Diaphragmatic activity is a determinant of postnatal lung growth

Author:

Mansell A. L.,Rojas J. V.,Sillos E. M.,Stolar C. J.,Collins M. H.,Rozovski S. J.

Abstract

To test the hypothesis that activity of respiratory muscles determines regional growth of lung parenchyma, we studied the effects of unilateral diaphragmatic paralysis on contralateral/ipsilateral lung growth in cats and piglets. Five 10- to 12-wk-old cats and five 8-wk-old piglets underwent unilateral diaphragmatic paralysis by thoracic and cervical phrenectomy, respectively. Five to seven weeks after surgery, when the cats were killed for studies of lung growth, gain in body weight was the same as in five sham-operated controls. At this time, mean pleural pressure ipsilateral to the paralyzed hemidiaphragm was the same as contralateral mean pleural pressure during tidal breathing, and values did not differ from controls. However overall functional residual capacity was lower in the phrenectomized cats (35 +/- 4 ml) than in the controls (55 +/- 11 ml, P less than 0.01). Growth of contralateral lungs relative to ipsilateral lungs was greater in the phrenectomized cats than in the controls, as shown by ratios of contralateral/ipsilateral wet lung weight (1.44 vs. 1.34, P less than 0.01), maximum inflation volume (1.53 vs. 1.33, P less than 0.05), and total protein content (1.45 vs. 1.26, P less than 0.05). Ratios of total protein to DNA and RNA to DNA were unchanged. One week after surgery in the piglets, the ratio of contralateral/ipsilateral wet lung weight was increased (1.61 vs. 1.29, P less than 0.01) and total weight of both lungs was reduced. We conclude that regional growth of lung parenchyma by cell proliferation depends in part on regional distribution of respiratory muscle activity.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Effect of unilateral diaphragmatic paralysis on postpneumonectomy lung growth;American Journal of Physiology-Lung Cellular and Molecular Physiology;2013-09-15

2. Human lung growth: A review;Pediatric Pulmonology;1996-06

3. Single Lung Transplantation in Piglets: Technique and Follow-up;Scandinavian Journal of Thoracic and Cardiovascular Surgery;1993-01

4. Mechanical forces contribute to neonatal lung growth: The influence of altered diaphragm function in piglets;Journal of Pediatric Surgery;1992-03

5. Functional residual capacity measurement in normal cats.;Journal of Veterinary Medical Science;1991

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