It is unclear whether GABA receptors (GABARs) that contain the α3-subunit are substantially involved in the anxiolytic effects of benzodiazepines (BDZs). In the present study, we tested YT-III-31, a newer BDZ ligand with functional preference for α3βγ2 GABARs, in two paradigms of unconditioned anxiety, the open field and elevated plus maze in rats. The effective dose of YT-III-31 (2 mg/kg) displayed a clear anxiolytic-like profile, unhampered by sedative action, in both tests. At a higher dose (10 mg/kg), YT-III-31 induced ataxia in the rotarod and sedation in spontaneous locomotor activity test. The latter effect was preventable by flumazenil and βCCt, the non-selective and α1βγ2 GABAR affinity-selective antagonist, respectively, demonstrating that sedative properties of YT-III-31, when attained, are mediated by the α1γ2 site. To elucidate the receptor substrate of subtle behavioral differences between YT-III-31 and diazepam, we approximated in vivo receptor potentiation for both ligands, based on estimated unbound concentrations in rat brains. Far different from diazepam, YT-III-31 has significantly lower affinity for the α1γ2 over other BDZ-sensitive sites, and at lower doses (1-2 mg/kg) was devoid of potentiation at α1βγ2 GABARs. The approximation approach revealed a modest selectivity of YT-III-31 for α3γ2- in comparison to α2γ2 and α5γ2 binding sites, suggesting that its anxiolytic-like activity may not necessarily or predominantly reflect potentiation at α3βγ2 GABARs. Nonetheless, as the anxiolytic effects are achievable at a dose devoid of any sedative potential, and having favorable safety (cytotoxicity) and metabolic stability profile, YT-III-31 represents a valuable candidate for further translational research.
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http://dx.doi.org/10.1016/j.euroneuro.2018.05.014 | DOI Listing |
Neuromolecular Med
December 2024
Key Laboratory of Physical Fitness and Exercise Rehabilitation of Hunan Province, College of Physical Education, Hunan Normal University, Changsha, 410012, China.
Alzheimer's disease (AD) is the most common neurodegenerative disorder. The neuropathology of AD appears in the hippocampus. The purpose of this work was to reveal key differentially expressed genes (DEGs) in the hippocampus of AD patients and healthy individuals.
View Article and Find Full Text PDFNeurochem Res
January 2025
Laboratory of Chinese Medicine Brain Science, Innovative Institute of Chinese Medicine and Pharmacy, Shandong University of Traditional Chinese Medicine, Jinan, 250355, China.
Maintaining GABAergic inhibition within physiological limits in the medial prefrontal cortex (mPFC) is critical for working memory. While synaptic GABAR typically mediate the primary component of mPFC inhibition, the role of extrasynaptic δ-GABAR in working memory remains unclear. To investigate this, we used fiber photometry to examine the effects of δ-GABAR in freely moving mice.
View Article and Find Full Text PDFAlzheimers Dement
December 2024
The Neuroscience Institute at JFK Medical Center, Edison, NJ, USA; Hackensack Meridian School of Medicine, Nutley, NJ, USA.
Background: Disease-associated microglia (DAM), which cluster around Aβ plaques, represent a significant pathological hallmark of Alzheimer's disease (AD) and play a complex role in influencing neuroinflammation, mediating synapse loss, and participating in the phagocytic clearance of Aβ. Nonetheless, the precise mechanisms by which microglial activation extends beyond the traditional M1 and M2 classifications, encompassing a diverse spectrum of states, especially for DAM, closely intertwined with physiological and pathological conditions under Alzheimer's circumstances remain elusive.
Method: Here, we first combined biochemical techniques and bioinformatic analysis to test and quantify the expression of GABAR1 in both human and mouse AD models.
Alzheimers Dement
December 2024
San Francisco VA Medical Center, University of California San Francisco, San Francisco, CA, USA.
Background: Effective disease-modifying regimens for Alzheimer's Disease (AD) remain lacking due to insufficient understanding of its pathogenic drivers. It was shown previously that upregulation of the calcium-sensing receptor (CaSR), an excitatory family C GPCR, induces neurodegeneration by interfering with the inhibitory γ-aminobutyric acid (GABA) signaling following acute brain injuries (Ann_Clin_Transl_Neurol, 1:851-66). Herein, we determined whether CaSR overexpression is causally associated with the AD.
View Article and Find Full Text PDFAlzheimers Dement
December 2024
Universidade Federal do Rio Grande do Sul, Porto Alegre, Rio Grande do Sul, Brazil.
Background: Alzheimer's disease (AD) is characterized by the accumulation of amyloid-β (Aβ) plaques and tau tangles in the brain, and neurotransmission dysfunctions. Indeed, our group recently demonstrated that the γ-aminobutyric acid (GABA)ergic system is vulnerable to AD pathology in humans. However, whether this vulnerability is also present in AD rodent models is still unknown.
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