Gupta Anita, Perez Marta, Lee Keng Jin, Taylor Joann M, Farrow Kathryn N
Department of Pediatrics, Northwestern University Feinberg School of Medicine, 310 E. Superior St., Chicago, IL 60611, USA.
Int J Mol Sci. 2015 Mar 19;16(3):6373-90. doi: 10.3390/ijms16036373.
Pulmonary hypertension (PH) complicates bronchopulmonary dysplasia (BPD) in 25% of infants. Superoxide dismutase 2 (SOD2) is an endogenous mitochondrial antioxidant, and overexpression protects against acute lung injury in adult mice. Little is known about SOD2 in neonatal lung disease and PH. C57Bl/6 mice and isogenic SOD2+/+ and SOD2-/+ mice were placed in room air (control) or 75% O2 (chronic hyperoxia, CH) for 14 days. Right ventricular hypertrophy (RVH) was assessed by Fulton's index. Medial wall thickness (MWT) and alveolar area were assessed on formalin fixed lung sections. Pulmonary artery smooth muscle cells (PASMC) were placed in 21% or 95% O2 for 24 h. Lung and PASMC protein were analyzed for SOD2 expression and activity. Oxidative stress was measured with a mitochondrially-targeted sensor, mitoRoGFP. CH lungs have increased SOD2 expression, but unchanged activity. SOD2-/+ PASMC have decreased expression and activity at baseline, but increased SOD2 expression in hyperoxia. Hyperoxia increased mitochondrial ROS in SOD2+/+ and SOD2-/+ PASMC. SOD2+/+ and SOD2-/+ CH pups induced SOD2 expression, but not activity, and developed equivalent increases in RVH, MWT, and alveolar area. Since SOD2-/+ mice develop equivalent disease, this suggests other antioxidant systems may compensate for partial SOD2 expression and activity in the neonatal period during hyperoxia-induced oxidative stress.
25%的婴儿支气管肺发育不良(BPD)会并发肺动脉高压(PH)。超氧化物歧化酶2(SOD2)是一种内源性线粒体抗氧化剂,其过表达可保护成年小鼠免受急性肺损伤。关于SOD2在新生儿肺部疾病和PH中的作用知之甚少。将C57Bl/6小鼠以及同基因的SOD2+/+和SOD2-/+小鼠置于室内空气(对照)或75%氧气(慢性高氧,CH)环境中14天。通过Fulton指数评估右心室肥厚(RVH)。在福尔马林固定的肺切片上评估中膜厚度(MWT)和肺泡面积。将肺动脉平滑肌细胞(PASMC)置于21%或95%氧气环境中24小时。分析肺和PASMC蛋白的SOD2表达和活性。用线粒体靶向传感器mitoRoGFP测量氧化应激。CH组肺组织中SOD2表达增加,但活性未改变。SOD2-/+ PASMC在基线时表达和活性降低,但在高氧环境中SOD2表达增加。高氧增加了SOD2+/+和SOD2-/+ PASMC中的线粒体活性氧。SOD2+/+和SOD2-/+ CH组幼崽诱导了SOD2表达,但未诱导活性,并且RVH、MWT和肺泡面积出现了同等程度的增加。由于SOD2-/+小鼠出现了同等程度的疾病情况,这表明在高氧诱导的氧化应激期间,其他抗氧化系统可能会在新生儿期补偿部分SOD2的表达和活性。