Department of Biomedical Engineering, Faculty of Engineering, University of Isfahan, Isfahan, Iran.
Department of Biomaterials, Tissue Engineering and Nanotechnology, School of Advanced Medical Technologies, Isfahan University of Medical Sciences (IUMS), Isfahan, Iran.
J Tissue Eng Regen Med. 2022 Sep;16(9):812-824. doi: 10.1002/term.3331. Epub 2022 Jun 11.
Menisci are fibrocartilaginous structures in the knee joint with an inadequate regenerative capacity, which causes low healing potential and further leads to osteoarthritis. Recently, three-dimensional (3D) printing techniques and ultrasound treatment have gained plenty of attention for meniscus tissue engineering. The present study investigates the effectiveness of low-intensity pulsed ultrasound stimulations (LIPUS) on the proliferation, viability, morphology, and gene expression of the chondrocytes seeded on 3D printed polyurethane scaffolds dip-coated with gellan gum, hyaluronic acid, and glucosamine. LIPUS stimulation was performed at 100, 200, and 300 mW/cm intensities for 20 min/day. A faster gap closure (78.08 ± 2.56%) in the migration scratch assay was observed in the 200 mW/cm group after 24 h. Also, inverted microscopic and scanning electron microscopic images showed no cell morphology changes during LIPUS exposure at different intensities. The 3D cultured chondrocytes under LIPUS treatment revealed a promotion in cell proliferation rate and viability as the intensity doses increased. Additionally, LIPUS could stimulate chondrocytes to overexpress the aggrecan and collagen II genes and improve their chondrogenic phenotype. This study recommends that the combination of LIPUS treatment and 3D hybrid scaffolds can be considered as a valuable treatment for meniscus regeneration based on our in vitro data.
半月板是膝关节中的纤维软骨结构,其再生能力不足,导致愈合潜力低,并进一步导致骨关节炎。最近,三维(3D)打印技术和超声处理在半月板组织工程中引起了广泛关注。本研究调查了低强度脉冲超声刺激(LIPUS)对包被有结冷胶、透明质酸和氨基葡萄糖的 3D 打印聚氨酯支架上接种的软骨细胞的增殖、活力、形态和基因表达的影响。LIPUS 刺激在 100、200 和 300 mW/cm 强度下进行 20 分钟/天。在 24 小时后,迁移划痕试验中 200 mW/cm 组的间隙闭合速度更快(78.08 ± 2.56%)。此外,在不同强度下进行 LIPUS 暴露时,倒置显微镜和扫描电子显微镜图像均未显示出细胞形态变化。在 LIPUS 处理下的 3D 培养软骨细胞显示出细胞增殖率和活力的提高,随着强度剂量的增加而增加。此外,LIPUS 可以刺激软骨细胞过度表达聚集蛋白聚糖和胶原 II 基因,并改善其软骨形成表型。根据我们的体外数据,本研究建议将 LIPUS 治疗与 3D 混合支架相结合,可以考虑作为半月板再生的一种有价值的治疗方法。