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Surgical Porcine Model of Chronic Myocardial Ischemia Treated by Exosome-laden Collagen Patch and Off-pump Coronary Artery Bypass Graft
Published on: September 15, 2023
Advances in the treatment of coronary artery disease
1Cardiopulmonary Research Science and Technology Institute and Medical City Dallas Hospital, Dallas, Texas, USA. mjmack@earthlink.net
Insights
Coronary artery bypass surgery initially used a beating heart. While cardiopulmonary bypass revolutionized cardiac surgery, its role is diminishing due to percutaneous approaches and off-pump techniques.
Area of Science:
- Cardiovascular Surgery
- Medical Device Technology
Background:
- The advent of cardiopulmonary bypass (CPB) enabled motionless, bloodless operating fields, catalyzing coronary artery bypass grafting (CABG).
- Millions of patients have benefited from coronary revascularization utilizing CPB over the past five decades.
Discussion:
- The landscape of coronary artery disease intervention has shifted, with a significant decrease in CPB utilization for CABG.
- Two-thirds of coronary revascularization procedures are now performed percutaneously, and one-fourth of CABG surgeries are done off-pump.
Key Insights:
- Despite advancements, CPB remains crucial for complex revascularization cases.
- Innovations in CPB technology, such as coated circuits and integrated systems, enhance its continued role.
Outlook:
- CPB technology continues to evolve, ensuring its integral role in treating complex coronary artery disease.
- Future advancements may further refine CPB use, balancing its benefits with minimally invasive alternatives.
Abstract:
Initial pioneering efforts of direct coronary artery bypass were all performed on a beating heart. Although originally introduced into cardiac surgery for the repair of intracardiac defects, the ability of John Gibbon's heart-lung machine to create a motionless, bloodless operative field catalyzed coronary artery bypass surgery. During the ensuing decades tens of millions of patients benefited from coronary revascularization on cardiopulmonary bypass. As we celebrate the 50th anniversary of the invention of the heart-lung machine the landscape of interventional treatment of coronary artery disease has shifted dramatically. Although instrumental in the genesis of the field of coronary revascularization, the role of the heart-lung machine has now diminished. Two thirds of all coronary revascularization is now performed by percutaneous approaches and one fourth of all coronary artery bypass grafting procedures are performed without the heart-lung machine. However owing to the complexity of patients now requiring revascularization as well as recently introduced incremental improvements to cardiopulmonary bypass including coated, low prime circuits, closed integrated systems, and pharmacologic adjuncts Gibbon's heart-lung machine will continue to play an integral role in this field.
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