PULMONARY-ARTERY ENDOTHELIAL ABNORMALITIES IN PATIENTS WITH CONGENITAL HEART-DEFECTS AND PULMONARY-HYPERTENSION - A CORRELATION OF LIGHT WITH SCANNING ELECTRON-MICROSCOPY AND TRANSMISSION ELECTRON-MICROSCOPY
- 1 December 1986
- journal article
- research article
- Vol. 55 (6) , 632-653
Abstract
Scanning electron microscopy and transmission electron microscopy were applied to lung biopsy specimens from patients with congenital heart defects, and pulmonary artery endothelium was analyzed for alterations in surface characteristics and intracytoplasmic composition which might reflect abnormal function. The patients were divided ito four groups distinguished by increasing severity of pulmonary vascular changes on light microscopy graded both morphometrically and by the Heath-Edwards classification; group 1, normal vasculature or only abnormal extension of muscle into peripheral arteries; group 2, medial hypertrophy; group 3, medial hypertrophy .+-. decreased artery number + intimal hyperplasia; group 4, decreased artery number + occlusive intimal hyperplasia. On scanning electron microscopy, the pulmonary artery endothelial surface in group 1 patients was "crinkled" or "corduroy-like", i.e., composed of narrow, even ridges; in groups 2 and 3, it was "cable-like", i.e., comprised of deep intertwined ridges; in group 4 it was "chenille" in texture, i.e., high ridges alternated with low, uneven, and twisted ones. There was significant increased density of surface microvilli in groups 2 and 3 patients when compared to groups 1 and 4 (p < 0.05 for each comparison). On transmission electron microscopy pulmonary artery endothelial cells in groups 2 and 3 patients were also characterized by a significant increase in the volume density of rough endoplasmic reticulum (p < 0.01) and microfilament bundles (p < 0.05). The coarse endothelial surface characteristics associated with pulmonary vascular changes may result in abnormal interaction with blood elements and release of vasoactive substances. The increased microvilli, rough endoplasmic reticulum, and microfilament bundles in patients with moderate but not advanced arterial changes suggest a phase where increased endothelial metabolic function and alterations in the cytoskeleton may also contribute to heightened pulmonary vascular reactivity.This publication has 4 references indexed in Scilit:
- Vascular structure in lung tissue obtained at biopsy correlated with pulmonary hemodynamic findings after repair of congenital heart defects.Circulation, 1984
- Rat pulmonary circulation after chronic hypoxia: hemodynamic and structural featuresAmerican Journal of Physiology-Heart and Circulatory Physiology, 1979
- Lung biopsy in congenital heart disease: a morphometric approach to pulmonary vascular disease.Circulation, 1978
- Electron microscopic alterations in experimental pulmonary hypertensionJournal of Surgical Research, 1977