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Effect of Moxibustion Therapy on the Serumal Intercellular Cell Adhesion Molecule and the Histopathology of Experimental Arthritis in Rats 被引量:5
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作者 何璐 lars dirckinck-holmfeld 蔡荣林 宋小鸽 胡玲 余爽 张道琴 《Journal of Acupuncture and Tuina Science》 2010年第4期210-213,共4页
Objective: To observe the effects of moxibustion therapy at Shenshu (BL 23) and Zusanli (ST 36) of rats with induced rheumatoid arthritis (RA) on the serumal intercellular cell adhesion molecule-1 (ICMA-1) an... Objective: To observe the effects of moxibustion therapy at Shenshu (BL 23) and Zusanli (ST 36) of rats with induced rheumatoid arthritis (RA) on the serumal intercellular cell adhesion molecule-1 (ICMA-1) and the pathological tissue, to discuss the mechanism of the warming and activating effect of moxibustion. Methods: After establishing the RA rats model, the induced rats were treated with moxibustion therapy on the acupoint Shenshu (BL 23) and Zusanli (ST 36), followed by analyzing the pathological section of the ankle of the hind limb and testing the ICAM-1 content with ELISA. Results: The plantar circumferences of the induced rat increased significantly compared with the rats in the control group (P〈0.01), accompanying with the increase of the synovial layer, the erosion of phlogocytes to chondrocytes and the specific increase of ICAM- 1 content. After the moxibustion therapy, the plantar circumferences decreased significantly (P〈0.01) while the synovial layer tended to reduce. In addition, there was no pathological damage of the articular cartilage and the ICAM content decreased with significant deviation (P〈0.01), compared to the model group. Conclusion: It was concluded that moxibustion therapy could inhibit the arthrosynovitis and hyperplasia, ameliorate the erosion of phlogocyte to cartilage, prevent articular periosteal lesions and delay the pathological course. The warming and activating effect of moxibustion therapy may involve the inhibition of the formation of ICAM- 1 and pannus. 展开更多
关键词 Moxibustion Therapy Arthritis Rheumatoid Intercellular Adhesion Molecule-l RATS
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