2-PMAP Ameliorates Cerebral Vasospasm and Brain Injury after Subarachnoid Hemorrhage by Regulating Neuro-Inflammation in Rats

Cells. 2022 Jan 12;11(2):242. doi: 10.3390/cells11020242.

Abstract

A subarachnoid hemorrhage (SAH), leading to severe disability and high fatality in survivors, is a devastating disease. Neuro-inflammation, a critical mechanism of cerebral vasospasm and brain injury from SAH, is tightly related to prognoses. Interestingly, studies indicate that 2-[(pyridine-2-ylmethyl)-amino]-phenol (2-PMAP) crosses the blood-brain barrier easily. Here, we investigated whether the vasodilatory and neuroprotective roles of 2-PMAP were observed in SAH rats. Rats were assigned to three groups: sham, SAH and SAH+2-PMAP. SAHs were induced by a cisterna magna injection. In the SAH+2-PMAP group, 5 mg/kg 2-PMAP was injected into the subarachnoid space before SAH induction. The administration of 2-PMAP markedly ameliorated cerebral vasospasm and decreased endothelial apoptosis 48 h after SAH. Meanwhile, 2-PMAP decreased the severity of neurological impairments and neuronal apoptosis after SAH. Furthermore, 2-PMAP decreased the activation of microglia and astrocytes, expressions of TLR-4 and p-NF-κB, inflammatory markers (TNF-α, IL-1β and IL-6) and reactive oxygen species. This study is the first to confirm that 2-PMAP has vasodilatory and neuroprotective effects in a rat model of SAH. Taken together, the experimental results indicate that 2-PMAP treatment attenuates neuro-inflammation, oxidative stress and cerebral vasospasm, in addition to ameliorating neurological deficits, and that these attenuating and ameliorating effects are conferred through the TLR-4/NF-κB pathway.

Keywords: 2-PMAP; apoptosis; brain injury; neuro-inflammation; subarachnoid hemorrhage (SAH); vasospasm.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Apoptosis / drug effects
  • Astrocytes / drug effects
  • Astrocytes / metabolism
  • Behavior, Animal / drug effects
  • Brain Injuries / drug therapy*
  • Brain Injuries / etiology*
  • Brain Injuries / physiopathology
  • Cytokines / metabolism
  • Inflammation / complications*
  • Inflammation / physiopathology
  • Inflammation Mediators / metabolism
  • Microglia / drug effects
  • Microglia / metabolism
  • Models, Biological
  • Motor Activity / drug effects
  • NF-kappa B / metabolism
  • Neurons / drug effects
  • Neurons / metabolism
  • Neurons / pathology*
  • Pyridines / pharmacology
  • Pyridines / therapeutic use*
  • Rats
  • Rats, Sprague-Dawley
  • Reactive Oxygen Species / metabolism
  • Severity of Illness Index
  • Signal Transduction
  • Subarachnoid Hemorrhage / complications*
  • Subarachnoid Hemorrhage / physiopathology
  • Toll-Like Receptor 4 / metabolism
  • Vasospasm, Intracranial / drug therapy*
  • Vasospasm, Intracranial / etiology*
  • Vasospasm, Intracranial / pathology
  • Vasospasm, Intracranial / physiopathology

Substances

  • Cytokines
  • Inflammation Mediators
  • NF-kappa B
  • Pyridines
  • Reactive Oxygen Species
  • Toll-Like Receptor 4