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Design, Synthesis, and in vitro Evaluation of P2X7 Antagonists. , T Pournara D, Durner A, Kritsi E, Papakostas A, Zoumpoulakis P, Nicke A, Koufaki M., ChemMedChem. December 15, 2020; 15 (24): 2530-2543.
Synthesis and Pharmacological Evaluation of Novel Non-nucleotide Purine Derivatives as P2X7 Antagonists for the Treatment of Neuroinflammation. , Calzaferri F, Narros-Fernández P, de Pascual R, de Diego AMG, Nicke A, Egea J, García AG, de Los Ríos C., J Med Chem. February 25, 2021; 64 (4): 2272-2290.
Dissecting activation steps in P2X7 receptors. , Gusic M, Benndorf K, Sattler C., Biochem Biophys Res Commun. September 10, 2021; 569 112-117.
A Simplified Protocol to Incorporate the Fluorescent Unnatural Amino Acid ANAP into Xenopus laevis Oocyte-Expressed P2X7 Receptors. , Durner A, Nicke A., Methods Mol Biol. January 1, 2022; 2510 193-216.
Established Protocols for cRNA Expression and Voltage-Clamp Characterization of the P2X7 Receptor in Xenopus laevis Oocytes. , Schmalzing G, Markwardt F., Methods Mol Biol. January 1, 2022; 2510 157-192.
Derivation and Characterization of Murine and Amphibian Müller Glia Cell Lines. , Gallo RA, Qureshi F, Strong TA, Lang SH, Pino KA, Dvoriantchikova G, Pelaez D., Transl Vis Sci Technol. April 1, 2022; 11 (4): 4.
Panx1 channels promote both anti- and pro-seizure-like activities in the zebrafish via p2rx7 receptors and ATP signaling. , Whyte-Fagundes P, Taskina D, Safarian N, Zoidl C, Carlen PL, Donaldson LW, Zoidl GR., Commun Biol. May 18, 2022; 5 (1): 472.
Activation of endothelial NO synthase and P2X7 receptor modification mediates the cholinergic control of ATP-induced interleukin-1β release by mononuclear phagocytes. , Richter K , Asci N, Singh VK, Yakoob SH, Meixner M, Zakrzewicz A, Liese J, Hecker A, Wilker S, Stumpf S, Schlüter KD, Rohde M, Gödecke A, Padberg W, Manzini I , Schmalzing G, Grau V., Front Immunol. January 1, 2023; 14 1140592.
Improved ANAP incorporation and VCF analysis reveal details of P2X7 current facilitation and a limited conformational interplay between ATP binding and the intracellular ballast domain. , Durner A, Durner E, Nicke A., Elife. January 4, 2023; 12