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MicroRNA-146a reduces IL-1 dependent inflammatory responses in the intervertebral disc
Su-Xi Gu1, Xin Li2, John L Hamilton2
1Department of Biochemistry, Rush University Medical Center, Chicago, IL 60612, USA; Department of Orthopedic Surgery, Rush University Medical Center, Chicago, IL 60612, USA; Department of Orthopedic Surgery, PLA309 Hospital, Beijing 100091, China.
Abstract:
Because miR-146a expression in articular chondrocytes is associated with osteoarthritis (OA), we assessed whether miR-146a is linked to cartilage degeneration in the spine. Monolayer cultures of nucleus pulposus (NP) cells from the intervertebral discs (IVD) of bovine tails were transfected with a miR-146a mimic. To provoke inflammatory responses and catabolic extracellular matrix (ECM) degradation, cells were co-treated with interleukin-1 (IL-1). Transfection of miR-146a decreases IL-1 induced mRNA levels of inflammatory genes and catabolic proteases in NP cells based on quantitative real-time reverse transcriptase PCR (qRT-PCR) analysis. Similarly, miR146a suppresses IL-1 induced protein levels of matrix metalloproteinases and aggrecanases as revealed by immunoblotting. Disc segments from wild type (WT) and miR-146a knockout (KO) mice were cultured ex vivo in the presence or absence of IL-1 for 3days. Histological and immuno-histochemical (IHC) analyses of disc organ cultures revealed that IL-1 mediates changes in proteoglycan (PG) content and in-situ levels of catabolic proteins (MMP-13 and ADAMTS-5) in the nucleus pulposus of the disc. However, these IL-1 effects are more pronounced in miR-146a KO discs compared to WT discs. For example, absence of miR-146a increases the percentage of MMP-13 and ADAMTS-5 positive cells after treatment with IL-1. Thus, miR-146a appears to protect against IL-1 induced IVD degeneration and inflammation. Stimulation of endogenous miR-146a expression or exogenous delivery of miRNA-146a are viable therapeutic strategies that may decelerate disc degeneration and regain a normal homeostatic balance in extracellular matrix production and turn-over.
Insights
MicroRNA-146a (miR-146a) protects against intervertebral disc (IVD) degeneration by reducing inflammation and extracellular matrix breakdown. Upregulating miR-146a may be a therapeutic strategy for spinal disc degeneration.
Area of Science:
- Biochemistry
- Molecular Biology
- Regenerative Medicine
Background:
- Osteoarthritis (OA) is linked to miR-146a expression in articular chondrocytes.
- The role of miR-146a in spinal intervertebral disc (IVD) degeneration is not well understood.
Purpose of the Study:
- To investigate the association between miR-146a and cartilage degeneration in the spine.
- To determine if miR-146a plays a protective role against inflammation and extracellular matrix (ECM) degradation in IVD cells.
Main Methods:
- Nucleus pulposus (NP) cells were transfected with miR-146a mimic and treated with interleukin-1 (IL-1).
- Quantitative real-time reverse transcriptase PCR (qRT-PCR) and immunoblotting were used to analyze gene and protein expression.
- Ex vivo organ cultures of wild type (WT) and miR-146a knockout (KO) mouse disc segments were treated with IL-1.
- Histological and immuno-histochemical (IHC) analyses were performed on disc organ cultures.
Main Results:
- miR-146a transfection reduced IL-1 induced inflammatory gene and catabolic protease mRNA levels in NP cells.
- miR-146a suppressed IL-1 induced protein levels of matrix metalloproteinases and aggrecanases.
- IL-1 induced degeneration, characterized by proteoglycan loss and increased catabolic proteins (MMP-13, ADAMTS-5), was more pronounced in miR-146a KO discs compared to WT discs.
Conclusions:
- miR-146a protects against IL-1 induced IVD degeneration and inflammation.
- Stimulating endogenous miR-146a or delivering miR-146a exogenously are potential therapeutic strategies for disc degeneration.
- Restoring miR-146a may help re-establish homeostasis in ECM production and turnover in the IVD.
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