Association of medullary reticular formation ventral part with spasticity in mice suffering from photothrombotic stroke

Neuroimage. 2024 Sep:298:120791. doi: 10.1016/j.neuroimage.2024.120791. Epub 2024 Aug 13.

Abstract

Strokes cause spasticity via stretch reflex hyperexcitability in the spinal cord, and spastic paralysis due to involuntary muscle contraction in the hands and fingers can severely restrict skilled hand movements. However, the underlying neurological mechanisms remain unknown. Using a mouse model of spasticity after stroke, we demonstrate changes in neuronal activity with and without electrostimulation of the afferent nerve to induce the stretch reflex, measured using quantitative activation-induced manganese-enhanced magnetic resonance imaging. Neuronal activity increased within the ventral medullary reticular formation (MdV) in the contralesional brainstem during the acute post-stroke phase, and this increase was characterised by activation of circuits involved in spasticity. Interestingly, ascending electrostimulation inhibited the MdV activity on the stimulation side in normal conditions. Moreover, immunohistochemical staining showed that, in the acute phase, the density of GluA1, one of the α-amino-3 hydroxy‑5 methyl -4 isoxazolepropionic acid receptor (AMPAR) subunits, at the synapses of MdV neurons was significantly increased. In addition, the GluA1/GluA2 ratio in these receptors was altered at 2 weeks post-stroke, confirming homeostatic plasticity as the underlying mechanisms of spasticity. These results provide new insights into the relationship between impaired skilled movements and spasticity at the acute post-stroke phase.

Keywords: Ischaemic cerebral infarction, Homeostatic neuronal plasticity; Quantitative activation-induced manganese-enhanced magnetic resonance imaging; Skilled forelimb movement; Spasticity; Ventral medullary reticular formation.

MeSH terms

  • Animals
  • Disease Models, Animal
  • Magnetic Resonance Imaging
  • Male
  • Medulla Oblongata* / metabolism
  • Mice
  • Mice, Inbred C57BL
  • Muscle Spasticity* / etiology
  • Muscle Spasticity* / physiopathology
  • Receptors, AMPA / metabolism
  • Reflex, Stretch / physiology
  • Reticular Formation* / diagnostic imaging
  • Reticular Formation* / physiopathology
  • Thrombotic Stroke / physiopathology

Substances

  • Receptors, AMPA