Quintos-Alagheband Maria Lyn, White Carl W, Schwarz Margaret A
Department of Critical Care and Cardiothoracic Surgery, Children's Hospital of Los Angeles USC-Keck School of Medicine, Los Angeles, CA 90027, USA.
Antioxid Redox Signal. 2004 Feb;6(1):137-45. doi: 10.1089/152308604771978444.
Impaired neovascularization is associated with the pathologic presentation of bronchopulmonary dysplasia (BPD). To determine if neovascularization and factors that negatively influence blood vessel formation play a role in the evolution of BPD, we examined the temporospatial distribution of a protein known to inhibit fetal lung neovascularization with associated dysplastic lung formation, endothelial-monocyte activating polypeptide (EMAP) II. Immunohistochemical analysis of EMAP II in lung tissues of human infants with BPD indicated an elevation in EMAP II abundance as compared with control. Utilizing a baboon model, western analysis indicated that EMAP II was increased twofold in those baboons with pathologic signs of BPD as compared with gestational controls. Consistent with our findings in human tissues, immunohistochemistry and in situ hybridization demonstrate that EMAP II is highly expressed in the perivascular stroma and dysplastic lung periphery in neonatal baboons with BPD as compared with controls. Lastly, there is a premature acceleration in EMAP II's perivascular distribution in term newborn baboon as compared with gestational control. The marked increase in EMAP II's temporal expression, its distribution in the perivascular and dysplastic alveolar regions of the lungs, and the interruption in vasculogenesis in BPD suggest that neovascularization and factors that negatively influence blood vessel formation may play a role in BPD evolution.
新生血管形成受损与支气管肺发育不良(BPD)的病理表现相关。为了确定新生血管形成以及对血管生成产生负面影响的因素是否在BPD的发展过程中起作用,我们研究了一种已知可抑制胎儿肺新生血管形成并伴有发育不良肺形成的蛋白质——内皮单核细胞激活多肽(EMAP)II的时空分布。对患有BPD的人类婴儿肺组织进行的EMAP II免疫组织化学分析表明,与对照组相比,EMAP II丰度升高。利用狒狒模型进行的蛋白质印迹分析表明,与妊娠对照组相比,患有BPD病理体征的狒狒中EMAP II增加了两倍。与我们在人体组织中的发现一致,免疫组织化学和原位杂交表明,与对照组相比,患有BPD的新生狒狒的血管周围基质和发育不良的肺周边中EMAP II高度表达。最后,与妊娠对照组相比,足月新生狒狒中EMAP II在血管周围的分布出现过早加速。EMAP II的时间表达显著增加、其在肺血管周围和发育不良肺泡区域的分布以及BPD中血管生成的中断表明,新生血管形成以及对血管生成产生负面影响的因素可能在BPD的发展中起作用。