Role of receptor reserve in the inhibition of alpha-1 adrenoceptor-mediated pressor responses by calcium antagonists in the pithed rat. 1986

K F Jim, and R A Macia, and W D Matthews

The effect of the calcium channel antagonists nifedipine and FR 34235 on the vasopressor response to alpha-1 adrenoceptor stimulation in the pithed normotensive rat was investigated. The maximal pressor response elicited by the full alpha-1 adrenoceptor agonist SK&F l-89748 was slightly but significantly reduced by 1-mg/kg doses of nifedipine (21 +/- 2%) and FR 34235 (34 +/- 4%). In comparison, the maximal pressor response to alpha-1 adrenoceptor stimulation by the partial alpha-1 agonist SK&F 88444 was markedly inhibited by nifedipine (51 +/- 1%) and FR 34235 (65 +/- 3%). Partial inactivation of the postsynaptic alpha-1 adrenoceptors with phenoxybenzamine (0.1 mg/kg) resulted in a maximal increase in diastolic pressure to alpha-1 adrenoceptor activation by SK&F l-89748 less than that induced by SK&F 88444. After phenoxybenzamine treatment, nifedipine and FR 34235 produced even greater reductions in the maximal vasopressor response to alpha-1 adrenoceptor stimulation by SK&F l-89748 (77 +/- 8 and 85 +/- 1%, respectively). Moreover, an inverse linear correlation (r = 1.00) was observed between the sensitivity of the maximal vasopressor response to nifedipine and FR 34235 and the magnitude of the maximal pressor response. The data suggest that the sensitivity of the alpha-1 adrenoceptor-mediated pressor response to inhibition by calcium antagonists in the pithed rat is inversely related to the magnitude of the pressor response, and they are consistent with the notion that the presence of "spare" alpha-1 adrenoceptors may determine the sensitivity of the pressor response to calcium antagonists.

UI MeSH Term Description Entries
D008297 Male Males
D009543 Nifedipine A potent vasodilator agent with calcium antagonistic action. It is a useful anti-anginal agent that also lowers blood pressure. Adalat,BAY-a-1040,Bay-1040,Cordipin,Cordipine,Corinfar,Fenigidin,Korinfar,Nifangin,Nifedipine Monohydrochloride,Nifedipine-GTIS,Procardia,Procardia XL,Vascard,BAY a 1040,BAYa1040,Bay 1040,Bay1040,Monohydrochloride, Nifedipine,Nifedipine GTIS
D010643 Phenoxybenzamine An alpha-adrenergic antagonist with long duration of action. It has been used to treat hypertension and as a peripheral vasodilator. Dibenylene,Dibenyline,Dibenziran,Dibenzylin,Dibenzyline,Dibenzyran,Phenoxybenzamine Hydrochloride,Hydrochloride, Phenoxybenzamine
D011919 Rats, Inbred Strains Genetically identical individuals developed from brother and sister matings which have been carried out for twenty or more generations or by parent x offspring matings carried out with certain restrictions. This also includes animals with a long history of closed colony breeding. August Rats,Inbred Rat Strains,Inbred Strain of Rat,Inbred Strain of Rats,Inbred Strains of Rats,Rat, Inbred Strain,August Rat,Inbred Rat Strain,Inbred Strain Rat,Inbred Strain Rats,Inbred Strains Rat,Inbred Strains Rats,Rat Inbred Strain,Rat Inbred Strains,Rat Strain, Inbred,Rat Strains, Inbred,Rat, August,Rat, Inbred Strains,Rats Inbred Strain,Rats Inbred Strains,Rats, August,Rats, Inbred Strain,Strain Rat, Inbred,Strain Rats, Inbred,Strain, Inbred Rat,Strains, Inbred Rat
D011942 Receptors, Adrenergic, alpha One of the two major pharmacological subdivisions of adrenergic receptors that were originally defined by the relative potencies of various adrenergic compounds. The alpha receptors were initially described as excitatory receptors that post-junctionally stimulate SMOOTH MUSCLE contraction. However, further analysis has revealed a more complex picture involving several alpha receptor subtypes and their involvement in feedback regulation. Adrenergic alpha-Receptor,Adrenergic alpha-Receptors,Receptors, alpha-Adrenergic,alpha-Adrenergic Receptor,alpha-Adrenergic Receptors,Receptor, Adrenergic, alpha,Adrenergic alpha Receptor,Adrenergic alpha Receptors,Receptor, alpha-Adrenergic,Receptors, alpha Adrenergic,alpha Adrenergic Receptor,alpha Adrenergic Receptors,alpha-Receptor, Adrenergic,alpha-Receptors, Adrenergic
D001794 Blood Pressure PRESSURE of the BLOOD on the ARTERIES and other BLOOD VESSELS. Systolic Pressure,Diastolic Pressure,Pulse Pressure,Pressure, Blood,Pressure, Diastolic,Pressure, Pulse,Pressure, Systolic,Pressures, Systolic
D002121 Calcium Channel Blockers A class of drugs that act by selective inhibition of calcium influx through cellular membranes. Calcium Antagonists, Exogenous,Calcium Blockaders, Exogenous,Calcium Channel Antagonist,Calcium Channel Blocker,Calcium Channel Blocking Drug,Calcium Inhibitors, Exogenous,Channel Blockers, Calcium,Exogenous Calcium Blockader,Exogenous Calcium Inhibitor,Calcium Channel Antagonists,Calcium Channel Blocking Drugs,Exogenous Calcium Antagonists,Exogenous Calcium Blockaders,Exogenous Calcium Inhibitors,Antagonist, Calcium Channel,Antagonists, Calcium Channel,Antagonists, Exogenous Calcium,Blockader, Exogenous Calcium,Blocker, Calcium Channel,Blockers, Calcium Channel,Calcium Blockader, Exogenous,Calcium Inhibitor, Exogenous,Channel Antagonist, Calcium,Channel Blocker, Calcium,Inhibitor, Exogenous Calcium
D002621 Chemistry A basic science concerned with the composition, structure, and properties of matter; and the reactions that occur between substances and the associated energy exchange.
D003655 Decerebrate State A condition characterized by abnormal posturing of the limbs that is associated with injury to the brainstem. This may occur as a clinical manifestation or induced experimentally in animals. The extensor reflexes are exaggerated leading to rigid extension of the limbs accompanied by hyperreflexia and opisthotonus. This condition is usually caused by lesions which occur in the region of the brainstem that lies between the red nuclei and the vestibular nuclei. In contrast, decorticate rigidity is characterized by flexion of the elbows and wrists with extension of the legs and feet. The causative lesion for this condition is located above the red nuclei and usually consists of diffuse cerebral damage. (From Adams et al., Principles of Neurology, 6th ed, p358) Decerebrate Posturing,Decorticate Rigidity,Decorticate State,Rigidity, Decerebrate,Rigidity, Decorticate,Decerebrate Posturings,Decerebrate Rigidity,Decerebrate States,Decorticate Rigidities,Decorticate States,Posturing, Decerebrate,Posturings, Decerebrate,Rigidities, Decorticate,State, Decerebrate,States, Decerebrate
D004305 Dose-Response Relationship, Drug The relationship between the dose of an administered drug and the response of the organism to the drug. Dose Response Relationship, Drug,Dose-Response Relationships, Drug,Drug Dose-Response Relationship,Drug Dose-Response Relationships,Relationship, Drug Dose-Response,Relationships, Drug Dose-Response

Related Publications

K F Jim, and R A Macia, and W D Matthews
March 1987, The Journal of pharmacology and experimental therapeutics,
K F Jim, and R A Macia, and W D Matthews
October 1985, The Journal of pharmacology and experimental therapeutics,
K F Jim, and R A Macia, and W D Matthews
August 1983, The Journal of pharmacy and pharmacology,
K F Jim, and R A Macia, and W D Matthews
October 1999, European journal of pharmacology,
K F Jim, and R A Macia, and W D Matthews
September 1985, British journal of pharmacology,
K F Jim, and R A Macia, and W D Matthews
August 1980, The Journal of pharmacology and experimental therapeutics,
K F Jim, and R A Macia, and W D Matthews
January 1984, Journal of cardiovascular pharmacology,
K F Jim, and R A Macia, and W D Matthews
January 1985, Journal of cardiovascular pharmacology,
Copied contents to your clipboard!