Yan Xiao, Bellotto Dennis J, Dane D Merrill, Elmore R Geoffrey, Johnson Robert L, Estrera Aaron S, Hsia Connie C W
Pulmonary and Critical Care Medicine, Dept. of Internal Medicine, 5323 Harry Hines Blvd., Dallas, TX 75390-9034, USA.
J Appl Physiol (1985). 2005 Nov;99(5):1681-8. doi: 10.1152/japplphysiol.00553.2005. Epub 2005 Jun 16.
We showed previously that removing 55-58% of the lung by right pneumonectomy (R-PNX) in adult dogs triggers compensatory growth of the remaining lung, but removing 42-45% of the lung by left PNX (L-PNX) does not. We also showed that, following R-PNX, supplemental all-trans retinoic acid (RA) selectively enhances alveolar capillary endothelial cell volume (Yan X, Bellotto DJ, Foster DJ, Johnson RL, Jr., Hagler HH, Estrera AS, and Hsia CC. J Appl Physiol 96: 1080-1089, 2004). We hypothesized that RA supplementation might enhance compensation following L-PNX and tested this hypothesis by administering RA (2 mg.kg(-1).day(-1), 4 days/wk) or placebo orally to litter-matched adult foxhounds for 4 mo following L-PNX. Resting lung function was measured under anesthesia. Air and tissue volumes of the remaining lung were assessed by high-resolution computed tomography scan and by detailed postmortem morphometric analysis of the fixed lung. There was no significant difference in resting lung function, lung volume, alveolar structure, or septal ultrastructure between RA and placebo treatment groups. We conclude that RA supplementation does not induce post-PNX compensatory lung growth in the absence of existing cellular growth activities initiated by other primary signals.
我们之前表明,成年犬行右肺切除术(R-PNX)切除55%-58%的肺会引发剩余肺的代偿性生长,但左肺切除术(L-PNX)切除42%-45%的肺则不会。我们还表明,R-PNX后,补充全反式视黄酸(RA)可选择性增加肺泡毛细血管内皮细胞体积(Yan X、Bellotto DJ、Foster DJ、Johnson RL, Jr.、Hagler HH、Estrera AS和Hsia CC。《应用生理学杂志》96: 1080 - 1089, 2004)。我们假设补充RA可能会增强L-PNX后的代偿作用,并通过在L-PNX后4个月对同窝成年猎狐犬口服RA(2 mg·kg⁻¹·天⁻¹,每周4天)或安慰剂来验证这一假设。在麻醉状态下测量静息肺功能。通过高分辨率计算机断层扫描以及对固定肺进行详细的死后形态计量分析来评估剩余肺的空气和组织体积。RA治疗组和安慰剂治疗组在静息肺功能、肺体积、肺泡结构或间隔超微结构方面没有显著差异。我们得出结论,在没有其他主要信号引发的现有细胞生长活动的情况下,补充RA不会诱导PNX后的肺代偿性生长。