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Mechanical Stimulation of Chondrocyte-agarose Hydrogels
Published on: October 27, 2012
Micro-current stimulation could inhibit IL-1β-induced inflammatory responses in chondrocytes and protect knee bone
Minjoo Lee1, Hana Lee1, Halim Chung1
1Department of Biomedical Engineering, Yonsei University, Gangwon, 26493 South Korea.
Abstract:
This study aimed to evaluate the inhibitory effects of micro-current stimulation (MCS) on inflammatory responses in chondrocytes and degradation of extracellular matrix (ECM) in osteoarthritis (OA). To determine the efficacy of MCS, IL-1β-treated chondrocytes and monosodium iodoacetate (MIA)-induced OA rat model were used. To evaluate the cytotoxicity and nitric oxide (NO) production in SW1353 cells, the presence or absence of IL-1β treatment or various levels of MCS were applied. Immunoblot analysis was conducted to evaluate whether MCS can modulate IL-1R1/MyD88/NF-κB signaling pathway and various indicators involved in ECM degradation. Additionally, to determine whether MCS alleviates subchondral bone structure destruction caused by OA, micro-CT analysis, immunoblot analysis, and ELISA were conducted using OA rat model. 25 and 50 µA levels of MCS showed effects in cell proliferation and NO production. The MCS group with IL-1β treatment lead to significant inhibition of protein expression levels regarding IL-1R1/MyD88/NF-κB signaling and reduction of the nucleus translocation of NF-κB. In addition, the protein expression levels of MMP-1, MMP-3, MMP-13, and IL-1β decreased, whereas collagen II and aggrecan increased. In animal results, morphological analysis of subchondral bone using micro-CT showed that MCS induced subchondral bone regeneration and improvement, as evidenced by increased thickness and bone mineral density of the subchondral bone. Furthermore, MCS-applied groups showed decreases in the protein expression of MMP-1 and MMP-3, while increases in collagen-II and aggrecan expressions. These findings suggest that MCS has the potential to be used as a non-pharmaceutical method to alleviate OA.
Insights
Micro-current stimulation (MCS) effectively inhibits inflammation and extracellular matrix degradation in osteoarthritis (OA) by modulating key signaling pathways and promoting cartilage and bone regeneration, offering a potential non-pharmaceutical treatment.
Area of Science:
- Biomedical Engineering
- Orthopedics
- Cell Biology
Background:
- Osteoarthritis (OA) is characterized by chondrocyte inflammation and extracellular matrix (ECM) degradation.
- Current OA treatments have limitations, necessitating novel therapeutic approaches.
Purpose of the Study:
- To evaluate the efficacy of micro-current stimulation (MCS) in mitigating inflammatory responses and ECM degradation in chondrocytes.
- To assess MCS's impact on subchondral bone structure in an OA rat model.
Main Methods:
- Utilized IL-1β-treated chondrocytes and monosodium iodoacetate (MIA)-induced OA rat models.
- Assessed cytotoxicity, nitric oxide (NO) production, and protein expression via immunoblot analysis and ELISA.
- Analyzed subchondral bone structure using micro-CT.
Main Results:
- MCS (25 and 50 µA) enhanced chondrocyte proliferation and reduced NO production.
- MCS inhibited the IL-1R1/MyD88/NF-κB signaling pathway and decreased expression of MMP-1, MMP-3, MMP-13, and IL-1β.
- MCS increased collagen II and aggrecan expression and promoted subchondral bone regeneration in OA rats.
Conclusions:
- MCS demonstrates significant anti-inflammatory and anti-degradative effects in OA.
- MCS promotes cartilage matrix synthesis and subchondral bone repair.
- MCS presents a promising non-pharmaceutical therapeutic strategy for managing osteoarthritis.

