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Dive into the research topics where Éva Sághy is active.

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Featured researches published by Éva Sághy.


Journal of Molecular Endocrinology | 2016

Estrogen-dependent up-regulation of TRPA1 and TRPV1 receptor proteins in the rat endometrium.

Krisztina Pohóczky; József Kun; Bálint Szalontai; Éva Szőke; Éva Sághy; Maja Payrits; Béla Kajtár; Krisztina Kovacs; József L. Környei; János Garai; András Garami; Anikó Perkecz; Levente Czeglédi; Zsuzsanna Helyes

Transient receptor potential ankyrin 1 (TRPA1) and vanilloid 1 (TRPV1) receptors expressed predominantly in sensory nerves are activated by inflammatory stimuli and mediate inflammation and pain. Although they have been shown in the human endometrium, their regulation and function are unknown. Therefore, we investigated their estrogen- and progesterone-dependent alterations in the rat endometrium in comparison with the estrogen-regulated inflammatory cytokine macrophage migration inhibitory factor (MIF). Four-week-old (sexually immature) and four-month-old (sexually mature) female rats were treated with the non-selective estrogen receptor (ER) agonist diethylstilboestrol (DES), progesterone and their combination, or ovariectomized. RT-PCR and immunohistochemistry were performed to determine mRNA and protein expression levels respectively. Channel function was investigated with ratiometric [Ca(2+)]i measurement in cultured primary rat endometrial cells. Both TRP receptors and MIF were detected in the endometrium at mRNA and protein levels, and their localizations were similar. Immunostaining was observed in the immature epithelium, while stromal, glandular and epithelial positivity were observed in adults. Functionally active TRP receptor proteins were shown in endometrial cells by activation-induced calcium influx. In adults, Trpa1 and Trpv1 mRNA levels were significantly up-regulated after DES treatment. TRPA1 increased after every treatment, but TRPV1 remained unchanged following the combined treatment and ovariectomy. In immature rats, DES treatment resulted in increased mRNA expression of both channels and elevated TRPV1 immunopositivity. MIF expression changed in parallel with TRPA1/TRPV1 in most cases. DES up-regulated Trpa1, Trpv1 and Mif mRNA levels in endometrial cell cultures, but 17β-oestradiol having ERα-selective potency increased only the expression of Trpv1. We provide the first evidence for TRPA1/TRPV1 expression and their estrogen-induced up-regulation in the rat endometrium in correlation with the MIF.


Glia | 2016

TRPA1 deficiency is protective in cuprizone-induced demyelination—A new target against oligodendrocyte apoptosis

Éva Sághy; Éva Sipos; Péter Ács; Kata Bölcskei; Krisztina Pohóczky; Ágnes Kemény; Zoltán Sándor; Éva Szőke; György Sétáló; Sámuel Komoly; Erika Pintér

Multiple sclerosis is a chronic inflammatory, demyelinating degenerative disease of the central nervous system. Current treatments target pathological immune responses to counteract the inflammatory processes. However, these drugs do not restrain the long‐term progression of clinical disability. For this reason, new therapeutic approaches and identification of novel target molecules are needed to prevent demyelination or promote repair mechanisms. Transient Receptor Potential Ankyrin 1 (TRPA1) is a nonselective cation channel with relatively high Ca2+ permeability. Its pathophysiological role in central nervous system disorders has not been elucidated yet. In the present study, we aimed to assess the distribution of TRPA1 in the mouse brain and reveal its regulatory role in the cuprizone‐induced demyelination. This toxin‐induced model, characterized by oligodendrocyte apoptosis and subsequent primary demyelination, allows us to investigate the nonimmune aspects of multiple sclerosis. We found that TRPA1 is expressed on astrocytes in the mouse central nervous system. Interestingly, TRPA1 deficiency significantly attenuated cuprizone‐induced demyelination by reducing the apoptosis of mature oligodendrocytes. Our data suggest that TRPA1 regulates mitogen‐activated protein kinase pathways, as well as transcription factor c‐Jun and a proapoptotic Bcl‐2 family member (Bak) expression resulting in enhanced oligodendrocyte apoptosis. In conclusion, we propose that TRPA1 receptors enhancing the intracellular Ca2+ concentration modulate astrocyte functions, and influence the pro or anti‐apoptotic pathways in oligodendrocytes. Inhibition of TRPA1 receptors might successfully diminish the degenerative pathology in multiple sclerosis and could be a promising therapeutic target to limit central nervous system damage in demyelinating diseases. GLIA 2016;64:2166–2180


Journal of Molecular Neuroscience | 2016

Capsaicin-Sensitive Sensory Nerves Mediate the Cellular and Microvascular Effects of H2S via TRPA1 Receptor Activation and Neuropeptide Release.

Zsófia Hajna; Éva Sághy; Maja Payrits; Aisah A. Aubdool; Éva Szőke; Gabor Pozsgai; István Bátai; Lívia Nagy; Dániel Filotás; Zsuzsanna Helyes; Susan D. Brain; Erika Pintér

It is supposed that TRPA1 receptor can be activated by hydrogen sulphide (H2S). Here, we have investigated the role of TRPA1 receptor in H2S-induced [Ca2+]i increase in trigeminal ganglia (TRG) neurons, and the involvement of capsaicin-sensitive sensory nerves in H2S-evoked cutaneous vasodilatation. [Ca2+]i was measured with ratiometric technique on TRG neurons of TRPA1+/+ and TRPA1−/− mice after NaHS, Na2S, allylisothiocyanate (AITC) or KCl treatment. Microcirculatory changes in the ear were detected by laser Doppler imaging in response to topical NaHS, AITC, NaOH, NaSO3 or NaCl. Mice were either treated with resiniferatoxin (RTX), or CGRP antagonist BIBN4096, or NK1 receptor antagonist CP99994, or K+ATP channel blocker glibenclamide. Alpha-CGRP−/− and NK1−/− mice were also investigated. NaHS and Na2S increased [Ca2+]i in TRG neurons derived from TRPA+/+ but not from TRPA1−/− mice. NaHS increased cutaneous blood flow, while NaOH, NaSO3 and NaCl did not cause significant changes. NaHS-induced vasodilatation was reduced in RTX-treated animals, as well as by pre-treatment with BIBN4096 or CP99994 alone or in combination. NaHS-induced vasodilatation was significantly smaller in alpha-CGRP−/− or NK1−/− mice compared to wild-types. H2S activates capsaicin-sensitive sensory nerves through TRPA1 receptors and the resultant vasodilatation is mediated by the release of vasoactive sensory neuropeptides CGRP and substance P.


Nitric Oxide | 2017

Analgesic effect of dimethyl trisulfide in mice is mediated by TRPA1 and sst4 receptors

Gabor Pozsgai; Maja Payrits; Éva Sághy; Réka Sebestyén-Bátai; Elise Steen; Éva Szőke; Zoltán Sándor; Margit Solymár; András Garami; Péter Orvos; László Tálosi; Zsuzsanna Helyes; Erika Pintér

TRPA1 receptors are calcium-permeable ligand-gated channels expressed in primary sensory neurons and involved in inflammation and pain. Activation of these neurons might have analgesic effect. Suggested mechanism of analgesic effect mediated by TRPA1 activation is the release of somatostatin (SOM) and its action on sst4 receptors. In the present study analgesic effect of TRPA1 activation on primary sensory neurons by organic trisulfide compound dimethyl trisulfide (DMTS) presumably leading to SOM release was investigated. Opening of TRPA1 by DMTS in CHO cells was examined by patch-clamp and fluorescent Ca2+ detection. Ca2+ influx upon DMTS administration in trigeminal ganglion (TRG) neurons of TRPA1 receptor wild-type (WT) and knockout (KO) mice was detected by ratiometric Ca2+ imaging. SOM release from sensory nerves of murine skin was assessed by radioimmunoassay. Analgesic effect of DMTS in mild heat injury-induced mechanical hyperalgesia was examined by dynamic plantar aesthesiometry. Regulatory role of DMTS on deep body temperature (Tb) was measured by thermocouple thermometry with respirometry and by telemetric thermometry. DMTS produced TRPA1-mediated currents and elevated [Ca2+]i in CHO cells. Similar data were obtained in TRG neurons. DMTS released SOM from murine sensory neurons TRPA1-dependently. DMTS exerted analgesic effect mediated by TRPA1 and sst4 receptors. DMTS-evoked hypothermia and hypokinesis were attenuated in freely-moving TRPA1 KO animals. Our study has presented original evidence regarding analgesic action of DMTS which might be due to TRPA1-mediated SOM release from sensory neurons and activation of sst4 receptors. DMTS could be a novel analgesic drug candidate.


Steroids | 2015

Synthesis of novel 13α-18-norandrostane–ferrocene conjugates via homogeneous catalytic methods and their investigation on TRPV1 receptor activation

Eszter Szánti-Pintér; Johan Wouters; Ágnes Gömöry; Éva Sághy; Éva Szőke; Zsuzsanna Helyes; László Kollár; Rita Skoda-Földes

13α-Steroid-ferrocene derivatives were synthesized via two reaction pathways starting from an unnatural 16-keto-18-nor-13α-steroid. The unnatural steroid was converted to ferrocene derivatives via copper-catalyzed azide-alkyne cycloaddition or palladium-catalyzed aminocarbonylation. 16-Azido- and 16-N-(prop-2-ynyl)-carboxamido-steroids were synthesized as starting materials for azide-alkyne cycloaddition with the appropriate ferrocene derivatives. Based on our earlier work, aminocarbonylation of 16-iodo-16-ene and 16-iodo-15-ene derivatives was studied with ferrocenylmethylamine. The new products were obtained in moderate to good yields and were characterized by (1)H and (13)C NMR, IR and MS. The solid state structure of the starting material 13α-18-norandrostan-16-one and two carboxamide products were determined by X-ray crystallography. Evidences were provided that the N-propargyl-carboxamide compound as well as its ferrocenylmethyltriazole derivative are able to decrease the activation of TRPV1 receptor on TRG neurons.


Pharmacological Research | 2015

Evidence for the role of lipid rafts and sphingomyelin in Ca2+-gating of Transient Receptor Potential channels in trigeminal sensory neurons and peripheral nerve terminals

Éva Sághy; Éva Szőke; Maja Payrits; Zsuzsanna Helyes; Rita Börzsei; János Erostyák; Tibor Z. Jánosi; György Sétáló; János Szolcsányi


Journal of Lipid Research | 2018

Carboxamido steroids inhibit the opening properties of transient receptor potential ion channels by lipid raft modulation

Éva Sághy; Maja Payrits; Tünde Bíró-Sütő; Rita Skoda-Földes; Eszter Szánti-Pintér; János Erostyák; Géza Makkai; György Sétáló; László Kollár; Tamás Kőszegi; Rita Csepregi; János Szolcsányi; Zsuzsanna Helyes; Éva Szőke


Neuropeptides | 2017

Evidence for the role of sphingomyelin and lipid rafts in Ca 2+ -gating of the Transient Receptor Potential channels in trigeminal sensory neurons and peripheral nerve terminals

Éva Szoke; Éva Sághy; Maja Payrits; Zsuzsanna Helyes; János Erostyák; Tibor Z. Jánosi; György Sétáló


Neuropeptides | 2017

Genetic deletion of the Transient Receptor Potential Ankyrin 1 (TRPA1) receptor inhibits cuprizon-induced demyelination in mice

Éva Sághy; Kata Bölcskei; Acs Péter; Komoly Sámuel; Anikó Perkecz; Balázs Gaszner; Éva Sipos; Éva Szoke; Ágnes Kemény; Sandor Zoltan; Zsuzsanna Helyes; Erika Pintér


Neuropeptides | 2017

TRPA1 receptor-mediated effects of H2S donors and polysulfides

Erika Pintér; Gabor Pozsgai; Zsófia Hajna; Éva Sághy; Ádám Horváth; Éva Szoke; Cecília P. Sár; Teréz Bagoly; Aisah A. Aubdool; Susan D. Brain; Zsuzsanna Helyes

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