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右旋糖酐40和钾在延长低温肺移植保存中的作用。

The role of dextran 40 and potassium in extended hypothermic lung preservation for transplantation.

作者信息

Keshavjee S H, Yamazaki F, Yokomise H, Cardoso P F, Mullen J B, Slutsky A S, Patterson G A

机构信息

Division of Thoracic Surgery, University of Toronto, Ontario, Canada.

出版信息

J Thorac Cardiovasc Surg. 1992 Feb;103(2):314-25.

PMID:1370970
Abstract

We have previously demonstrated that a low-potassium dextran solution provides superior and more reliable preservation of lungs for 12 hours than that provided by the commonly used Euro-Collins solution. This study was designed to examine the individual contributions of dextran 40 and a low (extracellular) potassium concentration to lung preservation. In a randomized, blinded study using an in vivo canine single-lung transplant model, lungs preserved with low-potassium dextran solution (K+, 4 mmol/L; dextran 40, 20 gm/L) were compared to lungs preserved with low-potassium, no-dextran solution (K+, 4 mmol/L) and high-potassium dextran solution (K+, 123 mmol/L; dextran 40, 20 gm/L). The lungs were assessed immediately and 3 days after transplantation. The low-potassium dextran solution provided excellent immediate pulmonary function with little variability (arterial oxygen tension, 519 +/- 12 mm Hg, measured on the transplanted lung alone, inspired oxygen fraction = 1.0, n = 6). Removing the dextran 40 from the flush solution (low-potassium group) led to a significant deterioration in pulmonary function (arterial oxygen tension, 243 +/- 78 mm Hg, n = 6, p less than 0.01). The high-potassium dextran solution provided extremely poor preservation (arterial oxygen tension, 176 +/- 79 mm Hg; n = 6; p less than 0.01). Two animals in this group died within 6 hours of operation. Viability of the transplanted bronchus was significantly improved with the two solutions containing dextran 40. These results indicate that dextran 40 and low potassium concentration both contribute significantly to the uniformly excellent 12-hour lung preservation seen with the low-potassium dextran solution.

摘要

我们之前已经证明,与常用的欧洲柯林斯溶液相比,低钾右旋糖酐溶液能在12小时内为肺提供更优质、更可靠的保存效果。本研究旨在探讨右旋糖酐40和低(细胞外)钾浓度对肺保存的单独作用。在一项使用体内犬单肺移植模型的随机、盲法研究中,将用低钾右旋糖酐溶液(钾离子浓度4 mmol/L;右旋糖酐40,20 g/L)保存的肺与用低钾无右旋糖酐溶液(钾离子浓度4 mmol/L)和高钾右旋糖酐溶液(钾离子浓度123 mmol/L;右旋糖酐40,20 g/L)保存的肺进行比较。在移植后立即和3天对肺进行评估。低钾右旋糖酐溶液提供了出色的即时肺功能,且变异性很小(仅在移植肺上测量的动脉血氧分压为519±12 mmHg,吸入氧分数=1.0,n = 6)。从冲洗液中去除右旋糖酐40(低钾组)导致肺功能显著恶化(动脉血氧分压为243±78 mmHg,n = 6,p<0.01)。高钾右旋糖酐溶液的保存效果极差(动脉血氧分压为176±79 mmHg;n = 6;p<0.01)。该组中有两只动物在术后6小时内死亡。含右旋糖酐40的两种溶液显著改善了移植支气管的活力。这些结果表明,右旋糖酐40和低钾浓度均对低钾右旋糖酐溶液所实现的12小时均匀出色的肺保存有显著贡献。

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