Department of Genetic Engineering, Sungkyunkwan University, Suwon 440-746, Republic of Korea.
Mediators Inflamm. 2013;2013:183042. doi: 10.1155/2013/183042. Epub 2013 Apr 14.
Electrical stimulation with a weak current has been demonstrated to modulate various cellular and physiological responses, including the differentiation of mesenchymal stem cells and acute or chronic physical pain. Thus, a variety of investigations regarding the physiological role of nano- or microlevel currents at the cellular level are actively proceeding in the field of alternative medicine. In this study, we focused on the anti-inflammatory activity of aluminum-copper patches (ACPs) under macrophage-mediated inflammatory conditions. ACPs generated nanolevel currents ranging from 30 to 55 nA in solution conditions. Interestingly, the nanocurrent-generating aluminum-copper patches (NGACPs) were able to suppress both lipopolysaccharide-(LPS-) and pam3CSK-induced inflammatory responses such as NO and PGE2 production in both RAW264.7 cells and peritoneal macrophages at the transcriptional level. Through immunoblotting and immunoprecipitation analyses, we found that p38/AP-1 could be the major inhibitory pathway in the NGACP-mediated anti-inflammatory response. Indeed, inhibition of p38 by SB203580 showed similar inhibitory activity of the production of TNF- α and PGE2 and the expression of TNF- α and COX-2 mRNA. These results suggest that ACP-induced nanocurrents alter signal transduction pathways that are involved in the inflammatory response and could therefore be utilized in the treatment of various inflammatory diseases such as arthritis and colitis.
弱电流的电刺激已被证明可调节各种细胞和生理反应,包括间充质干细胞的分化以及急性或慢性身体疼痛。因此,在替代医学领域,针对细胞水平纳米或微电流的生理作用的各种研究正在积极进行。在这项研究中,我们专注于铝铜贴片(ACPs)在巨噬细胞介导的炎症条件下的抗炎活性。ACPs 在溶液条件下产生 30 至 55 nA 的纳米级电流。有趣的是,纳米电流产生的铝铜贴片(NGACPs)能够抑制 RAW264.7 细胞和腹腔巨噬细胞中 LPS 和 pam3CSK 诱导的炎症反应,如转录水平的 NO 和 PGE2 产生。通过免疫印迹和免疫沉淀分析,我们发现 p38/AP-1 可能是 NGACP 介导的抗炎反应中的主要抑制途径。事实上,通过 SB203580 抑制 p38 显示出对 TNF-α 和 PGE2 的产生以及 TNF-α和 COX-2 mRNA 的表达的类似抑制活性。这些结果表明,ACP 诱导的纳米电流改变了参与炎症反应的信号转导途径,因此可用于治疗关节炎和结肠炎等各种炎症性疾病。