Betahistine increases vestibular blood flow☆☆☆
-
Add time:08/23/2019 Source:sciencedirect.com
Betahistine is used for treatment of several vestibular disorders. Despite the accepted use of this histamine-like substance, its mechanism of action is not well understood. The purpose of this study was to assess the possibility that one of the activities of betahistine is increasing blood flow in the peripheral vestibular end organs. Using a novel surgical approach, we identified the posterior semicircular canal ampulla of guinea pigs and placed a laser Doppler probe in position to obtain blood flow measurements from the posterior semicircular canal ampulla. Blood pressure, heart rate, and vestibular blood flow were continuously recorded. Concentration-response curves were obtained for betahistine (2.5, 5, 7.5, and 10 mg/kg) and control-vehicle (0.15 mol/L NaCl) infusions. A separate group of subjects was pretreated with the competitive selective H3 agonist, thioperimide maleate, before betahistine treatment. Increases in vestibular blood flow and decreases in blood pressure were observed in response to betahistine infusions. Pretreatment with thioperamide maleate abolished these changes at low doses of betahistine and attenuated the responses at higher doses of betahistine. These results show that betahistine administration induces increases in vestibular blood flow. These findings support the potential use of betahistine for treatment of vestibular disorders, which may be caused by compromised circulation. (Otolaryngol Head Neck Surg 1999;120:400-5.)
We also recommend Trading Suppliers and Manufacturers of Betahistine Hydrochloride (cas 15430-48-5). Pls Click Website Link as below: cas 15430-48-5 suppliers
Prev:Stress degradation studies on betahistine and development of a validated stability-indicating assay method
Next:Actions of betahistine at histamine receptors in the brain) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Actions of betahistine at histamine receptors in the brain08/24/2019
- Stress degradation studies on betahistine and development of a validated stability-indicating assay method08/22/2019
- Extraction of chitosan from Aspergillus niger mycelium and synthesis of hydrogels for controlled release of betahistine08/21/2019
- Role of capillary pericytes and precapillary arterioles in the vascular mechanism of betahistine in a guinea pig inner ear model08/20/2019
- Utilization of carbon disulphide for the analytical determination of Betahistine Hydrochloride (cas 15430-48-5) and captopril in their pharmaceutical preparations08/19/2019
- Transdermal delivery of Betahistine Hydrochloride (cas 15430-48-5) using microemulsions: Physical characterization, biophysical assessment, confocal imaging and permeation studies08/18/2019
- Highly sensitive and selective polyaniline–zinc oxide nanocomposite sensor for Betahistine Hydrochloride (cas 15430-48-5) in solubilized system08/17/2019
- Effect of drug-ion exchange resin complex in Betahistine Hydrochloride (cas 15430-48-5) orodispersible film on sustained release, taste masking and hygroscopicity reduction08/16/2019
-
Health and Chemical more >


