Why the study?
Does pertussis toxin modulate the supersensitivity of diabetic rat atria to the negative chronotropic effects of adenosine and methacholine?
Does pertussis toxin modulate the supersensitivity of diabetic rat atria to the negative chronotropic effects of adenosine and methacholine?
Pertussis toxin-sensitive G proteins may be involved in the supersensitivity of diabetic hearts to the negative chronotropic effects of methacholine and adenosine.
May implicate pertussis toxin-sensitive G proteins in diabetic atrial supersensitivity; hypothesis-generating and should not yet change practice.
The chronotropic response of isolated right atria obtained from rats made diabetic 14-15 weeks previously by streptozotocin, was compared with age-matched controls. Diabetic rat atria are significantly more sensitive to the negative chronotropic actions of adenosine and of methacholine. Pretreating both control and diabetic rats with 2.5 mg kg-1 pertussis toxin attenuated the negative chronotropic effects of methacholine and adenosine on isolated atria, although diabetic atria still displayed a significantly greater sensitivity to these agonists (P less than 0.05-0.001). The negative chronotropic effects of methacholine and adenosine on both control and diabetic atria were abolished following pretreatment with higher doses of pertussis toxin (10 mg kg-1). These results suggest that pertussis toxin-sensitive G proteins may be involved in the supersensitivity of diabetic hearts to methacholine and adenosine.
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Xiaojiang Li (1992) studied this question.
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