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Impaired lung mitochondrial respiration following perinatal nicotine exposure in rats

Authors :
Cannon, Daniel T.
Liu, Jie
Sakurai, Reiko
Rossiter, Harry B.
Rehan, Virender K.
Source :
Lung. April 1, 2016, p325, 4 p.
Publication Year :
2016

Abstract

Perinatal smoke/nicotine exposure predisposes to chronic lung disease and morbidity. Mitochondrial abnormalities may contribute as the PPARĪ³ pathway is involved in structural and functional airway deficits after perinatal nicotine exposure. We hypothesized perinatal nicotine exposure results in lung mitochondrial dysfunction that can be rescued by rosiglitazone (RGZ; PPARĪ³ receptor agonist). Sprague-Dawley dams received placebo (CON), nicotine (NIC, 1 mg kg.sup.-1), or NIC + RGZ (3 mg kg.sup.-1) daily from embryonic day 6 to postnatal day 21. Parenchymal lung (~10 mg) was taken from adult male offspring for mitochondrial assessment in situ. ADP-stimulated O.sub.2 consumption was less in NIC and NIC + RGZ compared to CON (F[2,14] = 17.8; 4.5 ± 0.8 and 4.1 ± 1.4 vs. 8.8 ± 2.5 pmol s mg.sup.-1; p < 0.05). The respiratory control ratio for ADP, an index of mitochondrial coupling, was reduced in NIC and remediated in NIC + RGZ (F[2,14] = 3.8; p < 0.05). Reduced mitochondrial oxidative capacity and abnormal coupling were evident after perinatal nicotine exposure. RGZ improved mitochondrial function through tighter coupling of oxidative phosphorylation.<br />Author(s): Daniel T. Cannon[sup.1] [sup.2] , Jie Liu[sup.3] , Reiko Sakurai[sup.3] , Harry B. Rossiter[sup.1] [sup.4] , Virender K. Rehan[sup.3] Author Affiliations: (1) Division of Respiratory & Critical Care Physiology [...]

Details

Language :
English
ISSN :
03412040
Database :
Gale General OneFile
Journal :
Lung
Publication Type :
Academic Journal
Accession number :
edsgcl.446755781
Full Text :
https://doi.org/10.1007/s00408-016-9859-2