could notably reduce sICAM-1, TNF-alpha, IFN-gamma, the whole formula group showed the most significant effect.
CONCLUSIONThe blood cooling and detoxification formula, as an effective traditional Chinese medicine compound for clinical treatment of psoriasis, can significantly inhibit activated T lymphocyte-induced keratinocyte proliferation and cytokine secretion.
Animals ; Cell Proliferation ; drug effects ; Cells, Cultured ; Cytokines ; immunology ; Drugs, Chinese Herbal ; administration & dosage ; Keratinocytes ; cytology ; drug effects ; immunology ; Lymphocyte Activation ; drug effects ; Rats ; Rats, Wistar ; T-Lymphocytes ; drug effects ; immunology

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