Antegrade persufflation of porcine kidneys improves renal function after warm ischemia.

Frontiers in transplantation Pub Date : 2024-08-22 eCollection Date: 2024-01-01 DOI:10.3389/frtra.2024.1420693
Catherine Min, Jean-Philippe Galons, Ronald M Lynch, Leah V Steyn, Nicholas D Price, Brad P Weegman, Michael J Taylor, Abhishek Pandey, Robert Harland, Diego Martin, David Besselsen, Charles W Putnam, Klearchos K Papas
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Abstract

Introduction: Transplantation of kidneys from expanded criteria donors (ECD), including after circulatory death (DCD), is associated with a higher risk of adverse events compared to kidneys from standard criteria donors. In previous studies, improvements in renal transplant outcomes have been seen when kidneys were perfused with gaseous oxygen during preservation (persufflation, PSF). In the present study, we assessed ex-vivo renal function from a Diffusion Contrast Enhanced (DCE)-MRI estimation of glomerular filtration rate (eGFR); and metabolic sufficiency from whole-organ oxygen consumption (WOOCR) and lactate production rates.

Methods: Using a porcine model of DCD, we assigned one kidney to antegrade PSF, and the contralateral kidney to static cold storage (SCS), both maintained for 24 h at 4°C. Post-preservation organ quality assessments, including eGFR, WOOCR and lactate production, were measured under cold perfusion conditions, and biopsies were subsequently taken for histopathological analysis.

Results: A significantly higher eGFR (36.6 ± 12.1 vs. 11.8 ± 4.3 ml/min, p < 0.05), WOOCR (182 ± 33 vs. 132 ± 21 nmol/min*g, p < 0.05), and lower rates of lactate production were observed in persufflated kidneys. No overt morphological differences were observed between the two preservation methods.

Conclusion: These data suggest that antegrade PSF is more effective in preserving renal function than conventional SCS. Further studies in large animal models of transplantation are required to investigate whether integration with PSF of WOOCR, eGFR or lactate production measurements before transplantation are predictive of post-transplantation renal function and clinical outcomes.

对猪肾脏进行前向充气可改善温缺血后的肾功能。
导言:与来自标准捐献者的肾脏相比,来自扩大标准捐献者(ECD)(包括循环死亡后(DCD))的肾脏移植与较高的不良事件风险相关。在以前的研究中,肾脏在保存过程中灌注气态氧(persufflation,PSF)可改善肾移植预后。在本研究中,我们通过弥散对比增强(DCE)-MRI 评估肾小球滤过率(eGFR),并通过全器官耗氧量(WOOCR)和乳酸生成率评估体内肾功能:方法:我们使用猪 DCD 模型,将一个肾脏分配给逆行 PSF,将对侧肾脏分配给静态冷藏(SCS),两者均在 4°C 下保存 24 小时。在冷灌注条件下测量了保存后的器官质量评估,包括eGFR、WOOCR和乳酸盐生成量,随后取活检进行组织病理学分析:结果:eGFR 明显增加(36.6 ± 12.1 对 11.8 ± 4.3 毫升/分钟,p p 结论:这些数据表明,逆行 PS 能有效改善器官质量:这些数据表明,与传统的 SCS 相比,前向 PSF 能更有效地保护肾功能。还需要在大型移植动物模型中开展进一步研究,以探讨在移植前将 WOOCR、eGFR 或乳酸生成测量与 PSF 结合是否能预测移植后的肾功能和临床结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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