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Controlled Multiple Growth Factor Delivery from Bone Tissue Engineering Scaffolds via Designed Affinity

机译:通过设计亲和力从骨组织工程支架中控制多种生长因子的递送

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摘要

It is known that angiogenesis plays an important role in bone regeneration and that release of angiogenic and osteogenic growth factors can enhance bone formation. Multiple growth factors play key roles in processes that lead to tissue formation/regeneration during natural tissue development and repair. Therefore, treatments aiming to mimic tissue regeneration can benefit from multiple growth factor release, and there remains a need for simple clinically relevant approaches for dual growth factor release. We hypothesized that mineral coatings could be used as a platform for controlled incorporation and release of multiple growth factors. Specifically, mineral-coated scaffolds were “dip coated” in multiple growth factor solutions, and growth factor binding and release were dictated by the growth factor-mineral binding affinity. Beta tricalcium phosphate (β-TCP) scaffolds were fabricated using indirect solid-free form fabrication techniques and coated with a thin conformal mineral layer. Mineral-coated β-TCP scaffolds were sequentially dipped in recombinant human vascular endothelial growth factor (rhVEGF) and a modular bone morphogenetic peptide, a mineral-binding version of bone morphogenetic protein 2 (BMP2), solutions to allow for the incorporation of each growth factor. The dual release profile showed sustained release of both growth factors for over more than 60 days. Scaffolds releasing either rhVEGF alone or the combination of growth factors showed an increase in blood vessel ingrowth in a dose-dependent manner in a sheep intramuscular implantation model. This approach demonstrates a “modular design” approach, in which a controllable biologics carrier is integrated into a structural scaffold as a thin surface coating.
机译:众所周知,血管生成在骨再生中起着重要作用,而释放血管生成和成骨生长因子可以增强骨形成。多种生长因子在导致天然组织发育和修复过程中组织形成/再生的过程中起关键作用。因此,旨在模拟组织再生的治疗可受益于多种生长因子的释放,并且仍然需要用于双重生长因子释放的简单的临床相关方法。我们假设矿物涂层可以用作控制掺入和释放多种生长因子的平台。具体而言,将矿物涂层的支架“浸涂”在多种生长因子溶液中,生长因子的结合和释放取决于生长因子-矿物的结合亲和力。 β-磷酸三钙(β-TCP)支架使用间接无固体形式的制造技术制造,并涂有薄薄的共形矿物层。将矿物质涂层的β-TCP支架依次浸入重组人血管内皮生长因子(rhVEGF)和模块化骨形态发生肽,骨形态发生蛋白2(BMP2)的矿物质结合版本,溶液中以允许每种生长的结合因子。双重释放曲线显示两种生长因子持续释放超过60天。在绵羊肌肉内植入模型中,单独释放rhVEGF或生长因子组合的支架显示血管向内生长以剂量依赖性方式增加。这种方法展示了一种“模块化设计”方法,其中可控的生物制剂载体作为薄表面涂层集成到结构支架中。

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