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Updated: Jul 21, 2025

Pre-clinical Model of Cardiac Donation after Circulatory Death
Published on: August 2, 2019
Improving Diastolic and Microvascular Function in Heart Transplantation with Donation after Circulatory Death
Lars Saemann1,2, Adrian-Iustin Georgevici1,3, Fabio Hoorn2,4
1Department of Cardiac Surgery, University Hospital Halle (Saale), 06120 Halle (Saale), Germany.
Insights
Machine perfusion using Custodiol-N solution significantly improves diastolic and microvascular function in donation after circulatory death (DCD) hearts, preserving endothelial integrity.
Area of Science:
- Cardiology
- Transplantology
- Organ Preservation
Background:
- Donation after circulatory death (DCD) hearts face challenges with diastolic and microvascular dysfunction.
- The efficacy of novel machine perfusion solutions like Custodiol-N for DCD hearts remains under investigation.
Purpose of the Study:
- To evaluate the impact of machine perfusion with Custodiol-N on diastolic and coronary microvascular function in porcine DCD hearts.
- To compare Custodiol-N with traditional hypothermic Custodiol and normothermic blood perfusion.
Main Methods:
- Porcine DCD hearts underwent 4-hour machine perfusion with normothermic blood (DCD-B), hypothermic Custodiol (DCD-C), or Custodiol-N (DCD-CN).
- Evaluations included contractile function, diastolic function (balloon catheter), and microvascular perfusion (Laser-Doppler-Technology).
- Immunohistochemistry and gene expression analysis were performed.
Main Results:
- Custodiol-N perfusion significantly improved diastolic pressure decrement and relative Laser-Doppler-Perfusion compared to other groups.
- Gene expression analysis in Custodiol-N hearts showed increased eNOS and decreased ICAM/VCAM expression.
- Normothermic blood perfusion upregulated pathways related to complement, coagulation, and inflammation.
Conclusions:
- Machine perfusion with Custodiol-N enhances diastolic and microvascular function in DCD hearts.
- Custodiol-N preserves the microvascular endothelium, offering a promising preservation strategy for DCD heart transplantation.
Abstract:
The impact of the machine perfusion of donation after circulatory death (DCD) hearts with the novel Custodiol-N solution on diastolic and coronary microvascular dysfunction is unknown. Porcine DCD-hearts were maintained four hours by perfusion with normothermic blood (DCD-B), hypothermic Custodiol (DCD-C), or Custodiol-N (DCD-CN), followed by one hour of reperfusion with fresh blood, including microvascular and contractile evaluation. In another group (DCD group), one hour of reperfusion, including microvascular and contractile evaluation, was performed without a previous maintenance period (all groups N = 5). We measured diastolic function with a balloon catheter and microvascular perfusion by Laser-Doppler-Technology, resulting in Laser-Doppler-Perfusion (LDP). We performed immunohistochemical staining and gene expression analysis. The developed pressure was improved in DCD-C and DCD-CN. The diastolic pressure decrement (DCD-C: -1093 ± 97 mmHg/s; DCD-CN: -1703 ± 329 mmHg/s; DCD-B: -690 ± 97 mmHg/s; p < 0.05) and relative LDP (DCD-CN: 1.42 ± 0.12; DCD-C: 1.11 ± 0.13; DCD-B: 1.22 ± 0.27) were improved only in DCD-CN. In DCD-CN, the expression of eNOS increased, and ICAM and VCAM decreased. Only in DCD-B compared to DCD, the pathways involved in complement and coagulation cascades, focal adhesion, fluid shear stress, and the IL-6 and IL-17 pathways were upregulated. In conclusion, machine perfusion with Custodiol-N improves diastolic and microvascular function and preserves the microvascular endothelium of porcine DCD-hearts.
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