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April 1, 2002AJP Heart and Circulatory Physiology30 citations

Preconditioning prevents alterations in cardiac SR gene expression due to ischemia-reperfusion

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RTRana M. TemsahKKKen‐ichi KawabataDCDonald Chapman

Structured PICO

Does ischemic preconditioning prevent alterations in cardiac SR gene expression in isolated rat hearts subjected to ischemia-reperfusion or Ca2+ paradox?

P
Population
Isolated rat hearts subjected to ischemia-reperfusion (I/R) or Ca2+ paradox (CP)
I
Intervention
Ischemic preconditioning (IP) consisting of three brief cycles of 5-min ischemia and 5-min reperfusion
C
Comparator
Nonpreconditioned isolated rat hearts subjected to I/R (30-min ischemia and 30-min reperfusion) or CP (5-min Ca2+-free perfusion and 30-min reperfusion with normal medium)
O
Outcome
Gene expression (mRNA levels) for sarcoplasmic reticulum (SR) proteins including Ca2+ release channel, Ca2+ pump ATPase, phospholamban, and calsequestrinsurrogate

Ischemic preconditioning preserves sarcoplasmic reticulum gene expression and cardiac function during ischemia-reperfusion and calcium paradox in isolated rat hearts, suggesting a role for preventing intracellular Ca2+ overload.

Abstract

We have previously shown that ischemic preconditioning (IP) improves cardiac performance and sarcoplasmic reticulum (SR) function in hearts subjected to ischemia-reperfusion (I/R). In this study, we examined the effect of IP on I/R-induced changes in gene expression for SR proteins such as the Ca(2+) release channel, Ca(2+) pump ATPase, phospholamban, and calsequestrin in the isolated rat heart. Normal isolated rat hearts exposed to three brief cycles of IP (5-min ischemia and 5-min reperfusion) exhibited a significant decrease in the transcript levels of SR genes. Nonpreconditioned I/R hearts when subjected to 30-min ischemia and 30-min reperfusion showed a marked decrease in mRNA levels for the SR proteins compared with normal hearts; this decrease was attenuated by preconditioning. Although hearts subjected to Ca(2+) paradox (CP) have been shown to exhibit intracellular Ca(2+) overload and SR dysfunction like those in I/R hearts, virtually nothing is known regarding the effect of CP on cardiac SR gene expression. Accordingly, CP (5-min Ca(2+)-free perfusion and 30-min reperfusion with normal medium) was observed to produce dramatic changes in SR gene expression, and the heart failed to contract; these alterations were attenuated by IP. Our results show that 1) both I/R and CP depress SR gene expression in the normal heart, 2) IP attenuates I/R- and CP-induced depression in cardiac function and SR gene expression, and 3) intracellular Ca(2+) overload may play a role in depressing SR gene expression in both I/R and CP hearts.

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Cite This Study

Temsah et al. (2002) studied this question.

synapsesocial.com/papers/6a82b71c57df60cfb510bbc2https://doi.org/10.1152/ajpheart.00447.2001
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Ischemic preconditioning prevents I/R-induced alterations in SR calcium-calmodulin protein kinase II2000 · 45 citations
  2. 2Modification of ischemia-reperfusion-induced changes in cardiac sarcoplasmic reticulum by preconditioning1998 · 109 citations
  3. 3Mechanisms of ischemic preconditioning effects on Ca<sup>2+</sup>paradox-induced changes in heart2000 · 30 citations
  4. 4Alterations in sarcoplasmic reticulum function and gene expression in ischemic-reperfused rat heart1999 · 138 citations
  5. 5Preconditioning attenuates ischemia-reperfusion-induced remodeling of Na<sup>+</sup>-K<sup>+</sup>-ATPase in hearts2003 · 41 citations