Alteration of the nucleus basalis of Meynert afferents to vibrissae-related sensory cortex in de-whiskered adolescent congenital hypothyroid rats

Biochem Biophys Res Commun. 2018 Sep 18;503(4):2466-2470. doi: 10.1016/j.bbrc.2018.07.001. Epub 2018 Jul 4.

Abstract

Introduction: Thyroid hypofunction during early development results in anatomical alterations in the cerebellum, cerebrum, hippocampus and other brain structures. The plastic organization of the nucleus basalis of Meynert (nBM) projections to the whiskers-related somatosensory (wS1) cortex in adolescent pups with maternal thyroid hypofunction and sensory deprivation was assessed through retrograde WGA-HRP labeling.

Methods: Congenital hypothyroidism induced by adding PTU (25 ppm) to the drinking water from embryonic day 16 to postnatal day (PND) 60. Pregnant rats were divided to intact and congenital hypothyroid groups. In each group, the total whiskers of pups (4 of 8) were trimmed continuously from PND 0 to PND 60.

Results: Following separately WGA-HRP injections into wS1, retrogradely labeled neurons were observed in nBM. The number of labeled neurons in nBM were higher in the congenital hypothyroid and whisker deprived groups compared to their controls (P < 0.05).

Conclusion: Based on our results both congenital hypothyroidism and sensory deprivation may disturb normal development of cortical circuits in of nBM afferents to the wS1 cortex.

Keywords: Afferent; Barrel cortex; Hypothyroidism; Nucleus basalis of meynert (NBM); Plasticity; Tract-tracing; Whisker deprivation.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Basal Nucleus of Meynert / cytology
  • Basal Nucleus of Meynert / embryology*
  • Basal Nucleus of Meynert / pathology
  • Congenital Hypothyroidism / embryology*
  • Congenital Hypothyroidism / pathology
  • Female
  • Neurons, Afferent / cytology*
  • Neurons, Afferent / pathology
  • Pregnancy
  • Rats, Wistar
  • Sensory Deprivation
  • Somatosensory Cortex / embryology
  • Somatosensory Cortex / pathology
  • Vibrissae / embryology
  • Vibrissae / pathology