Abstract 14355: Inhibition of ROS in the Rostral Ventrolateral Medulla Improves Baroreflex Function in Stroke-Prone Spontaneously Hypertensive Rats
Kiyohiro Ogawa, Yoshitaka Hirooka, Takuya Kishi, Kenji Sunagawa
Abstract
Kiyohiro Ogawa, Yoshitaka Hirooka, Takuya Kishi, Kenji Sunagawa
Abstract
Background: Previous studies suggest that the increased reactive oxygen species (ROS) in the rostral ventrolateral medulla (RVLM), a vasomotor center in the brainstem, contributes to sympathoexcitation. It has been well established that cardiovascular diseases often impair baroreflex. Hypothesis: The aim of the present study was to determine whether the inhibition of ROS in the RVLM by the overexpression of Mn superoxide dismutase (MnSOD) improves baroreflex function and to determine the process of change between baroreflex sensitivity (BRS) and blood pressure (BP) or heart rate (HR) in stroke-prone spontaneously hypertensive rats (SHRSP). Methods and Results: We inhibited ROS production in the RVLM by transfecting adenovirus vectors encoding either MnSOD (AdMnSOD) or β-galactosidase (Adβgal) into the RVLM. Baroreflex sensitivity (spontaneous sequence method) was significantly lower in untreated-SHRSP than in Wistar-Kyoto rats (WKY) (1.66±0.02 vs. 2.15±0.06 ms/mmHg, p Conclusion: These results indicate that ROS in the RVLM impairs BRS via activation of sympathetic nervous system. Second, our findings suggest that the improved BRS is due to the inhibition of the activity of the sympathetic nervous system, but not activation of the parasympathetic nervous system.
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Background: Previous studies suggest that the increased reactive oxygen species (ROS) in the rostral ventrolateral medulla (RVLM), a vasomotor center in the brainstem, contributes to sympathoexcitation. It has been well established that cardiovascular diseases often impair baroreflex. Hypothesis: The aim of the present study was to determine whether the inhibition of ROS in the RVLM by the overexpression of Mn superoxide dismutase (MnSOD) improves baroreflex function and to determine the process of change between baroreflex sensitivity (BRS) and blood pressure (BP) or heart rate (HR) in stroke-prone spontaneously hypertensive rats (SHRSP). Methods and Results: We inhibited ROS production in the RVLM by transfecting adenovirus vectors encoding either MnSOD (AdMnSOD) or β-galactosidase (Adβgal) into the RVLM. Baroreflex sensitivity (spontaneous sequence method) was significantly lower in untreated-SHRSP than in Wistar-Kyoto rats (WKY) (1.66±0.02 vs. 2.15±0.06 ms/mmHg, p Conclusion: These results indicate that ROS in the RVLM impairs BRS via activation of sympathetic nervous system. Second, our findings suggest that the improved BRS is due to the inhibition of the activity of the sympathetic nervous system, but not activation of the parasympathetic nervous system.
Key concepts: Rostral ventrolateral medulla, Baroreflex, Medicine, Internal medicine, Brainstem, Sympathetic nervous system, Blood pressure, Endocrinology