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Neuronal CXCL10/CXCR3 Axis Mediates the Induction of Cerebral Hyperexcitability by Peripheral Viral Challenge.
Petrisko, Tiffany J; Bloemer, Jenna; Pinky, Priyanka D; Srinivas, Sriraja; Heslin, Ryan T; Du, Yifeng; Setti, Sharay E; Hong, Hao; Suppiramaniam, Vishnu; Konat, Gregory W; Reed, Miranda N.
Affiliation
  • Petrisko TJ; Departments of Biochemistry and Neuroscience, West Virginia University School of Medicine, Morgantown, WV, United States.
  • Bloemer J; Drug Discovery and Development, School of Pharmacy, Auburn University, Auburn, AL, United States.
  • Pinky PD; Drug Discovery and Development, School of Pharmacy, Auburn University, Auburn, AL, United States.
  • Srinivas S; Drug Discovery and Development, School of Pharmacy, Auburn University, Auburn, AL, United States.
  • Heslin RT; Drug Discovery and Development, School of Pharmacy, Auburn University, Auburn, AL, United States.
  • Du Y; Drug Discovery and Development, School of Pharmacy, Auburn University, Auburn, AL, United States.
  • Setti SE; Drug Discovery and Development, School of Pharmacy, Auburn University, Auburn, AL, United States.
  • Hong H; Department of Pharmacy, The First Affiliated Hospital of Xiamen University, Xiamen, China.
  • Suppiramaniam V; Key Laboratory of Neuropsychiatric Diseases, Jiangsu Key Laboratory of Drug Discovery for Metabolic Diseases, and State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, China.
  • Konat GW; Drug Discovery and Development, School of Pharmacy, Auburn University, Auburn, AL, United States.
  • Reed MN; Center for Neuroscience Initiative, Auburn University, Auburn, AL, United States.
Front Neurosci ; 14: 220, 2020.
Article in En | MEDLINE | ID: mdl-32265633
ABSTRACT
Peripheral infections can potently exacerbate neuropathological conditions, though the underlying mechanisms are poorly understood. We have previously demonstrated that intraperitoneal (i.p.) injection of a viral mimetic, polyinosinic-polycytidylic acid (PIC) induces a robust generation of CXCL10 chemokine in the hippocampus. The hippocampus also features hyperexcitability of neuronal circuits following PIC challenge. The present study was undertaken to determine the role of CXCL10 in mediating the development of hyperexcitability in response to PIC challenge. Briefly, young female C57BL/6 mice were i.p. injected with PIC, and after 24 h, the brains were analyzed by confocal microscopy. CXCL10 staining of neuronal perikarya and a less intense staining of the neuropil was observed in the hippocampus and cortex. CXCL10 staining was also evident in a subpopulation of astrocytes, whereas microglia were CXCL10 negative. CXCR3, the cognate receptor of CXCL10 was present exclusively on neurons, indicating that the CXCL10/CXCR3 axis operates through an autocrine/paracrine neuronal signaling. Blocking cerebral CXCR3 through intracerebroventricular injection of a specific inhibitor, AMG487, abrogated PIC challenge-induced increase in basal synaptic transmission and long-term potentiation (LTP), as well as the reduction of paired-pulse facilitation (PPF), in the hippocampus. The PIC-mediated abolishment of hippocampal long-term depression (LTD) was also restored after administration of AMG487. Moreover, CXCR3 inhibition attenuated seizure hypersensitivity induced by PIC challenge. The efficacy of AMG487 strongly strengthens the notion that CXCL10/CXCR3 axis mediates the induction of cerebral hyperexcitability by PIC challenge.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Front Neurosci Year: 2020 Document type: Article Affiliation country: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Front Neurosci Year: 2020 Document type: Article Affiliation country: United States