T3 Intratracheal Therapy Alleviates Pulmonary Pathology in an Elastase-Induced Emphysema-Dominant COPD Mouse Model

Author:

Takahashi Noriki12ORCID,Nakashima Ryunosuke1,Nasu Aoi12,Hayashi Megumi1,Fujikawa Haruka12,Kawakami Taisei1,Eto Yuka1,Kishimoto Tomoki1,Fukuyama Ayami1,Ogasawara Choyo1,Kawano Keisuke1,Fujiwara Yukio3ORCID,Suico Mary Ann14,Kai Hirofumi14,Shuto Tsuyoshi14ORCID

Affiliation:

1. Department of Molecular Medicine, Graduate School of Pharmaceutical Sciences, Kumamoto University, 5-1 Oe-honmachi, Chuo-ku, Kumamoto 862-0973, Japan

2. Program for Leading Graduate Schools “HIGO (Health Life Science: Interdisciplinary and Global Oriented) Program”, Graduate School of Pharmaceutical Sciences, Kumamoto University, 5-1 Oe-honmachi, Chuo-ku, Kumamoto 862-0973, Japan

3. Department of Cell Pathology, Graduate School of Medical Sciences, Kumamoto University, 1-1-1, Honjo, Kumamoto Chuo-ku, Kumamoto 860-8556, Japan

4. Global Center for Natural Resources Sciences, Faculty of Life Sciences, Kumamoto University, 5-1 Oe-Honmachi, Chuo-ku, Kumamoto 862-0973, Japan

Abstract

Chronic obstructive pulmonary disease (COPD) is a complex pulmonary condition characterized by bronchitis, emphysema, and mucus stasis. Due to the variability in symptoms among patients, traditional approaches to treating COPD as a singular disease are limited. This led us to focus on phenotype/endotype classifications. In this study, we explore the potential therapeutic role of thyroid hormone (T3) by using mouse models: emphysema-dominant elastase-induced COPD and airway-dominant C57BL/6-βENaC-Tg to represent different types of the disease. Here, we showed that intratracheal T3 treatment (40, 80 μg/kg, i.t., every other day) resulted in significant improvements regarding emphysema and the enhancement of respiratory function in the elastase-induced COPD model. T3-dependent improvement is likely linked to the up-regulation of Ppargc1a, a master regulator of mitochondrial biogenesis, and Gclm, a factor associated with oxidative stress. Conversely, neither short- nor long-term T3 treatments improved COPD pathology in the C57BL/6-βENaC-Tg mice. Because the up-regulation of extrathyroidal T3-producing enzyme Dio2, which is also considered a marker of T3 requirement, was specifically observed in elastase-induced COPD lungs, these results demonstrate that exogenous T3 supplementation may have therapeutic potential for acute but not chronic COPD exacerbation. Moreover, this study highlights the relevance of considering not only COPD phenotypes but also COPD endotypes (expression levels of Ppargc1a and/or Dio2) in the research and development of better treatment approaches for COPD.

Funder

Japan Society for the Promotion Science (JSPS) KAKENHI

JSPS Program on Strategic Young Researcher Overseas Visits Program for Accelerating Brain Circulation

Publisher

MDPI AG

Subject

Cell Biology,Clinical Biochemistry,Molecular Biology,Biochemistry,Physiology

Reference38 articles.

1. Chronic obstructive pulmonary disease;Rabe;Lancet,2017

2. Update on the Pathogenesis of Chronic Obstructive Pulmonary Disease;Hogg;N. Engl. J. Med.,2019

3. Small Airways in COPD;Barnes;N. Engl. J. Med.,2004

4. The Effects of Air Pollution and Temperature on COPD;Hansel;COPD J. Chronic Obstr. Pulm. Dis.,2016

5. Proportional classifications of COPD phenotypes;Marsh;Thorax,2008

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