Low-intensity pulsed ultrasound prompts tissue-engineered bone formation after implantation surgery

低强度脉冲超声 骨钙素 血管生成 生物医学工程 间质细胞 骨髓 化学 骨愈合 碱性磷酸酶 男科 医学 超声波 外科 病理 治疗性超声 内科学 放射科 生物化学
作者
Juyong Wang,Ju-Qiang Wang,Yoshinori Asou,Fu Paul,Hui-Liang Shen,Jiani Chen,Shinichi Sotome,Zhao Liu,Kenichi Shinomiya
出处
期刊:Chinese Medical Journal [Lippincott Williams & Wilkins]
卷期号:127 (4): 669-674 被引量:6
标识
DOI:10.3760/cma.j.issn.0366-6999.20131006
摘要

Background A practical problem impeding clinical translation is the limited bone formation seen in artificial bone grafts. Low-pressure/vacuum seeding and dynamic culturing in bioreactors have led to a greater penetration into the scaffolds, enhanced production of bone marrow cells, and improved tissue-engineered bone formation. The goal of this study was to promote more extensive bone formation in the composites of porous ceramics and bone marrow stromal cells (BMSCs). Methods BMSCs/β-tricalcium phosphate (β-TCP) composites were subcultured for 2 weeks and then subcutaneously implanted into syngeneic rats that were split into a low-intensity pulsed ultrasound (LIPUS) treatment group and a control group. These implants were harvested at 5, 10, 25, and 50 days after implantation. The samples were then biomechanically tested and analyzed for alkaline phosphate (ALP) activity and osteocalcin (OCN) content and were also observed by light microscopy. Results The levels of ALP activity and OCN content in the composites were significantly higher in the LIPUS group than in the control group. Histomorphometric analysis revealed a greater degree of soft tissue repair, increased blood flow, better angiogenesis, and more extensive bone formation in the LIPUS groups than in the controls. No significant difference in the compressive strength was found between the two groups. Conclusion LIPUS treatment appears to enhance bone formation and angiogenesis in the BMSCs/β-TCP composites. Chin Med J 2014;127 (4): 669-674

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