In our modern, fast-paced society, excessive stress (or distress) is a major risk factor for developing a plethora of diseases. There are several neuromediatory systems in the brain that regulate the response to stress, including the adrenergic and endocannabinoid systems. In our experiments, we study the effects of the endocannabinoid system on the restrain stress-induced analgesia (r-SIA). The experiments were done on male Wistar rats. The animals were confined in special restrainers for a period of one hour. The animals were treated with Clonidine (at 4 mg/kg) – a prototypical α2-agonist; Yohimbine – an α2-adrenergic receptor antagonist; Desipramine – a NE reuptake blocker; CB1r agonist anandamide (AEA); CB1r antagonist АМ251 in differen...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
In our modern, fast-paced society, excessive stress (or distress) is a major risk factor for develop...
Cold stress-induced analgesia (c-SIA) has been evaluated in male Wistar rats injected with cannabino...
Deleterious effects of stress contribute to many mind/body ills and precipitate substantial individu...
Activation of the hypothalamic-pituitary-adrenal axis (HPA) is critical for survival when the organi...
Stress has a complex, bidirectional modulatory influence on pain. Stress may either reduce (stress-i...
Stress has a complex, bidirectional modulatory influence on pain. Stress may either reduce (stress-i...
Recent work in our laboratories has demonstrated that an opioid-independent form of stress-induced a...
Stress affects a constellation of physiological systems in the body and evokes a rapid shift in many...
The interaction between the endocannabinoid system and catecholaminergic circuits has gained increas...
Endocannabinoid signaling is distributed throughout the brain, regulating synaptic release of both e...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Recent work in our laboratories has demonstrated that an opioid-independent form of stress-induced a...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
In our modern, fast-paced society, excessive stress (or distress) is a major risk factor for develop...
Cold stress-induced analgesia (c-SIA) has been evaluated in male Wistar rats injected with cannabino...
Deleterious effects of stress contribute to many mind/body ills and precipitate substantial individu...
Activation of the hypothalamic-pituitary-adrenal axis (HPA) is critical for survival when the organi...
Stress has a complex, bidirectional modulatory influence on pain. Stress may either reduce (stress-i...
Stress has a complex, bidirectional modulatory influence on pain. Stress may either reduce (stress-i...
Recent work in our laboratories has demonstrated that an opioid-independent form of stress-induced a...
Stress affects a constellation of physiological systems in the body and evokes a rapid shift in many...
The interaction between the endocannabinoid system and catecholaminergic circuits has gained increas...
Endocannabinoid signaling is distributed throughout the brain, regulating synaptic release of both e...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Recent work in our laboratories has demonstrated that an opioid-independent form of stress-induced a...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...
Acute stress suppresses pain by activating brain pathways that engage opioid or non-opioid mechanism...