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Cellular, Pharmacological, and Biophysical Evaluation of Explanted Lungs from a Patient with Sickle Cell Disease and Severe Pulmonary Arterial Hypertension:

机译:镰状细胞病和严重肺动脉高压患者肺移植的细胞,药理和生物物理评估:

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Pulmonary hypertension is recognized as a leading cause of morbidity and mortality in patients with sickle cell disease (SCD). We now report benchtop phenotyping from the explanted lungs of the first successful lung transplant in SCD. Pulmonary artery smooth muscle cells (PASMCs) cultured from the explanted lungs were analyzed for proliferate capacity, superoxide (O2?–) production, and changes in key pulmonary arterial hypertension (PAH)–associated molecules and compared with non-PAH PASMCs. Upregulation of several pathologic processes persisted in culture in SCD lung PASMCs in spite of cell passage. SCD lung PASMCs showed growth factor– and serum-independent proliferation, upregulation of matrix genes, and increased O2?– production compared with control cells. Histologic analysis of SCD-associated PAH arteries demonstrated increased and ectopically located extracellular matrix deposition and degradation of elastin fibers. Biomechanical analysis of these vessels confirmed increased arterial stiffening and loss of elasticity. Functional analysis of distal fifth-order pulmonary arteries from these lungs demonstrated increased vasoconstriction to an α1-adrenergic receptor agonist and concurrent loss of both endothelial-dependent and endothelial-independent vasodilation compared with normal pulmonary arteries. This is the first study to evaluate the molecular, cellular, functional, and mechanical changes in end-stage SCD-associated PAH.
机译:肺动脉高压被认为是镰状细胞病(SCD)患者发病和死亡的主要原因。现在,我们报道了SCD中首次成功进行肺移植的肺移植的台式表型。分析从外植肺中培养的肺动脉平滑肌细胞(PASMC)的增殖能力,超氧化物(O2?–)产生以及关键的肺动脉高压(PAH)相关分子的变化,并与非PAH PASMCs进行比较。尽管有细胞传代,但在SCD肺PASMCs的培养中仍存在一些病理过程的上调。与对照细胞相比,SCD肺PASMCs表现出生长因子和血清非依赖性增殖,基质基因上调以及O2?产生增加。与SCD相关的PAH动脉的组织学分析表明,异位定位的细胞外基质沉积增加,弹性蛋白纤维降解。这些血管的生物力学分析证实了动脉硬化的增加和弹性的丧失。与这些正常肺动脉相比,这些肺中远端五阶肺动脉的功能分析表明,对α1-肾上腺素能受体激动剂的血管收缩增加,并且内皮依赖性和内皮非依赖性血管舒张同时消失。这是第一项评估终末SCD相关PAH分子,细胞,功能和机械变化的研究。

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