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Dive into the research topics where Stavros Topouzis is active.

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Featured researches published by Stavros Topouzis.


Nature Immunology | 2004

Interleukin 31, a cytokine produced by activated T cells, induces dermatitis in mice

Stacey R. Dillon; Cindy A. Sprecher; Angela K. Hammond; Janine Bilsborough; Maryland Rosenfeld-Franklin; Scott R. Presnell; Harald S. Haugen; Mark Maurer; Brandon Harder; Janet V. Johnston; Susan Bort; Sherri Mudri; Joseph L. Kuijper; Tom Bukowski; Pamela Shea; Dennis L. Dong; Maria M. Dasovich; Francis J. Grant; Luann Lockwood; Steven D. Levin; Cosette LeCiel; Kim Waggie; Heather Day; Stavros Topouzis; Janet M. Kramer; Rolf E. Kuestner; Zhi Chen; Don Foster; Julia Parrish-Novak; Jane A. Gross

T cell–derived cytokines are important in the development of an effective immune response, but when dysregulated they can promote disease. Here we identify a four-helix bundle cytokine we have called interleukin 31 (IL-31), which is preferentially produced by T helper type 2 cells. IL-31 signals through a receptor composed of IL-31 receptor A and oncostatin M receptor. Expression of IL-31 receptor A and oncostatin M receptor mRNA was induced in activated monocytes, whereas epithelial cells expressed both mRNAs constitutively. Transgenic mice overexpressing IL-31 developed severe pruritis, alopecia and skin lesions. Furthermore, IL-31 receptor expression was increased in diseased tissues derived from an animal model of airway hypersensitivity. These data indicate that IL-31 may be involved in promoting the dermatitis and epithelial responses that characterize allergic and non-allergic diseases.


Proceedings of the National Academy of Sciences of the United States of America | 2001

A soluble class II cytokine receptor, IL-22RA2, is a naturally occurring IL-22 antagonist.

Wenfeng Xu; Scott R. Presnell; Julia Parrish-Novak; Wayne R. Kindsvogel; Steve Jaspers; Zhi Chen; Stacey R. Dillon; Zeren Gao; Teresa Gilbert; Karen Madden; Stacy Schlutsmeyer; Lena Yao; Theodore E. Whitmore; Yasmin A. Chandrasekher; Francis J. Grant; Mark Maurer; Laura J. Jelinek; Harold Storey; Ty Brender; Angie Hammond; Stavros Topouzis; Christopher H. Clegg; Donald C. Foster

IL-22 is an IL-10 homologue that binds to and signals through the class II cytokine receptor heterodimer IL-22RA1/CRF2–4. IL-22 is produced by T cells and induces the production of acute-phase reactants in vitro and in vivo, suggesting its involvement in inflammation. Here we report the identification of a class II cytokine receptor designated IL-22RA2 (IL-22 receptor-α 2) that appears to be a naturally expressed soluble receptor. IL-22RA2 shares amino acid sequence homology with IL-22RA1 (also known as IL-22R, zcytor11, and CRF2–9) and is physically adjacent to IL-20Rα and IFN-γR1 on chromosome 6q23.3–24.2. We demonstrate that IL-22RA2 binds specifically to IL-22 and neutralizes IL-22-induced proliferation of BaF3 cells expressing IL-22 receptor subunits. IL-22RA2 mRNA is highly expressed in placenta and spleen by Northern blotting. PCR analysis using RNA from various tissues and cell lines showed that IL-22RA2 was expressed in a range of tissues, including those in the digestive, female reproductive, and immune systems. In situ hybridization revealed the dominant cell types expressing IL-22RA2 were mononuclear cells and epithelium. Because IL-22 induces the expression of acute phase reactants, IL-22RA2 may play an important role as an IL-22 antagonist in the regulation of inflammatory responses.


Journal of The American Society of Nephrology | 2003

Obstructive Uropathy in Mice and Humans: Potential Role for PDGF-D in the Progression of Tubulointerstitial Injury

Sekiko Taneda; Kelly L. Hudkins; Stavros Topouzis; Debra G. Gilbertson; Vuddhidej Ophascharoensuk; Luan Truong; Richard J. Johnson; Charles E. Alpers

Tubulointerstitial fibrosis is a major characteristic of progressive renal diseases. Platelet-derived growth factor (PDGF) is a family of growth regulatory molecules consisting of PDGF-A and -B, along with the newly discovered PDGF-C and -D. They signal through cell membrane receptors, PDGF receptor alpha (PDGF-Ralpha) and receptor beta (PDGF-Rbeta). Involvement of PDGF-B and PDGF-Rbeta in the initiation and progression of renal fibrosis has been well documented. The authors studied the localization of PDGF ligands and receptors by immunohistochemistry, with emphasis on the role of PDGF-D in murine renal fibrosis induced by unilateral ureteral obstruction (UUO). In mice with UUO, de novo expression of PDGF-D was detected in interstitial cells at day 4, which increased to maximal expression at day 14. Increased expression of PDGF-B by interstitial cells and in some tubules was observed after day 4. The diseased mice did not show augmentation of PDGF-A or PDGF-C proteins in the areas of fibrosis. PDGF-Ralpha and -Rbeta protein expression was increased in interstitial cells after day 4 and reached maximal expression at day 14. Human renal nephrectomies (n = 10) of chronic obstructive nephropathy demonstrated similar de novo expression of PDGF-D in interstitial cells, correlating with expression of PDGF-Rbeta and PDGF-B, as it did in the murine model. These observations suggest that PDGF-D plays an important role in the pathogenesis of tubulointerstitial injury through binding of PDGF-Rbeta in both human obstructive nephropathy and the corresponding murine model of UUO.


Journal of The American Society of Nephrology | 2004

Exogenous PDGF-D Is a Potent Mesangial Cell Mitogen and Causes a Severe Mesangial Proliferative Glomerulopathy

Kelly L. Hudkins; Debra G. Gilbertson; Matthew D. Carling; Sekiko Taneda; Steven D. Hughes; Matthew S. Holdren; Thomas E. Palmer; Stavros Topouzis; Aaron C. Haran; Andrew L. Feldhaus; Charles E. Alpers

The PDGF family consists of at least four members, PDGF-A, -B, -C, and -D. All of the PDGF isoforms bind and signal through two known receptors, PDGF receptor-alpha and PDGF receptor-beta, which are constitutively expressed in the kidney and are upregulated in specific diseases. It is well established that PDGF-B plays a pivotal role in the mediation of glomerular mesangial cell proliferation. However, little is known of the roles of the recently discovered PDGF-C and -D in mediating renal injury. In this study, adenovirus constructs encoding PDGF-B, -C, and -D were injected into mice. Mice with high circulating levels of PDGF-D developed a severe mesangial proliferative glomerulopathy, characterized by enlarged glomeruli and a striking increase in glomerular cellularity. The PDGF-B-overexpressing mice had a milder proliferative glomerulopathy, whereas the mice overexpressing PDGF-C and those that received adenovirus alone showed no measurable response. Mitogenicity of PDGF-D and -B for mesangial cells was confirmed in vitro. These findings emphasize the importance of engagement of PDGF receptor-beta in transducing mesangial cell proliferation and demonstrate that PDGF-D is a major mediator of mesangial cell proliferation. Finally, this approach has resulted in a unique and potentially valuable model of mesangial proliferative glomerulopathy and its resolution.


Bioorganic & Medicinal Chemistry | 2012

Thioglycine and l-thiovaline: Biologically active H2S-donors

Zongmin Zhou; Margarete von Wantoch Rekowski; Ciro Coletta; Csaba Szabó; Mariarosaria Bucci; Giuseppe Cirino; Stavros Topouzis; Andreas Papapetropoulos; Athanassios Giannis

Thioglycine and l-thiovaline are stable under acidic and basic conditions but in the presence of bicarbonate they liberate the gasotransmitter H(2)S. In cells both thioamino acids were proven to enhance cGMP formation and promote vasorelaxation in mouse aortic rings. Given that H(2)S is known to lower arterial hypertension, reduce oxidative stress and exhibit cardioprotective effects in preclinical models, H(2)S donors hold promise as novel treatments for cardiovascular diseases.


Nitric Oxide | 2015

Role of cGMP in hydrogen sulfide signaling.

Sofia-Iris Bibli; Guangdong Yang; Zongmin Zhou; Rui Wang; Stavros Topouzis; Andreas Papapetropoulos

The importance of hydrogen sulfide (H2S) in physiology and disease is being increasingly recognized in recent years. Unlike nitric oxide (NO) that signals mainly through soluble guanyl cyclase (sGC)/cGMP, H2S is more promiscuous, affecting multiple pathways. It interacts with ion channels, enzymes, transcription factors and receptors. It was originally reported that H2S does not alter the levels of cyclic nucleotides. More recent publications, however, have shown increases in intracellular cGMP following exposure of cells or tissues to exogenously administered or endogenously produced H2S. Herein, we discuss the evidence for the participation of cGMP in H2S signaling and reconcile the seemingly divergent results presented in the literature on the role of this cyclic nucleotide in the biological actions of H2S.


Journal of Pharmacology and Experimental Therapeutics | 2012

ANGIOPOIETIN-2 ENHANCES SURVIVAL IN EXPERIMENTAL SEPSIS INDUCED BY MULTIDRUG-RESISTANT PSEUDOMONAS AERUGINOSA

Ira-Maria Tzepi; Evangelos J. Giamarellos-Bourboulis; Dionyssia-Pinelopi Carrer; Thomas Tsaganos; Ralf A. Claus; Ilia Vaki; Aimilia Pelekanou; Antigone Kotsaki; Vassiliki Tziortzioti; Stavros Topouzis; Michael Bauer; Andreas Papapetropoulos

Levels of circulating angiopoietin-2 (Ang-2) increase in sepsis, raising the possibility that Ang-2 acts as a modulator in the sepsis cascade. To investigate this, experimental sepsis was induced in male C57BL6 mice by a multidrug-resistant isolate of Pseudomonas aeruginosa; survival was determined along with neutrophil tissue infiltration and release of proinflammatory cytokines. Survival was significantly increased either by pretreatment with recombinant Ang-2 2 h before or treatment with recombinant Ang-2 30 min after bacterial challenge. Likewise, Ang-2 pretreatment protected against sepsis-related death elicited by Escherichia coli; however, Ang-2 failed to provide protection in lipopolysaccharide (LPS)-challenged mice. The survival advantage of Ang-2 in response to P. aeruginosa challenge was lost in tumor necrosis factor (TNF)-deficient mice or neutropenic mice. Infiltration of the liver by neutrophils was elevated in the Ang-2 group compared with saline-treated animals. Serum TNF-α levels were reduced by Ang-2, whereas those of interleukin (IL)-6 and IL-10 remained unchanged. This was accompanied by lower release of TNF-α by stimulated splenocytes. When applied to U937 cells in vitro, heat-killed P. aeruginosa induced the secretion of IL-6 and TNF-α; low levels of exogenous TNF-α synergized with P. aeruginosa. This synergistic effect was abolished after the addition of Ang-2. These results put in evidence a striking protective role of Ang-2 in experimental sepsis evoked by a multidrug-resistant isolate of P. aeruginosa attributed to modulation of TNF-α production and changes in neutrophil migration. The protective role of Ang-2 is shown when whole microorganisms are used and not LPS, suggesting complex interactions with the host immune response.


British Journal of Pharmacology | 2015

Extending the translational potential of targeting NO/cGMP-regulated pathways in the CVS

Andreas Papapetropoulos; Adrian J. Hobbs; Stavros Topouzis

The discovery of NO as both an endogenous signalling molecule and as a mediator of the cardiovascular effects of organic nitrates was acknowledged in 1998 by the Nobel Prize in Physiology/Medicine. The characterization of its downstream signalling, mediated through stimulation of soluble GC (sGC) and cGMP generation, initiated significant translational interest, but until recently this was almost exclusively embodied by the use of PDE5 inhibitors in erectile dysfunction. Since then, research progress in two areas has contributed to an impressive expansion of the therapeutic targeting of the NO‐sGC‐cGMP axis: first, an increased understanding of the molecular events operating within this complex pathway and second, a better insight into its dys‐regulation and uncoupling in human disease. Already‐approved PDE5 inhibitors and novel, first‐in‐class molecules, which up‐regulate the activity of sGC independently of NO and/or of the enzymes haem prosthetic group, are undergoing clinical evaluation to treat pulmonary hypertension and myocardial failure. These molecules, as well as combinations or second‐generation compounds, are also being assessed in additional experimental disease models and in patients in a wide spectrum of novel indications, such as endotoxic shock, diabetic cardiomyopathy and Beckers muscular dystrophy. There is well‐founded optimism that the modulation of the NO‐sGC‐cGMP pathway will sustain the development of an increasing number of successful clinical candidates for years to come.


Journal of Pharmacology and Experimental Therapeutics | 2015

ATP-sensitive potassium channel activation induces angiogenesis in vitro and in vivo.

Bukar Umaru; Anastasia Pyriochou; Vasileios Kotsikoris; Andreas Papapetropoulos; Stavros Topouzis

Intense research is conducted to identify new molecular mechanisms of angiogenesis. Previous studies have shown that the angiogenic effects of hydrogen sulfide (H2S) depend on the activation of ATP-sensitive potassium channels (KATP) and that C-type natriuretic peptide (CNP), which can act through KATP, promotes endothelial cell growth. We therefore investigated whether direct KATP activation induces angiogenic responses and whether it is required for the endothelial responses to CNP or vascular endothelial growth factor (VEGF). Chick chorioallantoic membrane (CAM) angiogenesis was similarly enhanced by the direct KATP channel activator 2-nicotinamidoethyl acetate (SG-209) and by CNP or VEGF. The KATP inhibitors glibenclamide and 5-hydroxydecanoate (5-HD) reduced basal and abolished CNP-induced CAM angiogenesis. In vitro, the direct KATP openers nicorandil and SG-209 and the polypeptides VEGF and CNP increased proliferation and migration in bEnd.3 mouse endothelial cells. In addition, VEGF and CNP induced cord-like formation on Matrigel by human umbilical vein endothelial cells (HUVECs). All these in vitro endothelial responses were effectively abrogated by glibenclamide or 5-HD. In HUVECs, a small-interfering RNA–mediated decrease in the expression of the inwardly rectifying potassium channel (Kir) 6.1 subunit impaired cell migration and network morphogenesis in response to either SG-209 or CNP. We conclude that 1) direct pharmacologic activation of KATP induces angiogenic effects in vitro and in vivo, 2) angiogenic responses to CNP and VEGF depend on KATP activation and require the expression of the Kir6.1 KATP subunit, and 3) KATP activation may underpin angiogenesis to a variety of vasoactive stimuli, including H2S, VEGF, and CNP.


American Journal of Respiratory Cell and Molecular Biology | 2014

Guanylyl Cyclase Activation Reverses Resistive Breathing–Induced Lung Injury and Inflammation

Constantinos Glynos; Dimitris Toumpanakis; Konstantinos Loverdos; Vassiliki Karavana; Zongmin Zhou; Christina Magkou; Maria Dettoraki; Fotis Perlikos; Athanasia Pavlidou; Vasilis Kotsikoris; Stavros Topouzis; Stamatios Theocharis; Peter Brouckaert; Athanassios Giannis; Andreas Papapetropoulos; Theodoros P. Vassilakopoulos

Inspiratory resistive breathing (RB), encountered in obstructive lung diseases, induces lung injury. The soluble guanylyl cyclase (sGC)/cyclic guanosine monophosphate (cGMP) pathway is down-regulated in chronic and acute animal models of RB, such as asthma, chronic obstructive pulmonary disease, and in endotoxin-induced acute lung injury. Our objectives were to: (1) characterize the effects of increased concurrent inspiratory and expiratory resistance in mice via tracheal banding; and (2) investigate the contribution of the sGC/cGMP pathway in RB-induced lung injury. Anesthetized C57BL/6 mice underwent RB achieved by restricting tracheal surface area to 50% (tracheal banding). RB for 24 hours resulted in increased bronchoalveolar lavage fluid cellularity and protein content, marked leukocyte infiltration in the lungs, and perturbed respiratory mechanics (increased tissue resistance and elasticity, shifted static pressure-volume curve right and downwards, decreased static compliance), consistent with the presence of acute lung injury. RB down-regulated sGC expression in the lung. All manifestations of lung injury caused by RB were exacerbated by the administration of the sGC inhibitor, 1H-[1,2,4]oxodiazolo[4,3-]quinoxalin-l-one, or when RB was performed using sGCα1 knockout mice. Conversely, restoration of sGC signaling by prior administration of the sGC activator BAY 58-2667 (Bayer, Leverkusen, Germany) prevented RB-induced lung injury. Strikingly, direct pharmacological activation of sGC with BAY 58-2667 24 hours after RB reversed, within 6 hours, the established lung injury. These findings raise the possibility that pharmacological targeting of the sGC-cGMP axis could be used to ameliorate lung dysfunction in obstructive lung diseases.

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Andreas Papapetropoulos

National and Kapodistrian University of Athens

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Zongmin Zhou

National and Kapodistrian University of Athens

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Athanasia Pavlidou

National and Kapodistrian University of Athens

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Christina Magkou

National and Kapodistrian University of Athens

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Constantinos Glynos

National and Kapodistrian University of Athens

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