High Dimensional Analyses of Circulating Immune Cells in Psoriatic Arthritis Detects Elevated Phosphorylated STAT3

被引:8
|
作者
Macaubas, Claudia [1 ]
Rahman, Shamma S. [1 ]
Lavi, Idit [2 ]
Haddad, Amir [3 ]
Elias, Muna [3 ]
Sengupta, Deepanwita [4 ]
Zisman, Devy [3 ,5 ]
Mellins, Elizabeth D. [1 ]
机构
[1] Stanford Univ, Program Immunol, Pediat, Stanford, CA 94305 USA
[2] Carmel Hosp, Community Med & Epidmiol, Haifa, Israel
[3] Carmel Hosp, Rheumatol Unit, Haifa, Israel
[4] Stanford Univ, Biol, Stanford, CA 94305 USA
[5] Technion, Ruth & Bruce Rappaport Fac Med, Haifa, Israel
来源
FRONTIERS IN IMMUNOLOGY | 2022年 / 12卷
关键词
psoriatic arthritis; STAT3; CD4+T cells; monocytes; rheumatoid arthritis; T-CELLS; RHEUMATOID-ARTHRITIS; TH1; CELLS; OBESITY; DIFFERENTIATION; TOFACITINIB; ACTIVATION; INFLAMMATION; PATHWAYS; DISTINCT;
D O I
10.3389/fimmu.2021.758418
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Psoriatic arthritis (PsA) is a chronic inflammatory arthritis, affecting up to 40% of patients with psoriasis. Constitutive expression by CD4+ T cells of an active form of STAT3, a signal transducer and transcription factor, has been shown to induce many of the major features of PsA in an animal model. We used high dimensional mass cytometry (CyTOF) to probe ex-vivo levels of phosphorylated STAT3 (pSTAT3) in circulating immune cell subpopulations from PsA patients during active and inactive states. We evaluated the frequency of 16 immune cell populations and the levels of the activated forms of STAT3 (pSTAT3) and, for comparison, STAT1 (pSTAT1) and Src (pSrc) in whole blood fixed shortly after collection. In addition to PsA patients, we studied active rheumatoid arthritis (RA) patients. Increased levels of pSTAT3 were found in all the CD4+ T cell subsets analyzed, specifically, Th1, Th2, Th17, T follicular helper (Tfh) and T regulatory (Treg) as well as in CD14+CD16- (classical) monocytes from active PsA patients compared to inactive patients. After correcting for body mass index (BMI), smoking and conventional disease modifying antirheumatic drugs (c-DMARDs), levels of pSTAT3 levels remained increased in Th1 and Tfh CD4+ T cells, and in CD14+CD16- monocytes from active patients compared to inactive patients. No differences between the patient groups were observed for pSTAT1 or pSrc. No differences were found between the active PsA and active RA groups after correction for multiple testing. During active PsA, circulating Th1 and Tfh CD4+ T cells, and CD14+CD16- monocytes expressing high levels of pSTAT3 may play a role in PsA pathophysiology, perhaps by migration to inflamed sites.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] Single-cell RNA sequencing of circulating immune cells supports inhibition of TNFAIP3 and NFKBIA translation as psoriatic arthritis biomarkers
    Garrido, Ameth N.
    Machhar, Rohan
    Cruz-Correa, Omar F.
    Ganatra, Darshini
    Crome, Sarah Q.
    Wither, Joan
    Jurisica, Igor
    Gladman, Dafna D.
    FRONTIERS IN IMMUNOLOGY, 2025, 16
  • [22] STAT3 signaling contributes to the high effector activities of interleukin-15-derived dendritic cells
    Okada, Starlyn
    Han, Shuhong
    Patel, Ekta S.
    Yang, Li-Jun
    Chang, Lung-Ji
    IMMUNOLOGY AND CELL BIOLOGY, 2015, 93 (05) : 461 - 471
  • [23] PARP Inhibition Activates STAT3 in Both Tumor and Immune Cells Underlying Therapy Resistance and Immunosuppression In Ovarian Cancer
    Martincuks, Antons
    Song, Jieun
    Kohut, Adrian
    Zhang, Chunyan
    Li, Yi-Jia
    Zhao, Qianqian
    Mak, Edward
    Rodriguez-Rodriguez, Lorna
    Yu, Hua
    Cristea, Mihaela
    FRONTIERS IN ONCOLOGY, 2021, 11
  • [24] Epigallocatechin-3-gallate ameliorates autoimmune arthritis by reciprocal regulation of T helper-17 regulatory T cells and inhibition of osteoclastogenesis by inhibiting STAT3 signaling
    Lee, Seon-Yeong
    Jung, Young Ok
    Ryu, Jun-Geol
    Oh, Hye-Jwa
    Son, Hye-Jin
    Lee, Seung Hoon
    Kwon, Jeong-Eun
    Kim, Eun-Kyung
    Park, Mi-Kyung
    Park, Sung-Hwan
    Kim, Ho-Youn
    Cho, Mi-La
    JOURNAL OF LEUKOCYTE BIOLOGY, 2016, 100 (03) : 559 - 568
  • [25] In glomerular cells of puromycin aminonucleoside nephrosis rats both phosphorylated and total STAT3 levels increased during proteinuria
    Saygi, Halil Ibrahim
    Gungor, Zeynep Banu
    Kalay, Fatma
    Seckin, Ismail
    ACTA HISTOCHEMICA, 2018, 120 (06) : 595 - 603
  • [26] Intratumoural expression of IL-6/STAT3, IL-17 and FOXP3 immune cells in the immunosuppressive tumour microenvironment of colorectal cancer Immune cells-positive for IL-6, STAT3, IL-17 and FOXP3 and colorectal cancer development
    Gulubova, Maya Vladova
    Chonov, Dimitur Chavdarov
    Ivanova, Koni Vancho
    Hristova, Mariyna Kostova
    Krasimirova-Ignatova, Maria Magdalena
    Vlaykova, Tatyana Ivanova
    BIOTECHNOLOGY & BIOTECHNOLOGICAL EQUIPMENT, 2022, 36 (01) : 327 - 338
  • [27] A novel phosphorylated STAT3 inhibitor enhances T cell cytotoxicity against melanoma through inhibition of regulatory T cells
    Kong, Ling-Yuan
    Wei, Jun
    Sharma, Amit K.
    Barr, Jason
    Abou-Ghazal, Mohamed K.
    Fokt, Izabela
    Weinberg, Jeffrey
    Rao, Ganesh
    Grimm, Elizabeth
    Priebe, Waldemar
    Heimberger, Amy B.
    CANCER IMMUNOLOGY IMMUNOTHERAPY, 2009, 58 (07) : 1023 - 1032
  • [28] miR-146a is directly regulated by STAT3 in human hepatocellular carcinoma cells and involved in anti-tumor immune suppression
    Sun, Xiaoxia
    Zhang, Jian
    Hou, Zhaohua
    Han, Qiuju
    Zhang, Cai
    Tian, Zhigang
    CELL CYCLE, 2015, 14 (02) : 243 - 252
  • [29] STAT3 Silencing in Dendritic Cells by siRNA Polyplexes Encapsulated in PLGA Nanoparticles for the Modulation of Anticancer Immune Response
    Alshamsan, Aws
    Haddadi, Azita
    Hamdy, Samar
    Samuel, John
    El-Kadi, Ayman O. S.
    Uludag, Hasan
    Lavasanifar, Afsaneh
    MOLECULAR PHARMACEUTICS, 2010, 7 (05) : 1643 - 1654
  • [30] A TCM formula comprising Sophorae Flos and Lonicerae Japonicae Flos alters compositions of immune cells and molecules of the STAT3 pathway in melanoma microenvironment
    Liu, Yu-Xi
    Bai, Jing-Xuan
    Li, Ting
    Fu, Xiu-Qiong
    Guo, Hui
    Zhu, Pei-Li
    Chan, Yuen-Cheung
    Chou, Ji-Yao
    Yin, Cheng-Le
    Li, Jun-Kui
    Wang, Ya-Ping
    Chen, Ying-Jie
    Yu, Zhi-Ling
    PHARMACOLOGICAL RESEARCH, 2019, 142 : 115 - 126