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Stress-induced pressor and corticosterone responses in oxytocin-deficient mice
Iveta Bernatova1, Katya V Rigatto, Mary P Key
1Department of Pharmacology and Toxicology, Wright State University School of Medicine, 3640 Colonel Glenn Highwayy, Dayton, OH 45435, USA.
Abstract:
We used oxytocin knockout (OTKO) mice to investigate the role of oxytocin in regulation of blood pressure, heart rate and stress reactivity (pressure reactivity and plasma corticosterone). Male OTKO and control wild-type mice with carotid arterial catheters were exposed to intermittent shaker stress for 7 days (2 min stressors, 45 times per day). Mean arterial pressure (MAP) and heart rate (HR) were recorded continuously (24 h) before stress (basal), on stress days 1, 3 and 7 (S1, S3 and S7) and 1 day poststress (recovery). Plasma corticosterone (Cort) was measured before stress and 30 min after the last stress on day 7. Twenty-four hour averages of MAP and HR were lower in OTKO mice than in controls (P < 0.0001 and P < 0.005, respectively) with a significant diurnal rhythm. Chronic stress (S1 and S3) produced an increase in 24 h average MAP in OTKO mice, but not in controls. There were no stress-related changes in 24 h average HR values between control and OTKO mice. The immediate pressor responses were analysed during the dark and light periods (19.00 and 08.00 h). During the dark period, stress-induced pressor responses were observed only in OTKO mice (S1 and S3). In the light period, stress-induced MAP increases were seen on all days in OTKO mice and on days S1 and S3 in controls. There were no differences in baseline Cort between the groups; however, OTKO mice showed a reduced response to chronic stress (+298 versus+411%, OTKO mice versus controls, P < 0.005). In conclusion, oxytocin deficiency alters the endocrine and pressor responses to chronic stress, suggesting that the endogenous oxytocin system is important in regulating the stress-induced pressor response.
Insights
Oxytocin deficiency in mice alters blood pressure and stress responses. These findings highlight oxytocin
Area of Science:
- Neuroendocrinology
- Cardiovascular Physiology
- Stress Response Research
Background:
- Oxytocin plays a crucial role in social behavior and stress regulation.
- The specific impact of oxytocin on cardiovascular and stress reactivity remains incompletely understood.
Purpose of the Study:
- To investigate the role of oxytocin in regulating blood pressure, heart rate, and stress reactivity.
- To examine the effects of chronic stress on cardiovascular parameters and corticosterone levels in oxytocin knockout mice.
Main Methods:
- Utilized male oxytocin knockout (OTKO) and wild-type mice with carotid arterial catheters.
- Exposed mice to intermittent shaker stress for 7 days, continuously recording mean arterial pressure (MAP) and heart rate (HR).
- Measured plasma corticosterone (Cort) levels before and after stress exposure.
Main Results:
- OTKO mice exhibited lower basal 24-h MAP and HR compared to controls.
- Chronic stress increased 24-h MAP in OTKO mice, but not in controls.
- OTKO mice showed altered stress-induced pressor responses and a reduced corticosterone response to chronic stress.
Conclusions:
- Oxytocin deficiency significantly alters endocrine and pressor responses to chronic stress.
- The endogenous oxytocin system is critical for regulating stress-induced pressor responses.
- These findings underscore the importance of oxytocin in managing cardiovascular and stress reactivity.

