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Osteogenic potential of the human bone morphogenetic protein 2 gene activated nanobone putty 被引量:10
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作者 TIAN Xiao-bin SUN Li +3 位作者 YANG Shu-hua ZHANG Yu-kun HU Ru-yin FU De-hao 《Chinese Medical Journal》 SCIE CAS CSCD 2008年第8期745-751,共7页
Background Nanobone putty is an injectable and bioresorbable bone substitute. The neutral-pH putty resembles hard bone tissue, does not contain polymers or plasticizers, and is self-setting and nearly isothermic, prop... Background Nanobone putty is an injectable and bioresorbable bone substitute. The neutral-pH putty resembles hard bone tissue, does not contain polymers or plasticizers, and is self-setting and nearly isothermic, properties which are helpful for the adhesion, proliferation, and function of bone cells. The aim of this study was to investigate the osteogenic potential of human bone morphogenetic protein 2 (hBMP2) gene activated nanobone putty in inducing ectopic bone formation, and the effects of the hBMP2 gene activated nanobone putty on repairing bone defects. Methods Twenty four Kunming mice were randomly divided into two groups. The nanobone putty + hBMP2 plasmid was injected into the right thigh muscle pouches of the mice (experiment side). The nanobone putty + blank plasmid or nanobone putty was injected into the left thigh muscle pouches of the group 1 (control side 1) or group 2 (control side 2), respectively. The effects of ectopic bone formation were evaluated by radiography, histology, and molecular biology analysis at 2 and 4 weeks after operation. Bilateral 15 mm radial defects were made in forty-eight rabbits. These rabbits were randomly divided into three groups: Group A, nanobone putty + hBMP2 plasmid; Group B, putty + blank plasmid; Group C, nanobone putty only. Six rabbits with left radial defects served as blank controls. The effect of bone repairing was evaluated by radiography, histology, molecular biology, and biomechanical analysis at 4, 8, and 12 weeks after operation. Results The tissue from the experimental side of the mice expressed hBMP2. Obvious cartilage and island-distributed immature bone formation in implants of the experiment side were observed at 2 weeks after operation, and massive mature bone observed at 4 weeks. No bone formation was observed in the control side of the mice. The ALP activity in the experiment side of the mice was higher than that in the control side. The tissue of Group A rabbits expressed hBMP2 protein and higher ALP level. The new bo 展开更多
关键词 bone morphogenetic protein 2 gene activated matrix nanobone putty nanocrystalline hydroxyapatite gene therapy
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具有自塑能力可吸收注射型纳米骨浆 被引量:22
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作者 罗萍 张阳德 +3 位作者 彭健 贾泽明 周健 潘一峰 《中国现代医学杂志》 CAS CSCD 2003年第18期1-6,10,共7页
目的 :为研制一种适应整形外科微创技术发展的一种可注射、可吸收、无致热、原位立即变硬的骨替代材料。方法 :通过合成研制一种有缓冲性的粘滞性骨浆 ,在体外研究其生物相容性 ,同时在犬的双侧肱骨缺损模型上研究其自塑形和生物吸收特... 目的 :为研制一种适应整形外科微创技术发展的一种可注射、可吸收、无致热、原位立即变硬的骨替代材料。方法 :通过合成研制一种有缓冲性的粘滞性骨浆 ,在体外研究其生物相容性 ,同时在犬的双侧肱骨缺损模型上研究其自塑形和生物吸收特性。结果 :实验证明这种植入材料具有极好的塑形性能 ,在 12~ 18周内完全吸收 ,临床上治疗骨折的X线显像证实 ,植入物吸收和骨再生存在一个合适的比例。结论 :本文阐述了一种生物可吸收可调节硬化时间的注射性骨浆 ,这种骨浆的特性符合多数骨增生过程 ,具有自动充填 ,不产热 ,即便在潮湿和血运丰富的情况下亦能硬化 ,植入成分被设计为产生中性 pH值的骨浆能重建骨组织 ,不含有聚合体或可塑剂。大量体外研究表明这一材料具有高度生物相容性和非致热源性。 展开更多
关键词 纳米结晶羟基磷灰石 骨移植 骨替代 骨组织充填 注射型纳米骨浆 人造骨 生物体可吸收性 骨水泥
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BMP-2/VEGF双基因活化纳米骨浆对提高骨质疏松椎体强度的实验研究
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作者 杨震 吴兴林 +3 位作者 李建扬 潘伟 简月奎 李波 《中国骨质疏松杂志》 CAS CSCD 北大核心 2016年第12期1531-1534,1544,共5页
目的证明BMP-2/VEGF双基因活化纳米骨浆是椎体成形术(PVP)的理想填充材料。方法首先构建并验证了BMP-2/VEGF双基因活化纳米骨浆构建成功,然后由生物力学测试分析注射入椎弓根和已有骨质坍塌的椎体BMP-2/VEGF双基因活化纳米骨浆后椎体的... 目的证明BMP-2/VEGF双基因活化纳米骨浆是椎体成形术(PVP)的理想填充材料。方法首先构建并验证了BMP-2/VEGF双基因活化纳米骨浆构建成功,然后由生物力学测试分析注射入椎弓根和已有骨质坍塌的椎体BMP-2/VEGF双基因活化纳米骨浆后椎体的最大载荷。随后,应用双侧卵巢切除术构建山羊骨质疏松模型,研究与对照相比注射BMP-2/VEGF双基因活化纳米骨浆前和后山羊血清的碱性磷酸酶、骨钙素、最大载荷、椎体的骨密度和微观三维结构的改变。结果 BMP-2/VEGF双基因活化纳米骨浆可以明显增加椎体的最大压缩载荷和最大压缩应力明显增加(P=0.039、0.010),同时注射入已有骨质坍塌的最提椎体BMP-2/VEGF双基因活化纳米骨浆后椎体的最大压缩载荷和最大压缩应力明显增加(P<0.001,P=0.030);山羊骨质疏松模型中,碱性磷酸酶和骨钙素明显下降(P=0.018,P<0.001),骨密度明显下降,骨小梁明显稀疏。注射入BMP-2/VEGF双基因活化纳米骨浆后山羊骨密度明显增加,最大压缩载荷增加(P=0.0072),最大压缩应力增加(P=0.0024);椎骨小梁更加致密,孔隙率降低。结论本实验证明了BMP-2/VEGF双基因活化纳米骨浆是椎体成形术(PVP)的理想填充材料,可以提高椎体的骨密度和强度。 展开更多
关键词 骨质疏松 双基因活化纳米骨浆 椎体成形术 动物实验 山羊
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