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Published on: May 27, 2010
Inhibitory effect of formalin administration on immobilization-induced epinephrine release
B Mravec1, I Bodnar, L Kubovcakova
1Institute of Experimental Endocrinology, Slovak Academy of Sciences, Vlarska 3, 833 06 Bratislava, Slovak Republic.
Insights
The formalin pain test reveals that the interphase period significantly reduces epinephrine release, even under severe immobilization stress, without affecting norepinephrine levels. This highlights an inhibitory process during attenuated nociception.
Area of Science:
- Neuroscience
- Pain Research
- Stress Physiology
Background:
- Formalin injection is a standard method to induce pain and study nociceptive responses.
- Pain perception exhibits a biphasic pattern: an early phase (1-10 min) and a late phase (30-240 min), with an interphase of reduced sensitivity.
- Catecholamines, like epinephrine and norepinephrine, are key stress hormones involved in pain modulation.
Purpose of the Study:
- To investigate the impact of formalin-induced pain on plasma catecholamine levels.
- To specifically examine catecholamine responses during the distinct phases of the formalin test, including the interphase.
- To assess how immobilization stress influences the catecholamine response to formalin pain.
Main Methods:
- Subcutaneous injection of formalin into the hind limb of animals.
- Measurement of plasma epinephrine and norepinephrine levels at various time points post-injection.
- Evaluation of catecholamine responses under both basal and immobilization stress conditions.
Main Results:
- Formalin injection initially decreased plasma epinephrine but later increased it significantly. Norepinephrine levels rose immediately and remained elevated.
- During immobilization stress, formalin injections still decreased epinephrine levels, particularly during the interphase, while norepinephrine levels were less affected.
- The inhibitory interphase of the formalin test demonstrated a capacity to reduce epinephrine release even under severe stress.
Conclusions:
- The interphase of the formalin test is characterized by an inhibitory process that can attenuate epinephrine release.
- This inhibitory mechanism is effective in reducing epinephrine levels even during significant physiological stress like immobilization.
- Catecholamine responses to pain are complex and modulated by stress, with specific phases exhibiting distinct hormonal profiles.
Abstract:
Injection of formalin is used as a classical painful stressor that produces a biphasic nociceptive response consisting of a 1- to 10-min early phase and a later phase 30 to 240 min after injection. The period between these two phases, called "interphase," is characterized by attenuated nociception. We evaluated the response of catecholamine plasma levels to formalin-induced pain stress with special attention to these three time periods. Subcutaneous injection of 4% formalin (0.2 mL/100 g bw) into the hind limb produced a slight reduction of plasma epinephrine levels in the first 15 min, which was followed by a significant increase that remained high up to 120 min after injection. Norepinephrine levels increased immediately after injections and remained high from 30 until 120 min. To test the effect of formalin injection in a stressful condition, we exposed animals to 2 h immobilization stress. In the first experiment, formalin was injected before the start of immobilization. A significant decrease of plasma epinephrine levels was measured up to 25 min post-injection, whereas plasma norepinephrine levels remained high. A second formalin injection during immobilization was as effective as the first one: It depleted plasma epinephrine levels from 5 to 15 min post-injection without significant changes in norepinephrine levels. In the second experiment, formalin given after the beginning of immobilization produced a significant decrease of epinephrine levels 15 min after the injection and produced a significant increase 60 min after injection. The plasma norepinephrine levels were significantly increased by 40 min post-injection. The data show that the inhibitory process during the interphase of formalin test is able to significantly decrease epinephrine release not only during basal conditions but also during exposure to a severe stressor, such as immobilization without suppression of plasma norepinephrine levels.
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