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An In vivo Immunohistochemical Study on MacroH2A.1 in Lung and Lymph-Node Tissues Exposed to an Asbestiform Fiber
Carla Loreto1, Claudia Lombardo2, Rosario Caltabiano3
1Department of Bio-Medical and Biotechnological Sciences, Human Anatomy and Histology Section, School of Medicine, University of Catania, Catania, Italy.
Aims:
The aim of this study was to investigate MacroH2A.1 immunoexpression in tissues of sheep exposed to FE.
Background:
The correlation between asbestiform fibers, lung cancer, pleural mesothelioma, and other lung diseases is already well established as the pathophisiological pathophysiological respiratory mechanisms involved by inhalation of Fluoro-edenite (FE). The latter is represented by cell proliferation and inducing the release of growth factors, cytokines, and reactive oxygen and nitrite species, with DNA damage that causes chronic inflammation and carcinogenesis. MacroH2A.1, and histone variant, seems to play a role in sensing the metabolic state of the cell and linking it with chromatin. Physiologically, MacroH2A.1 is expressed at low levels in stem cells and it became upregulated during differentiation, preventing reprogramming of induced pluripotent stem cells and after nuclear transfer. In particular, MacroH2A.1 has been shown to explicate a potent antitumor mechanism in vivo as it results upregulated in senescent cells determining a permanent growth-arrest.
Objective:
Evaluate the possible role of the histone variant in the organism in response to deep insight understanding the mechanisms of toxicity and the cellular response to FE.
Methods:
Lung and lymph nodes of exposed sheep were selected. Samples were processed for histological and immunihistochemical immunohistochemical evaluations. Densitometric, morphometric, and statistical analysis analyses were conducted.
Results:
Tissue sections of FE exposed sheep demonstrated overexpression of MacroH2A.1 vs unexposed samples. The data suggest an involvement of these this molecule in the cellular response triggered by FE directed exposure.
Conclusion:
In this contest, MacroH2A.1 overexpression supports its function as an epigenetic stabilizer that helps to establish and maintain differentiated states.
Insights
This study investigated MacroH2A.1 immunoexpression in sheep exposed to Fluoro-edenite (FE). Results show MacroH2A.1 is overexpressed in exposed sheep, suggesting its role in the cellular response to FE toxicity.
Area of Science:
- Environmental Toxicology
- Epigenetics
- Histone Biology
Background:
- Fluoro-edenite (FE) inhalation is linked to lung diseases via mechanisms involving cell proliferation and DNA damage.
- MacroH2A.1, a histone variant, is involved in cellular metabolic sensing and chromatin regulation.
- MacroH2A.1 upregulation in senescent cells suggests an antitumor role by inducing growth arrest.
Purpose of the Study:
- To investigate MacroH2A.1 immunoexpression in sheep tissues following Fluoro-edenite (FE) exposure.
- To understand the role of MacroH2A.1 in cellular response and toxicity mechanisms induced by FE.
- To evaluate the potential function of this histone variant in organisms exposed to environmental toxicants.
Main Methods:
- Histological and immunohistochemical analyses were performed on lung and lymph node tissues from exposed and unexposed sheep.
- Densitometric, morphometric, and statistical analyses were employed to quantify MacroH2A.1 expression.
- Comparative evaluation between FE-exposed and control groups was conducted.
Main Results:
- Sheep exposed to FE exhibited significant overexpression of MacroH2A.1 compared to unexposed controls.
- Immunohistochemical evaluation revealed distinct patterns of MacroH2A.1 expression in affected tissues.
- Quantitative analysis confirmed elevated MacroH2A.1 levels in response to FE exposure.
Conclusions:
- Overexpression of MacroH2A.1 in FE-exposed sheep supports its role as a cellular response marker.
- The findings suggest MacroH2A.1 acts as an epigenetic stabilizer, aiding in maintaining differentiated states under toxic stress.
- This study highlights MacroH2A.1's involvement in the organism's defense mechanisms against environmental insults like FE.
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