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Audit of homograft valve bank
Shiv Kumar Choudhary1, Nikhil Bansal1, Indeever Kumar1
1Department of Cardiothoracic and Vascular Surgery, All India Institute of Medical Sciences, New Delhi, India.
Insights
Homograft valve banking provides a viable option for cardiac valve replacement, offering superior hemodynamics and infection resistance. Cryopreservation ensures long-term storage and an uninterrupted supply of these vital homografts.
Area of Science:
- Cardiovascular Surgery
- Tissue Banking
- Biomaterials
Background:
- Homografts offer advantages over prosthetic and bioprosthetic cardiac valves, including superior flow dynamics, no need for anticoagulation, and resistance to infection.
- However, homografts face challenges related to limited availability and durability.
- This study presents a quarter-century of experience from a long-standing valve bank utilizing antibiotic and cryopreserved homografts.
Purpose of the Study:
- To report on the operational experience and outcomes of a homograft valve bank over 25 years.
- To evaluate the feasibility and effectiveness of antibiotic and cryopreservation methods for homograft storage.
- To assess the long-term viability and supply chain management of homografts.
Main Methods:
- Donor hearts were procured following American Association of Tissue Banks guidelines and national regulations.
- Sterilization and preservation methods included antibiotic preservation and cryopreservation.
- Homografts were harvested, processed, and stored for subsequent use in cardiac procedures.
Main Results:
- Over 25 years (1993-2017), 777 hearts were procured, yielding 1646 homografts.
- A total of 546 homografts (32%) were rejected, while 967 (56.7%) were utilized.
- Cryopreservation (84%) was the predominant method, with antibiotic preservation used for 16% of homografts.
Conclusions:
- Operating a homograft valve bank is feasible with cost-efficiency.
- Cryopreservation, despite higher costs, enables indefinite storage and ensures an uninterrupted supply of homografts.
- Homograft valve banking is a sustainable solution for cardiac valve replacement needs.
Introduction:
Even today, the search for the ideal cardiac valve continues. With advantages of having superior flow dynamics, avoidance of anticoagulation, and resistance to infection, homograft has been shown to have an edge over conventional prosthetic and bioprosthetic valves. But they suffer from disadvantages of limited availability and durability. Our center operates one of the oldest functioning valve banks in the country. We present our experience with homograft valve banking with antibiotic and cryopreserved homografts spread over a quarter century.
Methods:
For donor selection, procurement, sterilization, and preservation, the recommendations of the American Association of Tissue Banks are being followed in accordance with statutory provisions of the Transplantation of Human Organs Act, 1994.
Results:
During 25-year period (1993-2017), 777 hearts were procured. Age of the donors ranged from 2 to 60 years and hearts were procured within 24 h of death. A total of 1646 homografts (774 pulmonary, 774 aortic, 60 mitral valves, 20 descending thoracic aortae, and 18 monocusps) were harvested. A total of 546 (32%) homografts were rejected for various reasons. Nine hundred sixty-seven (56.7%) homografts were used in different procedures. Of these, 478 were pulmonary homografts, 425 were aortic homografts, 39 mitral homografts, 18 monocusps, and 7 descending thoracic aorta homografts. One hundred fifty-four (16%) homografts were antibiotic preserved and the rest 813 (84%) were cryopreserved.
Conclusions:
It is possible to run a homograft valve bank with minimum costs. Though, cryopreservation is more expensive, it provides an opportunity to store the valves for an indefinite period and maintain an uninterrupted supply of homografts.
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