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Investigation of Macrophage Polarization Using Bone Marrow Derived Macrophages
Published on: June 23, 2013
MicroRNA-10a-5p regulates macrophage polarization and promotes therapeutic adipose tissue remodeling
Yoon Keun Cho1, Yeonho Son1, Sang-Nam Kim1
1College of Pharmacy and Research Institute of Pharmaceutical Sciences, Seoul National University, Seoul, 08826, Republic of Korea.
Objective:
This study investigated the role of microRNAs generated from adipose tissue macrophages (ATMs) during adipose tissue remodeling induced by pharmacological and nutritional stimuli.
Methods:
Macrophage-specific Dicer knockout (KO) mice were used to determine the roles of microRNA generated in macrophages in adipose tissue remodeling induced by the β3-adrenergic receptor agonist CL316,243 (CL). RNA-seq was performed to characterize microRNA and mRNA expression profiles in isolated macrophages and PDGFRα+ adipocyte stem cells (ASCs). The role of miR-10a-5p was further investigated in cell culture, and in adipose tissue remodeling induced by CL treatment and high fat feeding.
Results:
Macrophage-specific deletion of Dicer elevated pro-inflammatory gene expression and prevented CL-induced de novo beige adipogenesis in gonadal white adipose tissue (gWAT). Co-culture of ASCs with ATMs of wild type mice promoted brown adipocyte gene expression upon differentiation, but co-culture with ATMs of Dicer KO mice did not. Bioinformatic analysis of RNA expression profiles identified miR-10a-5p as a potential regulator of inflammation and differentiation in ATMs and ASCs, respectively. CL treatment increased levels of miR-10a-5p in ATMs and ASCs in gWAT. Interestingly, CL treatment elevated levels of pre-mir-10a in ATMs but not in ASCs, suggesting possible transfer from ATMs to ASCs. Elevating miR-10a-5p levels inhibited proinflammatory gene expression in cultured RAW 264.7 macrophages and promoted the differentiation of C3H10T1/2 cells into brown adipocytes. Furthermore, treatment with a miR-10a-5p mimic in vivo rescued CL-induced beige adipogenesis in Dicer KO mice. High fat feeding reduced miR-10a-5p levels in ATMs of gWAT, and treatment of mice with a miR-10a-5p mimic suppressed pro-inflammatory responses, promoted the appearance of new white adipocytes in gWAT, and improved systemic glucose tolerance.
Conclusions:
These results demonstrate an important role of macrophage-generated microRNAs in adipogenic niches and identify miR-10a-5p as a key regulator that reduces adipose tissue inflammation and promotes therapeutic adipogenesis.
Insights
MicroRNAs from adipose tissue macrophages (ATMs) are crucial for adipose tissue remodeling. MiR-10a-5p, a key microRNA, reduces inflammation and promotes therapeutic adipogenesis in obesity and metabolic disorders.
Area of Science:
- Biochemistry
- Molecular Biology
- Cell Biology
Background:
- Adipose tissue macrophages (ATMs) play a critical role in adipose tissue remodeling.
- MicroRNAs (miRNAs) are small non-coding RNAs that regulate gene expression and are implicated in various biological processes.
- Understanding the role of macrophage-derived miRNAs in adipose tissue is essential for developing therapeutic strategies for metabolic diseases.
Purpose of the Study:
- To investigate the role of miRNAs generated by ATMs in adipose tissue remodeling.
- To identify specific miRNAs involved in regulating inflammation and adipogenesis in response to pharmacological and nutritional stimuli.
- To explore the therapeutic potential of targeting macrophage-derived miRNAs for metabolic disorders.
Main Methods:
- Utilized macrophage-specific Dicer knockout (KO) mice to assess the impact of macrophage-derived miRNAs on adipose tissue remodeling.
- Employed RNA sequencing (RNA-seq) to characterize miRNA and mRNA expression profiles in ATMs and adipocyte stem cells (ASCs).
- Investigated the function of miR-10a-5p in vitro and in vivo using cell culture, miRNA mimics, and mouse models of obesity and pharmacological stimulation.
Main Results:
- Macrophage-specific deletion of Dicer impaired beige adipogenesis and increased pro-inflammatory gene expression.
- Bioinformatic analysis identified miR-10a-5p as a key regulator, with its levels modulated by CL316,243 treatment and high-fat feeding.
- In vivo administration of miR-10a-5p mimic rescued beige adipogenesis in Dicer KO mice and improved metabolic parameters in high-fat fed mice.
Conclusions:
- Macrophage-derived miRNAs are critical regulators of the adipose tissue microenvironment.
- MiR-10a-5p acts as a key mediator, suppressing inflammation and promoting therapeutic adipogenesis.
- Targeting miR-10a-5p presents a promising therapeutic avenue for treating obesity-related metabolic dysfunction.
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