Ikegami Machiko, Dhami Rajwinder, Schuchman Edward H
Cincinnati Children's Hospital Medical Center, Division of Pulmonary Biology, Cincinnati, Ohio 45229, USA.
Am J Physiol Lung Cell Mol Physiol. 2003 Mar;284(3):L518-25. doi: 10.1152/ajplung.00258.2002. Epub 2002 Dec 20.
Types A and B Niemann-Pick disease (NPD) are lipid storage disorders caused by the deficient activity of acid sphingomyelinase (ASM). In humans, NPD is associated with the dysfunction of numerous organs including the lung. Gene targeting of the ASM gene in transgenic mice produced an animal model with features typical of NPD, including pulmonary inflammation. To assess mechanisms by which ASM perturbed lung function, we studied lung morphology, surfactant content, and metabolism in ASM-deficient mice in vivo. Pulmonary inflammation, with increased cellular infiltrates and the accumulation of alveolar material, was associated with alterations in surfactant content. Saturated phosphatidylcholine (SatPC) content was increased twofold, and sphingomyelin content was increased 5.5-fold in lungs of the ASM knockout (ASMKO) mice. Additional sphingomyelin enhanced the sensitivity of surfactant inhibition by plasma proteins. Clearance of SatPC from the lungs of ASMKO mice was decreased. Catabolism of SatPC by alveolar macrophages from the ASMKO mouse was significantly decreased, likely accounting for decreased pulmonary SatPC in vivo. In summary, ASM is required for normal surfactant catabolism by alveolar macrophages in vivo. Alterations in surfactant composition, including increased sphingomyelin content, contributed to the abnormal surfactant function observed in the ASM-deficient mouse.
A型和B型尼曼-匹克病(NPD)是由酸性鞘磷脂酶(ASM)活性不足引起的脂质贮积病。在人类中,NPD与包括肺在内的许多器官功能障碍有关。在转基因小鼠中对ASM基因进行基因靶向产生了一种具有NPD典型特征的动物模型,包括肺部炎症。为了评估ASM扰乱肺功能的机制,我们在体内研究了ASM缺陷小鼠的肺形态、表面活性剂含量和代谢。肺部炎症,伴有细胞浸润增加和肺泡物质积聚,与表面活性剂含量的改变有关。在ASM基因敲除(ASMKO)小鼠的肺中,饱和磷脂酰胆碱(SatPC)含量增加了两倍,鞘磷脂含量增加了5.5倍。额外的鞘磷脂增强了血浆蛋白对表面活性剂抑制的敏感性。ASMKO小鼠肺中SatPC的清除率降低。ASMKO小鼠肺泡巨噬细胞对SatPC的分解代谢显著降低,这可能是体内肺SatPC降低的原因。总之,ASM是体内肺泡巨噬细胞正常进行表面活性剂分解代谢所必需的。表面活性剂组成的改变,包括鞘磷脂含量增加,导致了在ASM缺陷小鼠中观察到的表面活性剂功能异常。