» Articles » PMID: 16808843

Hypoxic Vasoconstriction of Partial Muscular Intra-acinar Pulmonary Arteries in Murine Precision Cut Lung Slices

Overview
Journal Respir Res
Specialty Pulmonary Medicine
Date 2006 Jul 1
PMID 16808843
Citations 26
Authors
Affiliations
Soon will be listed here.
Abstract

Background: Acute alveolar hypoxia causes pulmonary vasoconstriction (HPV) which serves to match lung perfusion to ventilation. The underlying mechanisms are not fully resolved yet. The major vascular segment contributing to HPV, the intra-acinar artery, is mostly located in that part of the lung that cannot be selectively reached by the presently available techniques, e.g. hemodynamic studies of isolated perfused lungs, recordings from dissected proximal arterial segments or analysis of subpleural vessels. The aim of the present study was to establish a model which allows the investigation of HPV and its underlying mechanisms in small intra-acinar arteries.

Methods: Intra-acinar arteries of the mouse lung were studied in 200 mum thick precision-cut lung slices (PCLS). The organisation of the muscle coat of these vessels was characterized by alpha-smooth muscle actin immunohistochemistry. Basic features of intra-acinar HPV were characterized, and then the impact of reactive oxygen species (ROS) scavengers, inhibitors of the respiratory chain and Krebs cycle metabolites was analysed.

Results: Intra-acinar arteries are equipped with a discontinuous spiral of alpha-smooth muscle actin-immunoreactive cells. They exhibit a monophasic HPV (medium gassed with 1% O2) that started to fade after 40 min and was lost after 80 min. This HPV, but not vasoconstriction induced by the thromboxane analogue U46619, was effectively blocked by nitro blue tetrazolium and diphenyleniodonium, indicating the involvement of ROS and flavoproteins. Inhibition of mitochondrial complexes II (3-nitropropionic acid, thenoyltrifluoroacetone) and III (antimycin A) specifically interfered with HPV, whereas blockade of complex IV (sodium azide) unspecifically inhibited both HPV and U46619-induced constriction. Succinate blocked HPV whereas fumarate had minor effects on vasoconstriction.

Conclusion: This study establishes the first model for investigation of basic characteristics of HPV directly in intra-acinar murine pulmonary vessels. The data are consistent with a critical involvement of ROS, flavoproteins, and of mitochondrial complexes II and III in intra-acinar HPV. In view of the lack of specificity of any of the classical inhibitors used in such types of experiments, validation awaits the use of appropriate knockout strains and siRNA interference, for which the present model represents a well-suited approach.

Citing Articles

Precision Cut Lung Slices: Emerging Tools for Preclinical and Translational Lung Research. An Official American Thoracic Society Workshop Report.

Lehmann M, Krishnan R, Sucre J, Kulkarni H, Pineda R, Anderson C Am J Respir Cell Mol Biol. 2024; .

PMID: 39499861 PMC: 11707673. DOI: 10.1165/rcmb.2024-0479ST.


Precision cut lung slices: an integrated ex vivo model for studying lung physiology, pharmacology, disease pathogenesis and drug discovery.

Koziol-White C, Gebski E, Cao G, Panettieri Jr R Respir Res. 2024; 25(1):231.

PMID: 38824592 PMC: 11144351. DOI: 10.1186/s12931-024-02855-6.


Perspectives on precision cut lung slices-powerful tools for investigation of mechanisms and therapeutic targets in lung diseases.

Lam M, Lamanna E, Organ L, Donovan C, Bourke J Front Pharmacol. 2023; 14:1162889.

PMID: 37261291 PMC: 10228656. DOI: 10.3389/fphar.2023.1162889.


Prenatal antibiotics exposure does not influence experimental allergic asthma in mice.

Lingel I, Wilburn A, Hargis J, McAlees J, Laumonnier Y, Chougnet C Front Immunol. 2022; 13:937577.

PMID: 36032166 PMC: 9399857. DOI: 10.3389/fimmu.2022.937577.


Pre-clinical assessment of a water-in-fluorocarbon emulsion for the treatment of pulmonary vascular diseases.

Ferguson S, Pak D, Hopkins J, Harral J, Redinius K, Loomis Z Drug Deliv. 2019; 26(1):147-157.

PMID: 30822171 PMC: 6407583. DOI: 10.1080/10717544.2019.1568621.


References
1.
Speyer C, Steffes C, Tyburski J, Ram J . Lipopolysaccharide induces relaxation in lung pericytes by an iNOS-independent mechanism. Am J Physiol Lung Cell Mol Physiol. 2000; 278(5):L880-7. DOI: 10.1152/ajplung.2000.278.5.L880. View

2.
Spohr F, Cornelissen A, Busch C, Gebhard M, Motsch J, Martin E . Role of endogenous nitric oxide in endotoxin-induced alteration of hypoxic pulmonary vasoconstriction in mice. Am J Physiol Heart Circ Physiol. 2005; 289(2):H823-31. DOI: 10.1152/ajpheart.00605.2004. View

3.
Leach R, HILL H, Snetkov V, Robertson T, Ward J . Divergent roles of glycolysis and the mitochondrial electron transport chain in hypoxic pulmonary vasoconstriction of the rat: identity of the hypoxic sensor. J Physiol. 2001; 536(Pt 1):211-24. PMC: 2278857. DOI: 10.1111/j.1469-7793.2001.00211.x. View

4.
Olschewski A, Olschewski H, Brau M, Hempelmann G, Vogel W, Safronov B . Basic electrical properties of in situ endothelial cells of small pulmonary arteries during postnatal development. Am J Respir Cell Mol Biol. 2001; 25(3):285-90. DOI: 10.1165/ajrcmb.25.3.4373. View

5.
Zhang J, Fariss M . Thenoyltrifluoroacetone, a potent inhibitor of carboxylesterase activity. Biochem Pharmacol. 2002; 63(4):751-4. DOI: 10.1016/s0006-2952(01)00871-1. View