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Bronchoalveolar Lavage Exosomes in Lipopolysaccharide-induced Septic Lung Injury
Published on: May 21, 2018
Monocyte-derived exosomal XIST exacerbates acute lung injury by regulating the miR-448-5p/HMGB2 axis
Shuyao Zhang1, Meini Chen2, Xinmin Guo3
1Department of Pharmacy, Guangzhou Red Cross Hospital, Jinan University, Guangzhou 510220, PR China; Department of Pharmacology, Shantou University Medical College, Shantou 515041, PR China.
Abstract:
Monocyte-derived exosomes (Exos) have been implicated in inflammation-related autoimmune/inflammatory diseases via transferring bioactive cargoes to recipient cells. The purpose of this study was to investigate the possible effect of monocyte-derived Exos on the initiation and the development of acute lung injury (ALI) by delivering long non-coding RNA XIST. Key factors and regulatory mechanisms in ALI were predicted by bioinformatics methods. BALB/c mice were treated with lipopolysaccharide (LPS) to establish an ALI in vivo model and then injected with Exos isolated from monocytes transduced with sh-XIST to evaluate the effect of monocyte-derived exosomal XIST on ALI. HBE1 cells were co-cultured with Exos isolated from monocytes transduced with sh-XIST for further exploration of its effect. Luciferase reporter, RIP and RNA pull-down assays were performed to verify the interaction between miR-448-5p and XIST, miR-448-5p and HMGB2. miR-448-5p was significantly poorly expressed while XIST and HMGB2 were highly expressed in the LPS-induced mouse model of ALI. Monocyte-derived Exos transferred XIST into HBE1 cells where XIST competitively inhibited miR-448-5p and reduced the binding of miR-448-5p to HMGB2, thus upregulating the expression of HMGB2. Furthermore, in vivo data revealed that XIST delivered by monocyte-derived Exos downregulated miR-448-5p expression and up-regulated HMGB2 expression, ultimately contributing to ALI in mice. Overall, our results indicate that XIST delivered by monocyte-derived Exos aggravates ALI via regulating the miR-448-5p/HMGB2 signaling axis.
Insights
Monocyte-derived exosomes carrying long non-coding RNA XIST worsen acute lung injury (ALI) by inhibiting miR-448-5p and increasing HMGB2. This highlights a novel therapeutic target for ALI.
Area of Science:
- Cell Biology
- Molecular Biology
- Immunology
Background:
- Monocyte-derived exosomes (Exos) mediate intercellular communication in inflammatory diseases.
- Long non-coding RNAs (lncRNAs) play critical roles in disease pathogenesis.
- Acute lung injury (ALI) is a severe inflammatory condition with limited treatment options.
Purpose of the Study:
- To investigate the role of monocyte-derived exosomal lncRNA XIST in the initiation and development of ALI.
- To elucidate the molecular mechanism by which exosomal XIST affects ALI progression.
Main Methods:
- Bioinformatic prediction of key factors and regulatory mechanisms in ALI.
- Establishment of a lipopolysaccharide (LPS)-induced ALI mouse model.
- In vitro studies using HBE1 cells co-cultured with modified Exos.
- Molecular assays including luciferase reporter, RIP, and RNA pull-down assays to confirm molecular interactions.
Main Results:
- XIST and HMGB2 were upregulated, while miR-448-5p was downregulated in LPS-induced ALI.
- Monocyte-derived Exos transferred XIST into HBE1 cells, inhibiting miR-448-5p and upregulating HMGB2.
- Exosomal XIST aggravated ALI in vivo by downregulating miR-448-5p and upregulating HMGB2.
Conclusions:
- Monocyte-derived exosomal XIST exacerbates ALI by regulating the miR-448-5p/HMGB2 signaling axis.
- Targeting the exosomal XIST/miR-448-5p/HMGB2 pathway may offer a therapeutic strategy for ALI.
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