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Published on: February 18, 2020
Intracoronary shunt-induced endothelial cell damage in porcine heart
James H Dygert1, Hemant S Thatte, Dharam J Kumbhani
1Department of Surgery, VA Boston Healthcare System, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts 02132, USA.
Insights
Intracoronary shunts cause significant endothelial damage during off-pump coronary artery bypass grafting (OPCAB). Snaring, however, preserves endothelial integrity and function, suggesting shunts may increase long-term graft failure risk.
Area of Science:
- Cardiovascular Surgery
- Vascular Biology
- Surgical Technology
Background:
- Endothelial injury compromises coronary artery patency and heart perfusion.
- Coronary artery manipulation during bypass surgery can cause endothelial damage.
- Off-pump coronary artery bypass grafting (OPCAB) involves vessel manipulation.
Purpose of the Study:
- To assess endothelial integrity in porcine coronary arteries during OPCAB using multiphoton microscopy.
- To compare the effects of shunting versus snaring on endothelial structure and function.
- To evaluate the potential long-term implications of shunt use in OPCAB.
Main Methods:
- Porcine coronary arteries (left anterior descending) were manipulated using shunts and snares to simulate OPCAB.
- Fluorescent dyes (calcein, ethidium homodimer) assessed endothelial structural integrity and viability.
- Functional viability was measured via esterase activity, calcium mobilization, and nitric oxide generation using fluorescence and multiphoton microscopy.
Main Results:
- Shunted coronary artery regions exhibited substantial endothelial damage.
- Snared regions and control regions showed preserved endothelial structural integrity.
- Functional assessments revealed significantly reduced esterase activity, calcium mobilization, and nitric oxide generation in shunted regions compared to snared and control regions.
Conclusions:
- Intracoronary shunts cause structural damage and functional impairment of the endothelium in porcine coronary arteries.
- Snared vessels maintained endothelial viability and integrity, comparable to unmanipulated controls.
- Routine use of shunts in OPCAB may lead to endothelial damage and potentially compromise long-term graft patency.
Background:
Injury to and dysfunction of the endothelium can compromise the patency of coronary arteries and lead to impaired perfusion of the heart. Such injury can occur after the application of an intravascular shunt and/or a snare to a coronary artery during bypass surgery. In this study, multiphoton microscopy was used to assess the integrity of endothelium in porcine coronary arteries subjected to shunting and snaring during off-pump coronary artery bypass grafting (OPCAB).
Materials And Methods:
In open chest porcine, the left anterior descending artery was manipulated in different regions using snare and shunt to simulate OPCAB. Sections of left anterior descending artery were labeled with fluorescent dyes to evaluate the viability of the endothelium. The structural integrity of the endothelium was evaluated by calcein- and ethidium homodimer-mediated fluorescence. Endothelial functional viability was assessed by measuring cellular esterase activity, calcium mobilization, and endothelial nitric oxide synthase-mediated generation of nitric oxide using fluorescence dyes and multiphoton microscopy.
Results:
Substantial endothelial damage was observed in shunted region of the coronary arteries. In contrast, endothelium remained structurally viable in regions that were snared, similar to control regions of the coronary arteries that were not manipulated. Esterase activity, calcium mobilization, and nitric oxide generation was greater in the control and snared regions of the coronary arteries in comparison to the shunted region.
Conclusions:
The use of intracoronary shunts led to structural damage and attenuation of endothelial function in porcine coronary arteries, whereas snared vessels maintained their viability and integrity, similar to the control sections. The routine use of shunts in OPCABG may lead to endothelial damage and possibly to long-term graft failure.
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