TITLE:
Gradual Clamping Reduced Ischemia-Reperfusion Injury in an Isolated Rat Heart Model
AUTHORS:
Hongbin Feng, Hongli Wang, Yang Zhao, Zhinan Zheng, Sanqing Jin
KEYWORDS:
Gradual Clamping, Ischemia-Reperfusion Injury, Gradual Adaptation, Rat Heart Model
JOURNAL NAME:
World Journal of Cardiovascular Surgery,
Vol.6 No.6,
June
17,
2016
ABSTRACT: Objectives: We hypothesized that the organisms and their organs or tissues could adapt themselves to the gradual changes of environment for surviving or reducing damage. This study explored whether gradual clamping (GC) could reduce myocardial ischemia-reperfusion (IR) injury in rat heart. Methods: Twelve rats were randomized to IR group and GC group, then the hearts were isolated and perfused with Langendorff apparatus. Before cardioplegia, the perfusion was stopped abruptly in IR group while slowly with 5-minute in GC group. The hearts were subjected to 30-minute ischemia and 60-minute reperfusion. The left ventricular develop pressure (LVDP) and systolic pressure (LVSP), the maximal rate of the increase and decrease of left ventricular pressure (+dp/dtmax, ﹣dp/dtmax) were measured by polygraph system at different time points. The recovery of the variables was expressed as the ratio of these values at individual time point after reperfusion to the baseline respectively. Results: The recovery of LVDP after reperfusion was better than that in IR group (P = 0.034). No significant difference in the recovery of LVSP, +dp/dtmax and ﹣dp/dtmax between groups was observed. Conclusions: Gradual clamping could improve the recovery of LVDP after IR, suggesting that gradual clamping could reduce myocardial IR injury.