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Multicellular Human Alveolar Model Composed of Epithelial Cells and Primary Immune Cells for Hazard Assessment
Published on: May 6, 2020
miR-16 inhibits hyperoxia-induced cell apoptosis in human alveolar epithelial cells
Zhixi Li1, Wenjun Jiang1, Gang Wu2
1Department of Pediatric Surgery, Hospital of The University of Electronic Science and Technology of China and Sichuan Provincial People's Hospital, Chengdu, Sichuan 610072, P.R. China.
Abstract:
The identification and development of novel therapeutic strategies for acute lung injury is urgently required. It has been previously demonstrated that microRNA (miR)‑16 suppresses the level of transforming growth factor (TGF)‑β in acute lung injury (ALI). Therefore, the present study investigated the role of miR‑16 in the phenotype, cell proliferation and apoptosis, and the involvement of TGF‑β/Smad family member 2 (Smad2) and JAK/signal transducer and activator of transcription (STAT)3 signaling, of primary human alveolar type II epithelial cells (AECII). Following transfection with miR‑16 mimics, AECII cells were exposed to hyperoxia for 24 h. Subsequently, immunofluorescence staining of surfactant protein‑A (SP‑A) was performed, and cell proliferation and apoptosis were investigated by Cell Counting Kit‑8 assays and annexin V‑fluorescein isothiocyanate/propidium iodide staining, respectively. Furthermore, the expression levels of miR‑16, TGF‑β, Smad2, phosphorylated‑Smad2, JAK and STAT3 were detected by western blotting and/or reverse transcription‑quantitative polymerase chain reaction. The results demonstrated that miR‑16 levels and SP‑A fluorescence were markedly inhibited by hyperoxia. Furthermore, transfection of AECII cells with miR‑16 mimics increased SP‑A fluorescence in hyperoxia‑treated AECII cells, significantly reversed hyperoxia‑induced reductions in cell proliferation and inhibited hyperoxia‑induced apoptosis. Finally, miR‑16 mimics modulated the mRNA and protein expression of components of the TGF‑β/Smad2 and JAK/STAT3 pathways in AECII cells following hyperoxia. In conclusion, the results of the present study indicate that overexpression of miR‑16 may exert a protective effect in AECII cells against cell apoptosis and ALI, which may be associated with TGF‑β/Smad2 and JAK/STAT3 signaling pathways. This may also represent a promising target for novel therapeutic strategies for acute lung injury.
Insights
MicroRNA-16 overexpression protects lung cells from injury by regulating TGF-β/Smad2 and JAK/STAT3 pathways, offering a potential therapy for acute lung injury (ALI).
Area of Science:
- Pulmonary Medicine
- Molecular Biology
- Cell Biology
Background:
- Acute lung injury (ALI) necessitates novel therapeutic strategies.
- MicroRNA (miR)-16 is known to suppress transforming growth factor (TGF)-β in ALI.
- The specific role of miR-16 in alveolar epithelial cells and its signaling pathways in ALI requires further investigation.
Purpose of the Study:
- To investigate the role of miR-16 in the phenotype, proliferation, and apoptosis of primary human alveolar type II epithelial cells (AECII) under hyperoxic conditions.
- To elucidate the involvement of TGF-β/Smad2 and JAK/STAT3 signaling pathways in miR-16's effects on AECII cells.
- To assess the potential of miR-16 as a therapeutic target for ALI.
Main Methods:
- Primary human AECII cells were transfected with miR-16 mimics and exposed to hyperoxia.
- Surfactant protein-A (SP-A) expression was assessed via immunofluorescence staining.
- Cell proliferation and apoptosis were evaluated using Cell Counting Kit-8 assays and Annexin V/propidium iodide staining.
- Expression levels of miR-16, TGF-β, Smad2, p-Smad2, JAK, and STAT3 were analyzed by western blotting and RT-qPCR.
Main Results:
- Hyperoxia significantly reduced miR-16 levels and SP-A fluorescence in AECII cells.
- miR-16 mimic transfection increased SP-A fluorescence, reversed hyperoxia-induced proliferation reduction, and inhibited apoptosis in AECII cells.
- miR-16 mimics modulated the expression of TGF-β/Smad2 and JAK/STAT3 pathway components in hyperoxia-exposed AECII cells.
Conclusions:
- Overexpression of miR-16 demonstrates a protective effect on AECII cells against hyperoxia-induced injury, apoptosis, and proliferation defects.
- The protective mechanism of miR-16 involves the modulation of TGF-β/Smad2 and JAK/STAT3 signaling pathways.
- miR-16 represents a promising therapeutic target for developing novel treatments for acute lung injury.
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