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Pro-Tumor and Anti-Tumor Functions of IL-17 and of TH17 Cells in Tumor Microenvironment

;8(8):1032-1042. 23. Jia L, Wu C. The biology and functions of Th22 cells. In: T Helper Cell Differentiation and Their Function, 2014, vol. 841 of Advances in Experimental Medicine and Biology pp. 209-230. 24. Ma CS, Deenick EK, Batten M, Tangye SG. The origins, function, and regulation of T follicular helper cells. The Journal of Experimental Medicine 2012;209(7):1241-1253. 25. Sakaguchi S, Yamaguchi T, Nomura T, Ono M. Regulatory T cells and immune tolerance. Cell 2008;133:775 - 787. 26. Numasaki M, Fukushi J-I, Ono M, Narula SK

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Effect of glucose deprivation on the expression of genes encoding glucocorticoid receptor and some related factors in ERN1-knockdown U87 glioma cells

inhibits growth of breast cancer cells in vitro and in vivo. Oncotarget 6, 39714–39724, 2015. Bochkov VN, Philippova M, Oskolkova O, Kadl A, Furnkranz A, Karabeg E, Breuss J, Minchenko OH, Mechtcheriakova D, Hohensinner P, Rychli K, Wojta J, Resink T, Binder BR, Leitinger N. Oxidized phospholipids stimulate angiogenesis via induction of VEGF, IL-8, COX-2 and ADAMTS-1 metalloprotease, implicating a novel role for lipid oxidation in progression and destabilization of atherosclerotic lesions. Circ Res 99, 900–908, 2006. Bravo R, Parra V, Gatica D, Rodriguez AE

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Role of interlekin-35 as a biomarker in patients with newly diagnosed Hashimoto’s thyroiditis

References Ait-Oufella H, Salomon BL, Potteaux S, Robertson AK, Gourdy P, Zoll J, Merval R, Esposito B, Cohen JL, Fisson S, Flavell RA, Hansson GK, Klatzmann D, Tedgui A, Mallat Z. Natural regulatory T cells control the development of atherosclerosis in mice. Nat Med 12, 178-180, 2006. Akinci B, Comlekci A, Yener S, Bayraktar F, Demir T, Ozcan MA, Yuksel F, Yesil S. Hashimoto’s thyroiditis, but not treatment of hypothyroidism, is associated with altered TGFbeta1 levels. Arch Med Res 39, 397-401, 2008. Bettini M

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Novel genetic marker in TGFB2 gene associated with expression of TGF-β2 in leukocyte and SLE susceptibility

References 1. Tsao BP. Update on human systemic lupus erythematosus genetics. Curr Opin Rheumatol. 2004; 16:513-21. 2. Zhang H, Yang P, Zhou H, Meng Q, Huang X: Involvement of Foxp3-expressing CD4+ CD25+ regulatory T cells in the development of tolerance induced by transforming growth factor-beta2-treated antigen-presenting cells. Immunology. 2008; 124: 304-14. 3. Namba K, Kitaichi N, Nishida T, Taylor AW. Induction of regulatory T cells by the immunomodulating cytokines alpha-melanocyte-stimulating hormone and

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T Helper Cells in the Immunopathogenesis of Systemic Sclerosis – Current Trends

. Transcriptional regulation of Th1/Th2 polarization. – Immunol Today, 21, 2000, № 10, 479-483. 20. Chung Y., S. H. Chang, G. J. Martinez et al. Critical regulation of early Th17 cell differentiation by interleukin-1 signaling. – Immunity, 30, 2009, № 4, 576-587. 21. Chen W. J., W. Jin, N. Hardegen et al. Conversion of Peripheral CD4+CD25− Naive T Cells to CD4+CD25+ Regulatory T Cells by TGF-β Induction of Transcription Factor Foxp3. – J Exp Med, 198, 2003, № 12, 1875-1886. 22. Zheng S. G., J. Wang, P. Wang et al. IL-2 Is Essential for TGF-β to Convert Naive CD4

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Original article. Human dental pulp stem cells as a potential feeder layer for human embryonic stem cell culture

SC, Stewart MH, Menendez P, George D, Vijayaragavan K, Werbowetski-Ogilvie T, et al. IGF and FGF cooperatively establish the regulatory stem cell niche of pluripotent human cells in vitro. Nature. 2007; 448:1015-21. 22. Lei T, Jacob S, Ajil-Zaraa I, Dubuisson JB, Irion O, Jaconi M, Feki A. Xeno-free derivation and culture of human embryonic stem cells: current status, problems and challenges. Cell Res. 2007; 17:682-8. 23. Swistowski A, Peng J, Han Y, Swistowska AM, Rao MS, Zeng X. Xeno-free defined conditions for culture of human

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Heat shock protein 60 and asthma treatment 10.5372/1905-7415.0604.084

References 1. Calderwood SK, Mambula SS, Gray PJ Jr. Extracellular heat shock proteins in cell signaling and immunity. Ann NY Acad Sci. 2007; 1113:28-39. 2. V, Hauet-Broere F, Berlo S, Paul L, van der Zee R, de Kleer I,et al. Stress proteins as inducers and targets of regulatory T cells in arthritis. Int Rev Immunol. 2005; 24:181-97. 3. Pockley AG, Muthana M, Calderwood SK. The dual immunoregulatory roles of stress proteins. Trends Biochem Sci. 2008; 33:71-9. 4. Gupta RS, Ramachandra NB, Bowes T

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Ataxia telangiectasia mutated nuclear localization in head and neck cancer cells is PPP2R2B-dependent

importin beta superfamily. Biochem Biophys Res Commun. 2003; 303:908-13. 5. Lad C, Williams NH, Wolfenden R. The rate of hydrolysis of phosphomonoester dianions and the exceptional catalytic proficiencies of protein and inositol phosphatases. Proc Natl Acad Sci USA. 2003; 100:5607-10. 6. Virshup DM. Protein phosphatase 2A: a panoply of enzymes. Curr Opin Cell Biol. 2000; 12:180-5. 7. Eichhorn PJ, Creyghton MP, Bernards R. Protein phosphatase 2A regulatory subunits and cancer. Biochim Biophys Acta. 2009; 1795

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Prognostic significance of p16, p53, Bcl-2, and Bax in oral and oropharyngeal squamous cell carcinoma

. Regulators of cell death. Trends Genet. 1995; 11:101-5. 5. Hall PA, Meek D, Lane DP. p53-integrating the complexity. J Pathol. 1996; 180:1-5. 6. Miyashita T, Krajewski S, Krajewska M, Wang HG, Lin HK, Liebermann DA, et al. Tumor suppressor p53 is a regulator of bcl-2 and bax gene expression in vitro and in vivo. Oncogene. 1994; 9:1799-805. 7. Serrano M, Hannon GJ, Beach D. A new regulatory motif in cell cycle control causing specific inhibition of cyclin D/CDK4. Nature. 1993; 366:704-7. 8. Mork J, Lie AK

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Role of vascular endothelial growth factor receptor in the pro-proliferation activity of CD40-CD40L in AGS gastric cancer cells

References 1. Jemal A, Siegel R, Ward E, Hao Y, Xu J, Murray T, Thun MJ. Cancer statistics, 2008. CA Cancer J Clin. 2008; 58: 71-96. 2. Mizukami Y, Kono K, Kawaguchi Y, Akaike H, Kamimura K, Sugai H, Fujii H. CCL17 and CCL22 chemokines within tumor microenvironment are related to accumulation of Foxp3+ regulatory T cells in gastric cancer. Int J Cancer. 2008; 122:2286-93. 3. Panani AD. Cytogenetic and molecular aspects of gastric cancer: clinical implications. Cancer Lett. 2008; 266:99-115. 4

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