Repeated administration of 1-hydroxy-3-amino-pyrrolidone-2 (HA-966) to rats induces tolerance, as shown by a decreased, drug-stimulated accumulation of dopamine (DA) in the striatum. In the present study we compared the adaptive response of the striatal dopaminergic system to repeated administration of HA-966 with the adaptive response observed after repeated haloperidol. These treatments deprive dopamine (DA) receptors from their agonist and cause a blockade of DA receptors, respectively. Tolerance to HA-966 was not accompanied by a change in the specific binding of [3H]spiperone to striatal membranes. This is in contrast to the well-documented up-regulation of DA receptors that occurs with tolerance to haloperidol. Repeated haloperidol pretreatment also diminished DA accumulation following a challenge dose of HA-966, to a similar extent as that caused by repeated pretreatment with HA-966. These similar effects of pretreatment with HA-966 or haloperidol on the response to the HA-966 challenge are in line with, and strengthen, the idea that an increased sensitivity of presynaptic DA receptors is responsible for the decreasing effect of HA-966 after its repeated administration. Haloperidol and HA-966 clearly have different effects on postsynaptic DA receptors, as is shown by their differential effects on striatal [3H]spiperone binding.
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http://dx.doi.org/10.1016/0014-2999(88)90249-x | DOI Listing |
Eur Radiol Exp
January 2025
Laboratory of Molecular Imaging, Department of Radiology, The First Affiliated Hospital of Nanjing Medical University, Nanjing, Jiangsu, China.
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Department of Basic Health Sciences, University Rey Juan Carlos (URJC), 28922 Alcorcón, Spain.
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January 2025
Center of Excellence in Clinical Virology, Faculty of Medicine, Chulalongkorn University, Bangkok, 10330, Thailand.
The ongoing emergence of SARS-CoV-2 variants, combined with antigen exposures from different waves and vaccinations, poses challenges in updating COVID-19 vaccine antigens. We collected 206 sera from individuals with vaccination-only, hybrid immunity, and single or repeated omicron post-vaccination infections (PVIs), including non-JN.1 and JN.
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Pharmacology & Therapeutics, College of Medicine and Health Sciences, Arabian Gulf University, Manama, Bahrain
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Clin Teach
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