Endocannabinoids are among the most intensively studied lipid mediators of cardiovascular functions. In the present study the effects of decreased and increased activity of the endocannabinoid system (achieved by cannabinoid-1 (CB1) receptor blockade and inhibition of cannabinoid reuptake, respectively) on the systemic and cerebral circulation were analyzed under steady-state physiological conditions and during hypoxia and hypercapnia (H/H).In anesthetized spontaneously ventilating rats the CB1-receptor antagonist/inverse agonist AM-251 (10 mg/kg, i.v.) failed to influence blood pressure (BP), cerebrocortical blood flow (CoBF, measured by laser-Doppler flowmetry) or arterial blood gas levels. In contrast, the putative cannabinoid reuptake i...
Activation of G protein-coupled receptors (GPCRs) can induce vasoconstriction via calcium signal-med...
AbstractCannabinoids elicit complex hemodynamic responses in experimental animals that involve both ...
Endocannabinoids are endogenous bioactive lipid mediators present both in the brain and various peri...
BACKGROUND: Endocannabinoids are among the most intensively studied lipid mediators of cardiovascula...
Endocannabinoids are among the most intensively studied lipid mediators of cardiovascular functions....
Although cannabinoids cause vasorelaxation of isolated blood vessels, their cardiovascular effects i...
The nature of the cardiorespiratory effects mediated by cannabinoids in the hindbrain is poorly unde...
It is widely assumed that LIPS lowers arterial pressure during sepsis by stimulating release of TNF-...
Starting from the well-documented effects of marijuana smoking on heart rate and blood pressure, the...
The receptors mediating the hemodynamic responses to cannabinoids are not clearly defined due to the...
Our study aimed to examine the endothelium (vascular)-protecting effects of chronic cannabidiol (CBD...
Cannabinoids elicit complex hemodynamic responses in experimental animals that involve both peripher...
While cannabis is perceived as a relatively safe drug by the public, accumulating clinical data sugg...
* Cannabinoids are known to cause coronary vasodilatation and reduce left ventricular devel...
Starting from the well-documented effects of marijuana smoking on heart rate and blood pressure, the...
Activation of G protein-coupled receptors (GPCRs) can induce vasoconstriction via calcium signal-med...
AbstractCannabinoids elicit complex hemodynamic responses in experimental animals that involve both ...
Endocannabinoids are endogenous bioactive lipid mediators present both in the brain and various peri...
BACKGROUND: Endocannabinoids are among the most intensively studied lipid mediators of cardiovascula...
Endocannabinoids are among the most intensively studied lipid mediators of cardiovascular functions....
Although cannabinoids cause vasorelaxation of isolated blood vessels, their cardiovascular effects i...
The nature of the cardiorespiratory effects mediated by cannabinoids in the hindbrain is poorly unde...
It is widely assumed that LIPS lowers arterial pressure during sepsis by stimulating release of TNF-...
Starting from the well-documented effects of marijuana smoking on heart rate and blood pressure, the...
The receptors mediating the hemodynamic responses to cannabinoids are not clearly defined due to the...
Our study aimed to examine the endothelium (vascular)-protecting effects of chronic cannabidiol (CBD...
Cannabinoids elicit complex hemodynamic responses in experimental animals that involve both peripher...
While cannabis is perceived as a relatively safe drug by the public, accumulating clinical data sugg...
* Cannabinoids are known to cause coronary vasodilatation and reduce left ventricular devel...
Starting from the well-documented effects of marijuana smoking on heart rate and blood pressure, the...
Activation of G protein-coupled receptors (GPCRs) can induce vasoconstriction via calcium signal-med...
AbstractCannabinoids elicit complex hemodynamic responses in experimental animals that involve both ...
Endocannabinoids are endogenous bioactive lipid mediators present both in the brain and various peri...