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Sharmin, D.

Publications and source records attributed to Sharmin, D..

2 recordsLinked to original sources

Positive modulation of cerebellar α6GABAA receptors for treating essential tremor: a proof-of-concept study in harmaline-treated mice

BackgroundThe etiology of essential tremor (ET) remains unclear but may involve abnormal firing of Purkinje cells, which receive excitatory inputs from granule cells in the cerebellum. Since 6 subunit-containing GABAA receptors (6GABAARs) are abundantly expressed in granule cells, we validated a hypothesis that 6GABAAR-selective positive allosteric modulators (PAMs) are promising pharmacological interventions for ET therapy. MethodsEmploying the harmaline-induced ET model in male ICR mice, we evaluated the possible anti-tremor effects of four 6GABAAR-selective PAMs, the pyrazoloquinolinones Compound 6 and LAU-463 and their respective deuterated derivatives. Propranolol, a clinical anti-tremor agent, was employed as positive control. To investigate the involvement of cerebellar 6GABAARs in the antitremor effect of intraperitoneal (i.p.) Compound 6, furosemide, an 6GABAAR antagonist, was intracerebellarly (i.cb.) co-administered with Compound 6. The burrowing activity, an indicator of wellbeing in rodents, was measured concurrently. ResultsHarmaline (10-30 mg/kg, s.c.) induced action tremor in ICR mice dose-dependently and markedly reduced their burrowing activity. Compound 6 (3 and 10 mg/kg, i.p.) significantly attenuated harmaline (20 mg/kg)-induced action tremor and burrowing activity impairment. Propranolol (20 mg/kg, i.p.) diminished tremor but failed to restore the burrowing activity in harmaline-treated mice. Importantly, both anti-tremor and burrowing activity restorative effects of Compound 6 (10 mg/kg, i.p.) was significantly reversed by co-administration of i.cb. furosemide at a dose (10 nmol/0.5 l) having no effect per se. All four 6GABAAR PAMs exhibited a similar therapeutic efficacy. Conclusion6GABAAR-selective PAMs significantly attenuated action tremor and restored physical well-being in a mouse model mimicking ET by acting in the cerebellum. Thus, 6GABAAR-selective PAMs may be potential therapeutic agents for ET.

pharmacology and toxicology

Symptomatic and Disease-Modifying Effects of GABAA Receptor Positive Allosteric Modulation in a Mouse Model of Chronic Stress

Chronic stress is a risk factor for Major depressive disorder (MDD), and in rodents, it recapitulates human behavioral, cellular and molecular changes. In MDD and after chronic stress, neuronal dysfunctions and deficits in GABAergic signaling are observed and responsible for symptom severity. GABA signals predominantly through GABAA receptors (GABAA-R) composed of various subunit types that relate to downstream outcomes. Activity at 2-GABAA-Rs contributes to anxiolytic properties, 5-GABAA-Rs to cognitive functions, and 1-GABAA-Rs to sedation. Therefore, a therapy aiming at increasing 2- and 5-GABAA-Rs activity, but devoid of 1-GABAA-R activity, has potential to address several symptomologies of depression while avoiding side effects. This study investigated the activity profiles and behavioral efficacy of two molecules enantiomers of each other (GL-II-73 and GL-I-54), separately and as a racemic mixture (GL-RM), and potential disease-modifying effects on neuronal morphology. Results confirm GL-I-54 and GL-II-73 exert positive allosteric modulation at the 2-, 3-, 5-GABAA-Rs and 5-containing GABAA-Rs, respectively, and have anti-depressant and pro-cognitive effects independently. Using unpredictable chronic mild stress (UCMS) in male and female mice (n=12/group), we show that acute and chronic administration of GL-RM combined the anti-depressant and pro-cognitive effects of each enantiomer, although at lower doses avoiding sedation. Morphology studies showed reversal of spine density loss caused by UCMS after chronic GL-RM treatment at apical and basal dendrites of the PFC and CA1. Together, these results support using a racemic mixture with combined 2-, 3-, 5-GABAA-R profile to reverse chronic stress-induced mood symptoms, cognitive deficits, and with anti-stress neurotrophic effects.

neuroscience