Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/37459
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Type: Journal article
Title: Anti-inflammatory effects of zinc and alterations in zinc transporter mRNA in mouse models of allergic inflammation
Author: Lang, C.
Murgia, C.
Leong, M.
Tan, L.
Perozzi, G.
Knight, D.
Ruffin, R.
Zalewski, P.
Citation: American Journal of Physiology: Lung Cellular and Molecular Physiology, 2007; 292(2):L577-L584
Publisher: Amer Physiological Soc
Issue Date: 2007
ISSN: 1040-0605
1522-1504
Statement of
Responsibility: 
Carol Lang, Chiara Murgia, Mary Leong, Lor-Wai Tan, Giuditta Perozzi, Darryl Knight, Richard Ruffin, and Peter Zalewski
Abstract: There is clinical evidence linking asthma with the trace element, zinc (Zn). Using a mouse model of allergic inflammation, we have previously shown that labile Zn decreases in inflamed airway epithelium (Truong-Tran AQ, Ruffin RE, Foster PS, Koskinen AM, Coyle P, Philcox JC, Rofe AM, Zalewski PD. Am J Respir Cell Mol Biol 27: 286–296, 2002). Moreover, mild nutritional Zn deficiency worsens lung function. Recently, a number of proteins belonging to the Solute Carrier Family 39 (ZIP) and Solute Carrier Family 30 (ZnT) have been identified that bind Zn and regulate Zn homeostasis. Mice were sensitized, and subsequently aerochallenged, with ovalbumin to induce acute and chronic airway inflammation. Mice received 0, 54, or 100 µg of Zn intraperitoneally. Tissues were analyzed for Zn content and histopathology. Inflammatory cells were counted in bronchoalveolar lavage fluid. Cytokine and Zn transporter mRNA levels were determined by cDNA gene array and/or real-time PCR. Zn supplementation decreased bronchoalveolar lavage fluid eosinophils by 40 and 80%, and lymphocytes by 55 and 66%, in the acute and chronic models, respectively. Alterations in Zn transporter expression were observed during acute inflammation, including increases in ZIP1 and ZIP14 and decreases in ZIP4 and ZnT4. Zn supplementation normalized ZIP1 and ZIP14, but it did not affect mRNA levels of cytokines or their receptors. Our results indicate that inflammation-induced alterations in Zn transporter gene expression are directed toward increasing Zn uptake. Increases in Zn uptake may be needed to counteract the local loss of Zn in the airway and to meet an increased demand for Zn-dependent proteins. The reduction of inflammatory cells by Zn in the airways provides support for Zn supplementation trials in human asthmatic individuals.
Keywords: Lung
Bronchoalveolar Lavage Fluid
Animals
Mice
Respiratory Hypersensitivity
Disease Models, Animal
Inflammation
Body Weight
Zinc
Cation Transport Proteins
Receptors, Cytokine
Metallothionein
RNA, Messenger
Anti-Inflammatory Agents
Inflammation Mediators
Cytokines
Gene Expression Regulation
Dietary Supplements
Female
Description: Copyright © 2007 by the American Physiological Society.
DOI: 10.1152/ajplung.00280.2006
Published version: http://ajplung.physiology.org/cgi/content/abstract/292/2/L577
Appears in Collections:Aurora harvest 7
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