All publications
1-7 elements, in total: 7
Iring, András; Tóth, Adrián; Baranyi, Mária; Otrokocsi, Lilla; Módis, László V.; Gölöncsér, Flóra; Varga, Bernadett; Hortobágyi, Tibor; Bereczki, Dániel; Dénes, Ádám; Sperlágh, Beáta
(2022)
The dualistic role of the purinergic P2Y12-receptor in an in vivo model of Parkinson's disease: Signalling pathway and novel therapeutic targets
PHARMACOLOGICAL RESEARCH 1096-1186 176:
Szabó, Dorottya; Tod, Pál; Gölöncsér, Flóra; Román, Viktor; Lendvai, Balázs; Otrokocsi, Lilla; Sperlágh, Beáta
(2022)
Maternal P2X7 receptor inhibition prevents autism-like phenotype in male mouse offspring through the NLRP3-IL-1β pathway.
BRAIN BEHAVIOR AND IMMUNITY 1090-2139 101: 318-332
Császár Eszter; Lénárt Nikolett*; Cserép Csaba; Környei Zsuzsanna; Fekete Rebeka; Pósfai Balázs; Balázsfi Diána; Hangya Balázs; Schwarcz Anett D; Szabadits Eszter; Szöllősi Dávid; Szigeti Krisztián; Máthé Domokos; West Brian L; Sviatkó Katalin; Brás Ana Rita; Mariani Jean-Charles; Kliewer Andrea; Lenkei Zsolt; Hricisák László; Benyó Zoltán; Baranyi Mária; Sperlágh Beáta; Menyhárt Ákos; Farkas Eszter; Dénes Ádám ✉
(2022)
Microglia modulate blood flow, neurovascular coupling, and hypoperfusion via purinergic actions.
JOURNAL OF EXPERIMENTAL MEDICINE 0022-1007 1540-9538 219: Paper e20211071. 33 p.
Huang, L.; Tang, Y.; Sperlagh, B.
(2022)
Glial Purinergic Signaling-Mediated Oxidative Stress (GPOS) in Neuropsychiatric Disorders
OXIDATIVE MEDICINE AND CELLULAR LONGEVITY 1942-0994 2022:
Kristóf Zsüliet; Baranyi Mária; Tod Pál; Mut-Arbona Paula; Demeter Kornél; Bitter István**; Sperlágh Beáta ✉
(2022)
Elevated serum purine levels in schizophrenia: a reverse translational study to identify novel inflammatory biomarkers
INTERNATIONAL JOURNAL OF NEUROPSYCHOPHARMACOLOGY 1461-1457 1469-5111 25: pp 645-659
Mut-Arbona Paula; Sperlágh Beáta; Nicke Annette
(2022)
Analysis of P2X7-Induced Neuronal Branching
: pp 341-353 Paper Chapter 19.
Al-Khrasani M.; Karadi D.A.; Galambos A.R.; Sperlagh B.; Vizi E.S. ✉
(2022)
The Pharmacological Effects of Phenylephrine are Indirect, Mediated by Noradrenaline Release from the Cytoplasm
NEUROCHEMICAL RESEARCH 0364-3190 1573-6903 In press: