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Repeated D1 dopamine receptor agonist administration prevents the development of both D1 and D2 striatal receptor

X T Hu1, F J White

  • 1Department of Psychiatry, Wayne State University School of Medicine, Detroit, Michigan.

Insights

Continuous D1 dopamine receptor agonist treatment prevents denervation-induced supersensitivity in dopamine pathways. This effect on D1 and D2 receptor sensitivity is not permanent, highlighting the role of sustained receptor occupation.

Area of Science:

  • Neuroscience
  • Pharmacology

Background:

  • 6-hydroxydopamine (6-OHDA) lesions induce supersensitivity in rat caudate-putamen (CPu) neurons to dopamine (DA) receptor agonists.
  • Denervation abolishes the necessity of D1 receptor stimulation for D2 agonist inhibition and synergistic D1/D2 agonist effects.

Purpose of the Study:

  • To determine the roles of D1 and D2 DA receptors in developing denervation supersensitivity.
  • To investigate the "uncoupling" of functional interactions between DA receptors post-lesion.

Main Methods:

  • Rats received daily injections of selective D1 agonist (SKF 38393), D2 agonist (quinpirole), or saline after 6-OHDA lesions.
  • Extracellular single-cell recording with iontophoretic drug administration assessed neuronal responses.
  • Behavioral tests (contralateral rotation) evaluated functional effects of agonist treatments.

Main Results:

  • Quinpirole prevented D2 receptor supersensitivity; SKF 38393 prevented both D1 and D2 receptor supersensitivity.
  • D1 agonist treatment, but not D2, prevented the loss of synergistic inhibitory responses.
  • SKF 38393, but not quinpirole, prevented apomorphine-induced rotations in unilaterally lesioned rats.

Conclusions:

  • Sustained D1 DA receptor occupation post-denervation prevents D1 and D2 receptor supersensitivity development.
  • D1 agonist treatment also preserves synergistic inhibitory responses between DA receptors.
  • Preventative effects on DA receptor supersensitivity are temporary, indicating the importance of continued receptor occupation.

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