0000000000586258

AUTHOR

Karyn L. Hamilton

showing 6 related works from this author

Safety and Ergogenic Properties of Combined Aminophylline and Ambrisentan in Hypoxia.

2017

We hypothesized that concomitant pharmacological inhibition of the endothelin and adenosine pathway is safe and improves exercise performance in hypoxic humans, via a mechanism that does not involve augmentation of blood oxygenation. To test this hypothesis, we established safety and drug interactions for aminophylline (500 mg) plus ambrisentan (5 mg) in normoxic volunteers. Subsequently, a placebo‐controlled study was employed to test the combination in healthy resting and exercising volunteers at simulated altitude (4,267 m). No serious adverse events occurred. Drug interaction was minimal or absent. Aminophylline alleviated hypoxia‐induced headaches. Aminophylline, ambrisentan, and their…

AdultMaleAdenosineAmbrisentanAdolescent030204 cardiovascular system & hematologyPharmacologyPlaceboHypoxemia03 medical and health sciencesYoung Adult0302 clinical medicineDouble-Blind MethodmedicineHumansPharmacology (medical)Adverse effectHypoxiaExercisePharmacologyPhenylpropionatesbusiness.industryAltitudeEndothelinsResearchArticlesHypoxia (medical)Drug interactionMiddle AgedAminophylline3. Good healthPyridazinesAnesthesiaAminophyllineDrug Therapy CombinationFemalemedicine.symptomEndothelin receptorbusiness030217 neurology & neurosurgerymedicine.drugSignal TransductionClinical pharmacology and therapeutics
researchProduct

Safety of combined bambuterol and theophylline as a potential treatment of high altitude‐induced fatigue in humans

2016

business.industryGeneticsmedicineTheophyllineBambuterolPharmacologyEffects of high altitude on humansbusinessMolecular BiologyBiochemistryBiotechnologymedicine.drugThe FASEB Journal
researchProduct

Anti-Hypotensive Treatment and Endothelin Blockade Synergistically Antagonize Exercise Fatigue in Rats under Simulated High Altitude

2013

Rapid ascent to high altitude causes illness and fatigue, and there is a demand for effective acute treatments to alleviate such effects. We hypothesized that increased oxygen delivery to the tissue using a combination of a hypertensive agent and an endothelin receptor A antagonist drugs would limit exercise-induced fatigue at simulated high altitude. Our data showed that the combination of 0.1 mg/kg ambrisentan with either 20 mg/kg ephedrine or 10 mg/kg methylphenidate significantly improved exercise duration in rats at simulated altitude of 4,267 m, whereas the individual compounds did not. In normoxic, anesthetized rats, ephedrine alone and in combination with ambrisentan increased heart…

Critical Care and Emergency MedicinePulmonologyPhysiologyAcclimatizationRespiratory Systemlcsh:MedicineAltitude SicknessPharmacologyCardiovascular PhysiologyDrug DiscoveryMedicine and Health SciencesDrug InteractionsSympathomimeticslcsh:ScienceFatigueAltitude sicknessEphedrineMammalsMultidisciplinaryPhenylpropionatesAltitudeDrug SynergismHematologyAnimal ModelsCell HypoxiaPyridazinesmedicine.anatomical_structureVertebratesBlood CirculationDrug Therapy CombinationAnatomymedicine.symptomEndothelin receptorPerfusionInjections IntraperitonealResearch Articlemedicine.drugDrug Research and DevelopmentAmbrisentanEndothelin A Receptor AntagonistsCardiologyEnvironmental and Occupational Lung DiseasesResearch and Analysis MethodsRodentsCardiovascular PharmacologyModel OrganismsHeart ratemedicineAnimalsRespiratory PhysiologySports and Exercise MedicinePharmacologyDose-Response Relationship Drugbusiness.industryAcute Cardiovascular Problemslcsh:ROrganismsHemodynamicsBiology and Life SciencesSkeletal muscleHypoxia (medical)medicine.diseaseRatsDisease Models AnimalBlood pressureMethylphenidateCardiovascular Anatomylcsh:QClinical MedicinebusinessPLoS ONE
researchProduct

The Effects of Sympathetic Inhibition on Metabolic and Cardiopulmonary Responses to Exercise in Hypoxic Conditions.

2015

Objective Pre-exertion skeletal muscle glycogen content is an important physiological determinant of endurance exercise performance: low glycogen stores contribute to premature fatigue. In low-oxygen environments (hypoxia), the important contribution of carbohydrates to endurance performance is further enhanced as glucose and glycogen dependence is increased; however, the insulin sensitivity of healthy adult humans is decreased. In light of this insulin resistance, maintaining skeletal muscle glycogen in hypoxia becomes difficult, and subsequent endurance performance is impaired. Sympathetic inhibition promotes insulin sensitivity in hypoxia but may impair hypoxic exercise performance, in p…

AdultMalemedicine.medical_specialtySympathetic nervous systemCardiac outputBlood PressureClonidinechemistry.chemical_compoundInsulin resistanceEndurance trainingHeart RateInternal medicinemedicineHumansHypoxiaExerciseGlycogenbusiness.industryPublic Health Environmental and Occupational HealthVO2 maxSkeletal muscleHypoxia (medical)medicine.diseaseEndocrinologymedicine.anatomical_structurechemistryOxyhemoglobinsEmergency MedicineExercise TestPhysical EnduranceSympatholyticsmedicine.symptombusinessWildernessenvironmental medicine
researchProduct

Methazolamide Plus Aminophylline Abrogates Hypoxia-Mediated Endurance Exercise Impairment.

2015

In hypoxia, endurance exercise performance is diminished; pharmacotherapy may abrogate this performance deficit. Based on positive outcomes in preclinical trials, we hypothesized that oral administration of methazolamide, a carbonic anhydrase inhibitor, aminophylline, a nonselective adenosine receptor antagonist and phosphodiesterase inhibitor, and/or methazolamide combined with aminophylline would attenuate hypoxia-mediated decrements in endurance exercise performance in humans. Fifteen healthy males (26 ± 5 years, body-mass index: 24.9 ± 1.6 kg/m(2); mean ± SD) were randomly assigned to one of four treatments: placebo (n = 9), methazolamide (250 mg; n = 10), aminophylline (400 mg; n = 9),…

AdultMalePhysiologymedicine.drug_classMethazolamideAdenosine receptor antagonistPlaceboYoung AdultEndurance trainingmedicineHumansCarbonic anhydrase inhibitorPhosphodiesterase inhibitorMethazolamideHypoxiaExercisebusiness.industryAltitudePublic Health Environmental and Occupational HealthGeneral MedicineHypoxia (medical)AminophyllineHealthy VolunteersAnesthesiaExercise TestPhysical EnduranceAminophyllineDrug Therapy Combinationmedicine.symptombusinessmedicine.drugHigh altitude medicinebiology
researchProduct

The novel combination of theophylline and bambuterol as a potential treatment of hypoxemia in humans.

2017

Hypoxemia can be life-threatening, both acutely and chronically. Because hypoxemia causes vascular dysregulation that further restricts oxygen availability to tissue, it can be pharmacologically addressed. We hypothesized that theophylline can be safely combined with the β2-adrenergic vasodilator bambuterol to improve oxygen availability in hypoxemic patients. Ergogenicity and hemodynamic effects of bambuterol and theophylline were measured in rats under hypobaric and normobaric hypoxia (12% O2). Feasibility in humans was assessed using randomized, double-blind testing of the influence of combined slow-release theophylline (300 mg) and bambuterol (20 mg) on adverse events (AEs), plasma K+,…

AdultMaleCombination therapyPhysiologyAdrenergicBiological Availability030204 cardiovascular system & hematologyPharmacologyHypoxemia03 medical and health sciencesYoung Adult0302 clinical medicineTheophyllinePhysiology (medical)Physical Conditioning AnimalmedicineTerbutalineAnimalsHumansTheophyllineDrug InteractionsBambuterolHypoxiaPharmacologybusiness.industryHemodynamicsGeneral MedicineDrug interactionHypoxia (medical)RatsBlood pressureTreatment OutcomeAnesthesiaFemalemedicine.symptomSafetybusiness030217 neurology & neurosurgerymedicine.drugHalf-LifeCanadian journal of physiology and pharmacology
researchProduct