Mitigation of Articular Cartilage Degeneration and Subchondral Bone Sclerosis in Osteoarthritis Progression Using Low-Intensity Ultrasound Stimulation |
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Authors: | Xiaofei Li Yueli Sun Zhilun Zhou Dongye Zhang Jian Jiao Minyi Hu Chaudhry Raza Hassan Yi-Xian Qin |
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Affiliation: | Department of Biomedical Engineering, Stony Brook University, Stony Brook, New York, USA |
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Abstract: | The purpose of this study was to evaluate the effect of low-intensity ultrasound on articular cartilage and subchondral bone alterations in joints under normal and functional disuse conditions during osteoarthritis (OA) progression. Total of thirty 5-mo-old female Sprague–Dawley rats were randomly assigned to six groups (n?=?5/group): age-matched group, OA group, OA?+?ultrasound (US) group, hindlimb suspension (HLS) group, HLS?+?OA group and HLS?+?OA?+?US group. The surgical anterior cruciate ligament was used to induce OA in the right knee joints. After 2 wk of OA induction, low-intensity ultrasound generated with a 3-MHz transducer with 20% pulse duty cycle and 30 mW/cm2 acoustic intensity was delivered to the right knee joints for 20 min a day, 5 d a week for a total of 6 wk. Then, the right tibias were harvested for micro-computed tomography, histologic and mechanical analysis. Micro-computed tomography results indicated that the thickness and sulfated glycosaminoglycan content of cartilage decreased, but the thickness of the subchondral cortical bone plate and the formation of subchondral trabecular bone increased in the OA group under the normal joint use condition. Furthermore, histologic results revealed that chondrocyte density and arrangement in cartilage corrupted and the underlying subchondral bone increased during OA progression. These changes were accompanied by reductions in mechanical parameters in OA cartilage. However, fewer OA symptoms were observed in the HLS?+?OA group under the joint disuse condition. The cartilage degeneration and subchondral bone sclerosis were alleviated in the US treatment group, especially under normal joint use condition. In conclusion, low-intensity ultrasound could improve cartilage degeneration and subchondral sclerosis during OA progression. Also, it could provide a promising strategy for future clinical treatment for OA patients. |
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Keywords: | Osteoarthritis Articular cartilage Subchondral bone Joint disuse Low-intensity ultrasound Acoustic radiation force |
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