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Improved lung preservation relates to an increase in tubular myelin-associated surfactant protein A

机译:改善的肺部保存涉及肾小管髓磷脂相关表面活性剂蛋白A的增加

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BackgroundDeclining levels of surfactant protein A (SP-A) after lung transplantation are suggested to indicate progression of ischemia/reperfusion (IR) injury. We hypothesized that the previously described preservation-dependent improvement of alveolar surfactant integrity after IR was associated with alterations in intraalveolar SP-A levels.MethodsUsing immuno electron microscopy and design-based stereology, amount and distribution of SP-A, and of intracellular surfactant phospholipids (lamellar bodies) as well as infiltration by polymorphonuclear leukocytes (PMNs) and alveolar macrophages were evaluated in rat lungs after IR and preservation with EuroCollins or Celsior.ResultsAfter IR, labelling of tubular myelin for intraalveolar SP-A was significantly increased. In lungs preserved with EuroCollins, the total amount of intracellular surfactant phospholipid was reduced, and infiltration by PMNs and alveolar macrophages was significantly increased. With Celsior no changes in infiltration or intracellular surfactant phospholipid amount occurred. Here, an increase in the number of lamellar bodies per cell was associated with a shift towards smaller lamellar bodies. This accounts for preservation-dependent changes in the balance between surfactant phospholipid secretion and synthesis as well as in inflammatory cell infiltration.ConclusionWe suggest that enhanced release of surfactant phospholipids and SP-A represents an early protective response that compensates in part for the inactivation of intraalveolar surfactant in the early phase of IR injury. This beneficial effect can be supported by adequate lung preservation, as e.g. with Celsior, maintaining surfactant integrity and reducing inflammation, either directly (via antioxidants) or indirectly (via improved surfactant integrity).
机译:背景建议肺移植后表面活性剂蛋白A(SP-A)的水平下降表明缺血/再灌注(IR)损伤的进展。我们假设先前描述的IR后肺泡表面活性剂完整性的保存依赖性改善与肺泡内SP-A水平的改变有关。方法使用免疫电子显微镜和基于设计的立体学,SP-A的数量和分布以及细胞内表面活性剂磷脂IR并用EuroCollins或Celsior保存后,评估了大鼠肺中的(层状体)以及多形核白细胞(PMN)和肺泡巨噬细胞的浸润。在用EuroCollins保存的肺中,细胞内表面活性剂磷脂的总量减少了,PMN和肺泡巨噬细胞的浸润显着增加了。使用Celsior时,浸润或细胞内表面活性剂磷脂的量均未发生变化。在此,每个细胞的层状体数目的增加与向较小的层状体的转变有关。这说明表面活性剂磷脂的分泌与合成以及炎症细胞浸润之间的平衡取决于保存的变化。结论我们建议表面活性剂磷脂和SP-A的释放增加代表早期的保护性反应,部分补偿了肺泡内的失活。表面活性剂处于IR损伤的早期阶段。可以通过适当的肺部保存来支持这种有益效果,例如与Celsior一起使用,可直接(通过抗氧化剂)或间接(通过改善表面活性剂完整性)保持表面活性剂完整性并减少炎症。

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