Dual Role of the P2X7 Receptor in Dendritic Outgrowth during Physiological and Pathological Brain Development.

Mut-Arbona, Paula [Mut-Arbona, Paula (Neuroscience), szerző] Doktori Iskola (SE); Molekuláris Farmakológia Kutatócsoport (HRN KOKI); Kísérleti Orvostudományi Kutatóintézet; Huang, Lumei [Huang, Lumei (Institute of expe...), szerző] Doktori Iskola (SE); Molekuláris Farmakológia Kutatócsoport (HRN KOKI); Kísérleti Orvostudományi Kutatóintézet; Baranyi, Mária [Baranyi, Mária (Molekuláris farma...), szerző] Molekuláris Farmakológia Kutatócsoport (HRN KOKI); Kísérleti Orvostudományi Kutatóintézet; Tod, Pál [Tod, Pál (Purinerg jelátvit...), szerző] Molekuláris Farmakológia Kutatócsoport (HRN KOKI); Kísérleti Orvostudományi Kutatóintézet; Iring, András [Iring, András (Élettan), szerző] Molekuláris Farmakológia Kutatócsoport (HRN KOKI); Kísérleti Orvostudományi Kutatóintézet; Calzaferri, Francesco; de los Ríos, Cristobal; Sperlágh, Beáta ✉ [Sperlágh, Beáta (Neurofarmakológia), szerző] Doktori Iskola (SE); Molekuláris Farmakológia Kutatócsoport (HRN KOKI); Kísérleti Orvostudományi Kutatóintézet

Angol nyelvű Szakcikk (Folyóiratcikk) Tudományos
Megjelent: JOURNAL OF NEUROSCIENCE 0270-6474 1529-2401 43 (7) pp. 1125-1142 2023
  • SJR Scopus - Neuroscience (miscellaneous): Q1
Azonosítók
Támogatások:
  • National Laboratory of Translational Neuroscience (TINL)(RRF-2.3.1-21-2022-00011)
  • Nemzeti Gyógyszerkutatási és Fejlesztési Laboratórium (PharmaLab)(RRF-2.3.1-21-2022-00015) Támogató: NKFIH
  • National Laboratory of Translational Neuroscience (TINL)(RRF-2.3.1-21-2022-00011)
  • NAP2022-I-1/2022(Hungarian Brain Research Program)
  • Grant 131629(Hungarian Research and Development Fund)
  • Recovery and Resilience Facility of the European Union within the framework of Program Széchenyi ...(RRF-2.3.1-21-2022-00011)
  • Post-Covid Program of the Hungarian Academy of Sciences(PC-II-2/ 2022)
  • Hungarian Research and Development Fund(131629)
  • (PC-II-2/2022) Támogató: Hungarian Academy of Sciences
  • European Union’s Horizon 2020 Research and Innovation Program under the Marie Skłodowska Curie(766124)
  • Hungarian Academy of Sciences Premium Postdoctoral Research Program(PPD2019-20/2019-439)
At high levels, extracellular ATP operates as a “danger” molecule under pathologic conditions through purinergic receptors, including the ionotropic P2X7 receptor (P2X7R). Its endogenous activation is associated with neurodevelopmental disorders; however, its function during early embryonic stages remains largely unclear. Our objective was to determine the role of P2X7R in the regulation of neuronal outgrowth. For this purpose, we performed Sholl analysis of dendritic branches on primary hippocampal neurons and in acute hippocampal slices from WT mice and mice with genetic deficiency or pharmacological blockade of P2X7R. Because abnormal dendritic branching is a hallmark of certain neurodevelopmental disorders, such as schizophrenia, a model of maternal immune activation (MIA)-induced schizophrenia, was used for further morphologic investigations. Subsequently, we studied MIA-induced behavioral deficits in young adult mice females and males. Genetic deficiency or pharmacological blockade of P2X7R led to branching deficits under physiological conditions. Moreover, pathologic activation of the receptor led to deficits in dendritic outgrowth on primary neurons from WT mice but not those from P2X7R KO mice exposed to MIA. Likewise, only MIA-exposed WT mice displayed schizophrenia-like behavioral and cognitive deficits. Therefore, we conclude that P2X7R has different roles in the development of hippocampal dendritic arborization under physiological and pathologic conditions.
Hivatkozás stílusok: IEEEACMAPAChicagoHarvardCSLMásolásNyomtatás
2025-03-30 08:25