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Controlled release of growth factors on allograft bone in vitro.

机译:异体移植骨上生长因子的受控释放。

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Allografts are important alternatives to autografts for treating defects after major bone loss. Bone growth factors have both local autocrine and paracrine effects and regulate the growth, proliferation, and differentiation of osteoprogenitor cells. To study the effects of prolonged, continuous, local delivery of growth factors on bone growth, we developed a new microelectromechanical system (MEMS) drug delivery device. Bone marrow cells from mice were seeded on mouse allograft discs and cultured in osteogenic media with osteogenic protein 1 (OP-1) and/or basic fibroblast growth factor (FGF-2) delivered from MEMS devices for 6 weeks. We monitored bone formation by changes of bone volume using micro-CT scanning and release of osteocalcin using ELISA. The data suggest the MEMS devices delivered constant concentrations of OP-1 and FGF-2 to the media. Bone marrow cells grew on the allografts and increased bone volume. Addition of OP-1 increased bone formation whereas FGF-2 decreased bone formation. Local delivery of growth factors over a prolonged period modulated the differentiation of osteoprogenitor cells on allograft bone.
机译:同种异体移植物是自体移植物治疗严重骨质流失后的重要替代方法。骨生长因子具有局部自分泌和旁分泌作用,并调节骨祖细胞的生长,增殖和分化。为了研究长期,连续,局部递送生长因子对骨骼生长的影响,我们开发了一种新型的微机电系统(MEMS)药物递送装置。将小鼠的骨髓细胞接种到同种异体移植盘上,并在具有成骨蛋白1(OP-1)和/或碱性成纤维细胞生长因子(FGF-2)的成骨培养基中培养,这些成骨蛋白从MEMS装置运送了6周。我们使用Micro-CT扫描通过骨量的变化监测骨形成,并使用ELISA监测骨钙素的释放。数据表明,MEMS器件向介质传递了恒定浓度的OP-1和FGF-2。骨髓细胞在同种异体移植物上生长并增加了骨量。 OP-1的添加增加了骨形成,而FGF-2减少了骨形成。生长因子在较长时间内的局部传递调节了同种异体骨上骨祖细胞的分化。

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