The Role of Mast Cells in the Remodeling Effects of Molecular Hydrogen on the Lung Local Tissue Microenvironment under Simulated Pulmonary Hypertension

Molecular hydrogen (H2) has antioxidant, anti-inflammatory, and anti-fibrotic effects. In a rat model simulating pulmonary fibrotic changes induced by monocrotaline-induced pulmonary hypertension (MPH), we had previously explored the impact of inhaled H2 on lung inflammation and blood pressure. In this study, we further focused the biological effects of H2 on mast cells (MCs) and the parameters of the fibrotic phenotype of the local tissue microenvironment. MPH resulted in a significantly increased number of MCs in both the pneumatic and respiratory parts of the lungs, an increased number of tryptase-positive MCs with increased expression of TGF-β, activated interaction with immunocompetent cells (macrophages and plasma cells) and fibroblasts, and increased MC colocalization with a fibrous component of the extracellular matrix of connective tissue. The alteration in the properties of the MC population occurred together with intensified collagen fibrillogenesis and an increase in the integral volume of collagen and elastic fibers of the extracellular matrix of the pulmonary connective tissue. The exposure of H2 together with monocrotaline (MCT), despite individual differences between animals, tended to decrease the intrapulmonary MC population and the severity of the fibrotic phenotype of the local tissue microenvironment compared to changes in animals exposed to the MCT effect alone. In addition, the activity of collagen fibrillogenesis associated with MCs and the expression of TGF-β and tryptase in MCs decreased, accompanied by a reduction in the absolute and relative content of reticular and elastic fibers in the lung stroma. Thus, with MCT exposure, inhaled H2 has antifibrotic effects involving MCs in the lungs of rats. This reveals the unknown development mechanisms of the biological effects of H2 on the remodeling features of the extracellular matrix under inflammatory background conditions of the tissue microenvironment. © 2024 by the authors.

Авторы
Atiakshin D. , Kostin A. , Alekhnovich A. , Volodkin A. , Ignatyuk M. , Klabukov I. , Baranovskii D. , Buchwalow I. , Tiemann M. , Artemieva M. , Medvedeva N. , Lebaron T.W. , Noda M. , Medvedev O.
Издательство
MDPI AG
Номер выпуска
20
Язык
Английский
Статус
Опубликовано
Номер
11010
Том
25
Год
2024
Организации
  • 1 RUDN University, 6 Miklukho-Maklaya St, Moscow, 117198, Russian Federation
  • 2 Research Institute of Experimental Biology and Medicine, Burdenko Voronezh State Medical University, Voronezh, 394036, Russian Federation
  • 3 National Medical Research Radiological Centre of the Ministry of Health of the Russian Federation, Koroleva st. 4, Obninsk, 249036, Russian Federation
  • 4 Institute for Hematopathology, Fangdieckstr. 75a, Hamburg, 22547, Germany
  • 5 Faculty of Biology, Lomonosov Moscow State University, Leninskie Gory 1-12, Moscow, 119234, Russian Federation
  • 6 Department of Kinesiology and Outdoor Recreation, Southern Utah University, Cedar City, 84720, UT, United States
  • 7 Molecular Hydrogen Institute, Cedar City, 84720, UT, United States
  • 8 Center for Mitochondrial Biology and Medicine, The Key Laboratory of Biomedical Information Engineering of Ministry of Education, School of Life Science, Xi’an Jiaotong University, Xi’an, 710049, China
  • 9 Faculty of Medicine, Lomonosov Moscow State University, Lomonosovsky Prospect 27-1, Moscow, 119991, Russian Federation
Ключевые слова
collagen and elastic fibers; collagen fibrillogenesis; fibrous niches of the local tissue microenvironment; heparin; hydrogen inhalations; mast cells; molecular hydrogen; pulmonary hypertension; secretory pathways; tryptase
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