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Potential role of intermittent functioning of baroreflexes in the etiology of hypertension in spontaneously hypertensive rats
Feng Gu, E. Benjamin Randall, Steven Whitesall, Kimber Converso-Baran, Brian E. Carlson, Gregory D. Fink, Daniel E. Michele, Daniel A. Beard
Feng Gu, E. Benjamin Randall, Steven Whitesall, Kimber Converso-Baran, Brian E. Carlson, Gregory D. Fink, Daniel E. Michele, Daniel A. Beard
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Research Article Cardiology

Potential role of intermittent functioning of baroreflexes in the etiology of hypertension in spontaneously hypertensive rats

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Abstract

The spontaneously hypertensive rat (SHR) is a genetic model of primary hypertension with an etiology that includes sympathetic overdrive. To elucidate the neurogenic mechanisms underlying the pathophysiology of this model, we analyzed the dynamic baroreflex response to spontaneous fluctuations in arterial pressure in conscious SHRs, as well as in the Wistar-Kyoto (WKY), the Dahl salt-sensitive, the Dahl salt-resistant, and the Sprague-Dawley rat. Observations revealed the existence of long intermittent periods (lasting up to several minutes) of engagement and disengagement of baroreflex control of heart rate. Analysis of these intermittent periods revealed a predictive relationship between increased mean arterial pressure and progressive baroreflex disengagement that was present in the SHR and WKY strains but absent in others. This relationship yielded the hypothesis that a lower proportion of engagement versus disengagement of the baroreflex in SHR compared with WKY contributes to the hypertension (or increased blood pressure) in SHR compared with WKY. Results of experiments using sinoaortic baroreceptor denervation were consistent with the hypothesis that dysfunction of the baroreflex contributes to the etiology of hypertension in the SHR. Thus, this study provides experimental evidence for the roles of the baroreflex in long-term arterial pressure regulation and in the etiology of primary hypertension in this animal model.

Authors

Feng Gu, E. Benjamin Randall, Steven Whitesall, Kimber Converso-Baran, Brian E. Carlson, Gregory D. Fink, Daniel E. Michele, Daniel A. Beard

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Figure 6

Increase in MAP in the WKY following SAD surgery.

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Increase in MAP in the WKY following SAD surgery.
MAP is reported as the...
MAP is reported as the average over the whole dark cycle at each day. MAP for day 0 is reported as the 5-day average of the MAP before SAD. The SAD was performed on day 1 and pressure data recording continued. The standard deviation of MAP was significantly higher in the SAD group compared with the sham group both in the WKY (A) and SHR (E). The on fraction in the SAD group is significantly lower compared with the sham group in both the WKY (B) and SHR (F). Combining these indicated the SAD procedure was successful. MAP measured in the WKY rats following sham (n = 6) and SAD (n = 6) surgeries. (C and D) MAP remains elevated in the SAD group compared with sham for the first 7 days following surgery with a peak average MAP of 105.2 mmHg for the SAD group at day 3 compared with 95.53 mmHg for the sham group. Panel D plots the change in MAP relative to the pressure at day 0. (G and H) MAP measured in SHR following sham (n = 4) and SAD (n = 4) surgeries. For the SHR, there was no increase in MAP in the denervation group compared with sham group. Panel H plots the change in MAP relative to the pressure at day 0. Data are shown as mean ± SEM with n = 6 for the WKY and n = 4 for the SHR. Statistical comparisons were made using 2-way ANOVA, Holm-Šídák multiple-comparisons test: *P < 0.05, **P < 0.01, ****P < 0.0001.

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