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December 1, 1973Circulation Research200 citationsOpen Access

Reactivity of Vascular Smooth Muscle in Hypertensive Rats

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EHEDWIN T. HOLLOWAYDBDavid F. Bohr

Key Result

Vascular smooth muscle strips from hypertensive rats exhibited more spontaneous rhythmic contractions (83.3%) compared to normotensive rats (20%), indicating increased cell membrane lability.

Structured PICO

Does vascular smooth muscle reactivity differ between normotensive and various experimental hypertensive rat models?

P
Population
40 helical strips from femoral arteries of normotensive and three types of hypertensive rats (spontaneously, renal, and DCA-hypertensive).
E
Exposure
Exposure to various vasoactive stimuli (epinephrine, potassium chloride, lanthanum, strontium, angiotensin II)
C
Comparator
Strips from normotensive rats and comparisons among different hypertensive models
O
Outcome
Vascular smooth muscle reactivity (spontaneous contractions, contraction thresholds, and tension development)surrogate

Vascular smooth muscle from hypertensive rats exhibits increased lability and distinct reactivity profiles depending on the experimental model of hypertension compared to normotensive rats.

Main Result

Absolute Event Rate: 83.3% vs 20%

Abstract

The reactivity of vascular smooth muscle in helical strips from femoral arteries of normotensive, spontaneously hypertensive, renal hypertensive, and deoxycorticosterone acetate-- (DCA-) hypertensive rats was studied. Spontaneous rhythmic contractions occurred in 25 of the 30 strips from the three groups of hypertensive rats and in only 2 of the 10 strips from normotensive rats. Strips from renal and DCA hypertensive rats had lower thresholds to epinephrine and potassium chloride (KCl) than did strips from spontaneously hypertensive and normotensive rats. Lanthanum (2.5 mM) caused contraction of all 10 strips from spontaneously hypertensive rats but failed to cause contraction of any strip from the other three groups of rats. Strontium (5 mM) caused contraction in 8 of 10 strips from spontaneously hypertensive rats but caused contraction in only 7 of the 30 strips from the other three groups. The optimal calcium concentration for tension development in response to a KCl stimulus was approximately twice as high for strips from hypertensive rats as it was for strips from normotensive rats. Strips from DCA-hypertensive rats showed less tachyphylaxis to angiotensin II than did strips from the other three groups of rats. These results quantify our earlier observation that the reactivity of vascular smooth muscle from hypertensive rats is importantly different from that of normotensive rats. In addition, the study delineates individuality in vascular smooth muscle reactivity in different types of experimental hypertension. The results suggest that the cell membrane of the vascular smooth muscle in the hypertensive rat is more labile than that in the normal rat.

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Cite This Study

HOLLOWAY et al. (1973) studied Hypertension (n=40). Experimental hypertension (spontaneous, renal, DCA) vs. Normotension was evaluated on Spontaneous rhythmic contractions. Vascular smooth muscle strips from hypertensive rats exhibited more spontaneous rhythmic contractions (83.3%) compared to normotensive rats (20%), indicating increased cell membrane lability.

synapsesocial.com/papers/6a6a5412050bc01bbbcb2166https://doi.org/10.1161/01.res.33.6.678
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