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Original Articles
IL-12 and IL-23 Production in Toxoplasma gondii- or LPS Treated Jurkat T Cells via PI3K and MAPK Signaling Pathways
Hassan Ahmed Hassan Ahmed Ismail, Byung-Hun Kang, Jae-Su Kim, Jae-Hyung Lee, In-Wook Choi, Guang-Ho Cha, Jae-Min Yuk, Young-Ha Lee
Korean J Parasitol 2017;55(6):613-622.
Published online December 31, 2017
DOI: https://doi.org/10.3347/kjp.2017.55.6.613
IL-12 and IL-23 are closely related in structure, and have been shown to play crucial roles in regulation of immune responses. However, little is known about the regulation of these cytokines in T cells. Here, we investigated the roles of PI3K and MAPK pathways in IL-12 and IL-23 production in human Jurkat T cells in response to Toxoplasma gondii and LPS. IL-12 and IL-23 production was significantly increased in T cells after stimulation with T. gondii or LPS. T. gondii and LPS increased the phosphorylation of AKT, ERK1/2, p38 MAPK, and JNK1/2 in T cells from 10 min post-stimulation, and peaked at 30-60 min. Inhibition of the PI3K pathway reduced IL-12 and IL-23 production in T. gondii-infected cells, but increased in LPS-stimulated cells. IL-12 and IL-23 production was significantly reduced by ERK1/2 and p38 MAPK inhibitors in T. gondii- and LPS-stimulated cells, but not in cells treated with a JNK1/2 inhibitor. Collectively, IL-12 and IL-23 production was positively regulated by PI3K and JNK1/2 in T. gondii-infected Jurkat cells, but negatively regulated in LPS-stimulated cells. And ERK1/2 and p38 MAPK positively regulated IL-12 and IL-23 production in Jurkat T cells. These data indicate that T. gondii and LPS induced IL-12 and IL-23 production in Jurkat T cells through the regulation of the PI3K and MAPK pathways; however, the mechanism underlying the stimulation of IL-12 and IL-23 production by T. gondii in Jurkat T cells is different from that of LPS.

Citations

Citations to this article as recorded by  Crossref logo
  • Protective Effect of Low 2-O, 3-O Desulfated Heparin (ODSH) Against LPS-Induced Acute Lung Injury in Mice
    Joyce Gonzales, Rahul S. Patil, Thomas P. Kennedy, Nagavedi S. Umapathy, Rudolf Lucas, Alexander D. Verin
    Biomolecules.2025; 15(9): 1232.     CrossRef
  • BC and 1,4NQ-BC up-regulate the cytokines and enhance IL-33 expression in LPS pretreatment of human bronchial epithelial cells☆
    Jianhong Ge, Hongqian Chu, Qianqian Xiao, Weidong Hao, Jing Shang, Tong Zhu, Zhaogang Sun, Xuetao Wei
    Environmental Pollution.2021; 273: 116452.     CrossRef
  • Toxoplasma gondiiModulates the Host Cell Responses: An Overview of Apoptosis Pathways
    Nour Mammari, Mohamad Adnan Halabi, Souha Yaacoub, Hilda Chlala, Marie-Laure Dardé, Bertrand Courtioux
    BioMed Research International.2019; 2019: 1.     CrossRef
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Suppressed Production of Pro-inflammatory Cytokines by LPS-Activated Macrophages after Treatment with Toxoplasma gondii Lysate
Eun-Jung Lee, Yoo-Mi Heo, Jong-Hak Choi, Hyun-Ouk Song, Jae-Sook Ryu, Myoung-Hee Ahn
Korean J Parasitol 2008;46(3):145-151.
Published online September 20, 2008
DOI: https://doi.org/10.3347/kjp.2008.46.3.145

During Toxoplasma gondii infection, macrophages, dendritic cells, and neutrophils are important sources of pro-inflammatory cytokines from the host. To counteract the pro-inflammatory activities, T. gondii is known to have several mechanisms inducing down-regulation of the host immunity. In the present study, we analyzed the production of pro- and anti-inflammatory cytokines from a human myelomonocytic cell line, THP-1 cells, in response to treatment with T. gondii lysate or lipopolysaccharide (LPS). Treatment of THP-1 cells with LPS induced production of IL-12, TNF-α, IL-8, and IL-10. Co-treatment of THP-1 cells with T. gondii lysate inhibited the LPS-induced IL-12, IL-8 and TNF-α expression, but increased the level of IL-10 synergistically. IL-12 and IL-10 production was down-regulated by anti-human toll-like receptor (TLR)-2 and TLR4 antibodies. T. gondii lysate triggered nuclear factor (NF)-κB-dependent IL-8 expression in HEK293 cells transfected with TLR2. It is suggested that immunosuppression induced by T. gondii lysate treatment might occur via TLR2-mediated NF-κB activation.

Citations

Citations to this article as recorded by  Crossref logo
  • Comparative analysis of RT-qPCR, flow cytometry, and Di-4-ANEPPDHQ fluorescence for distinguishing macrophages phenotypes
    Ahmed Abu Siniyeh, Walhan Alshaer, Nirmeen Elzogheir, Majed Al-Holi, Dana A. Alqudah, Duaa Abuarqoub, Joanna M. Kwiatek
    Biochemistry and Biophysics Reports.2025; 44: 102225.     CrossRef
  • Early responses of primary human and bovine monocytes, monocytic THP-1 cells and THP-1 cell-derived macrophages to vital Toxoplasma gondii tachyzoites
    Dominik Hanke, Zahady D. Velásquez, Kathrin Büttner, Andreas Krueger, Ralf Ross, Andreas Hecker, Sybille Mazurek, Veronika Grau, Anja Taubert, Carlos Hermosilla, Katrin Richter, Iván Conejeros
    Frontiers in Immunology.2025;[Epub]     CrossRef
  • Toxoplasma gondii profilin induces NLRP3 activation and IL-1β production/secretion in THP-1 cells
    Hossein Pazoki, Hamed Mirjalali, Maryam Niyyati, Seyed Javad Seyed Tabaei, Nariman Mosaffa, Shabnam Shahrokh, Hamid Asadzadeh Ahdaei, Andreas Kupz, Mohammad Reza Zali
    Microbial Pathogenesis.2023; 180: 106120.     CrossRef
  • The effects of zinc amino acid complex on biomarkers of gut integrity, inflammation, and metabolism in heat-stressed ruminants
    J. Opgenorth, M. Abuajamieh, E.A. Horst, S.K. Kvidera, J.S. Johnson, E.J. Mayorga, M.V. Sanz-Fernandez, M.A. Al-Qaisi, J.M. DeFrain, D.H. Kleinschmit, P.J. Gorden, L.H. Baumgard
    Journal of Dairy Science.2021; 104(2): 2410.     CrossRef
  • Soluble total antigen derived from Toxoplasma gondii tachyzoites increased the expression levels of NLRP1, NLRP3, NLRC4, AIM2, and the release of mature form of IL1β, but downregulated the expression of IL1β and IL18 genes in THP-1cell line
    Hossein Pazoki, Hanieh Mohammad Rahimi, Hamed Mirjalali, Maryam Niyyati, Nariman Mosaffa, Seyed Javad Seyed Tabaei, Shabnam Shahrokh, Hamid Asadzadeh Aghdaei, Mohammad Reza Zali
    Microbial Pathogenesis.2021; 158: 105072.     CrossRef
  • GSH-C4 Acts as Anti-inflammatory Drug in Different Models of Canonical and Cell Autonomous Inflammation Through NFκB Inhibition
    Dolores Limongi, Sara Baldelli, Paola Checconi, Maria Elena Marcocci, Giovanna De Chiara, Alessandra Fraternale, Mauro Magnani, Maria Rosa Ciriolo, Anna Teresa Palamara
    Frontiers in Immunology.2019;[Epub]     CrossRef
  • Production of Inflammatory Cytokines and Nitric Oxide by Human Mast Cells Incubated with Toxoplasma gondii Lysate
    Eun-Ah Park, Ik-Hwan Han, Jung-Hyun Kim, Soon-Jung Park, Jae-Sook Ryu, Myoung-Hee Ahn
    The Korean Journal of Parasitology.2019; 57(2): 201.     CrossRef
  • The GRA15 protein from Toxoplasma gondii enhances host defense responses by activating the interferon stimulator STING
    Peiyan Wang, Siji Li, Yingchi Zhao, Baohuan Zhang, Yunfei Li, Shengde Liu, Hongqiang Du, Lili Cao, Meiling Ou, Xiaohong Ye, Peng Li, Xiang Gao, Penghua Wang, Chunxia Jing, Feng Shao, Guang Yang, Fuping You
    Journal of Biological Chemistry.2019; 294(45): 16494.     CrossRef
  • Secreted Toxoplasma gondii molecules interfere with expression of MHC-II in interferon gamma-activated macrophages
    Louis-Philippe Leroux, Dayal Dasanayake, Leah M. Rommereim, Barbara A. Fox, David J. Bzik, Armando Jardim, Florence S. Dzierszinski
    International Journal for Parasitology.2015; 45(5): 319.     CrossRef
  • Possible role of TLR4 and TLR9 SNPs in protection against congenital toxoplasmosis
    W. Wujcicka, Z. Gaj, J. Wilczyński, D. Nowakowska
    European Journal of Clinical Microbiology & Infectious Diseases.2015; 34(10): 2121.     CrossRef
  • TLR4 in Toxoplasmosis; friends or foe?
    Mohammad Zare-Bidaki, Hamid Hakimi, Seyyed Hossein Abdollahi, Nahid Zainodini, Mohammad Kazemi Arababadi, Derek Kennedy
    Microbial Pathogenesis.2014; 69-70: 28.     CrossRef
  • Toxoplasma gondii antigens: Recovery analysis of tachyzoites cultivated in Vero cell maintained in serum free medium
    Thaís Alves da Costa-Silva, Cristina da Silva Meira, Neuza Frazzatti-Gallina, Vera Lucia Pereira-Chioccola
    Experimental Parasitology.2012; 130(4): 463.     CrossRef
  • Suppressed CD31 Expression in Sarcoma-180 Tumors after Injection with Toxoplasma gondii Lysate Antigen in BALB/c Mice
    Kyoung-Ho Pyo, Bong-Kwang Jung, Jong-Yil Chai, Eun-Hee Shin
    The Korean Journal of Parasitology.2010; 48(2): 171.     CrossRef
  • Suppression of CD4+T-Cells in the Spleen of Mice Infected withToxoplasma gondiiKI-1 Tachyzoites
    Won-Hee Kim, Eun-Hee Shin, Jae-Lip Kim, Seung-Young Yu, Bong-Kwang Jung, Jong-Yil Chai
    The Korean Journal of Parasitology.2010; 48(4): 325.     CrossRef
  • Disparate Regulation of LPS-Induced MAPK Signaling and IL-12p40 Expression Between Different Myeloid Cell Types with and without HIV Infection
    Jonathan G. Boucher, Kelley A. Parato, Fiona Frappier, Peter Fairman, Aurelia Busca, Mansi Saxena, Maria A. Blahoianu, Wei Ma, Niranjala Gajanayaka, Robin J. Parks, Ashok Kumar, Jonathan B. Angel
    Viral Immunology.2010; 23(1): 17.     CrossRef
  • Proinflammatory Cytokine and Nitric Oxide Production by Human Macrophages Stimulated with Trichomonas vaginalis
    Ik-Hwan Han, Sung Young Goo, Soon-Jung Park, Se-Jin Hwang, Yong-Seok Kim, Michael Sungwoo Yang, Myoung-Hee Ahn, Jae-Sook Ryu
    The Korean Journal of Parasitology.2009; 47(3): 205.     CrossRef
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