Key result
Targeted deletion of A1 adenosine receptors in murine hearts decreased final recovery of left ventricular developed pressure after ischemia-reperfusion (54.4% vs. 81.1% of preischemic baseline).
Why the study?
Does targeted deletion of A1 adenosine receptors worsen postischemic cardiac function and alter adenosine receptor subtype expression in isolated murine hearts?
Does targeted deletion of A1 adenosine receptors worsen postischemic cardiac function and alter adenosine receptor subtype expression in isolated murine hearts?
Absolute Event Rate: 54.4% vs 81.1%
Targeted deletion of A1 adenosine receptors exacerbates ischemia-reperfusion injury in murine hearts, confirming their cardioprotective role.
A1 receptor deletion worsens murine postischemic recovery; confirms cardioprotective role but leaves open human translation.
To examine ischemic tolerance in the absence of A(1) adenosine receptors (A(1)ARs), isolated wild-type (WT) and A(1)AR knockout (A(1)KO) murine hearts underwent global ischemia-reperfusion, and injury was measured in terms of functional recovery and efflux of lactate dehydrogenase (LDH). Hearts were analyzed by real-time RT-PCR both at baseline and at intervals during ischemia-reperfusion to determine whether compensatory expression of other adenosine receptor subtypes occurs with either A(1)AR deletion and/or ischemia-reperfusion. A(1)KO hearts had higher baseline coronary flow (CF) and left ventricular developed pressure (LVDP) than WT hearts, whereas heart rate was unchanged by A(1)AR deletion. After 20 min of ischemia, CF was attenuated in A(1)KO compared with WT hearts, and this reduction persisted throughout reperfusion. Final recovery of LVDP was decreased in A(1)KO hearts (54.4 +/- 5.1 vs. WT 81.1 +/- 3.4% preischemic baseline) and correlated with higher diastolic pressure during reperfusion. Postischemic efflux of LDH was greater in A(1)KO compared with WT hearts. Real-time RT-PCR demonstrated the absence of A(1)AR transcript in A(1)KO hearts, and the message for A(2A), A(2B), and A(3) adenosine receptors was similar in uninstrumented A(1)KO and WT hearts. Ischemia-reperfusion increased A(2B) mRNA expression 2.5-fold in both WT and A(1)KO hearts without changing A(1) or A(3) expression. In WT hearts, ischemia transiently doubled A(2A) mRNA, which returned to preischemic level upon reperfusion, a pattern not observed in A(1)KO hearts. Together, these data affirm the cardioprotective role of A(1)ARs and suggest that induced expression of other adenosine receptor subtypes may participate in the response to ischemia-reperfusion in isolated murine hearts.
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Morrison et al. (2006) studied Ischemia-reperfusion injury. Targeted deletion of A1 adenosine receptors (A1KO) vs. Wild-type (WT) hearts was evaluated on Final recovery of left ventricular developed pressure (LVDP). Targeted deletion of A1 adenosine receptors in murine hearts decreased final recovery of left ventricular developed pressure after ischemia-reperfusion (54.4% vs. 81.1% of preischemic baseline).
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