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Single and Dual Growth Factor Delivery from Poly-epsilon-caprolactone Scaffolds for Pre-Fabricated Bone Flap Engineering.

机译:从聚ε-己内酯支架上进行的单个和双重生长因子输送,用于预制骨瓣工程。

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摘要

Autografts are utilized to reconstruct large craniofacial bone defects; however, they result in donor site morbidity and defect geometry mismatch. Pre-fabricating a bone flap overcomes these drawbacks by integrating a patient specific scaffold with biologics, implanting it in the latissimus dorsi for a period of time and then transplanting it to the defect site as a partially remodeled construct. Polycaprolactone (PCL) is a biocompatible polymer that has mechanical properties suitable for bone tissue engineering; however, it must be integrated with biologics to stimulate bone formation. The purpose of this work was to investigate bone regeneration using PCL and dual protein delivery.;Bone morphogenetic protein-2 (BMP2) was adsorbed or conjugated onto a PCL scaffold in a clinically applicable setting (1 hour exposure at room temperature). Adsorbed BMP2 had a small burst release and was bioactive as indicated by C2C12 alkaline phosphatase expression. Interestingly, conjugated BMP2 had a sustained release but was not bioactive. When implanted subcutaneously, adsorbed BMP2 had increased bone volume (BV), elastic modulus, and ingrowth when compared to conjugation. Next, a collagen sponge was fabricated inside of a BMP2-adsorbed PCL scaffold to deliver vascular endothelial growth factor (VEGF). In addition, a modular PCL scaffold was developed in which the inner and outer modular portions were adsorbed with BMP2 and VEGF, respectively. In both systems, the VEGF was bioactive as indicated by increased endothelial cell proliferation. Dual delivery of BMP2+VEGF significantly increased BV from 4 to 8 weeks in an ectopic location, whereas, BMP2 alone did not. Finally, erythropoietin (EPO) and BMP2 were delivered from the outer and inner portions of the modular scaffold, respectively. The adsorbed EPO was bioactive as indicated by increased endothelial cell proliferation. At 4 weeks, dual EPO+BMP2 delivery significantly increased BV and ingrowth when compared to BMP2 alone.;In conclusion, adsorbing BMP2 onto PCL may be optimal for clinical use. Delivering VEGF with BMP2 increases the bone regeneration rate from 4 to 8 weeks, and delivering EPO with BMP2 increases the BV at 4 weeks when compared to BMP2 alone, making multiple biologics delivery a promising method to increase the regenerated bone for pre-fabricated flaps.
机译:自体移植用于重建大的颅面骨缺损。但是,它们导致供体部位发病率和缺陷几何形状不匹配。预制骨瓣克服了这些缺点,方法是将患者特定的支架与生物制剂整合在一起,将其植入背阔肌一段时间,然后将其作为部分重塑的结构移植到缺损部位。聚己内酯(PCL)是一种生物相容性聚合物,具有适合骨骼组织工程的机械性能;但是,必须将其与生物制剂整合以刺激骨骼形成。这项工作的目的是研究使用PCL和双重蛋白递送的骨再生。在临床适用的环境下(室温下暴露1小时),将骨形态发生蛋白2(BMP2)吸附或结合到PCL支架上。吸附的BMP2释放量小,并且具有生物活性,如C2C12碱性磷酸酶表达所示。有趣的是,缀合的BMP2具有持续释放但没有生物活性。皮下植入时,与共轭相比,吸附的BMP2具有增加的骨体积(BV),弹性模量和向内生长。接下来,在吸收了BMP2的PCL支架内部制造胶原蛋白海绵,以递送血管内皮生长因子(VEGF)。另外,开发了模块化PCL支架,其中内部和外部模块化部分分别被BMP2和VEGF吸附。在两个系统中,如内皮细胞增殖增加所示,VEGF具有生物活性。 BMP2 + VEGF的双重递送在异位部位将BV从4周显着增加到8周,而单独的BMP2则没有。最后,促红细胞生成素(EPO)和BMP2分别从模块化支架的外部和内部传递。吸附的EPO具有生物活性,如内皮细胞增殖增加所示。与单独使用BMP2相比,在第4周时,双重EPO + BMP2递送显着增加了BV和向内生长。总之,将BMP2吸附到PCL上可能是临床应用的最佳选择。与单独的BMP2相比,与BMP2一起递送VEGF可将骨骼再生速率从4周提高到8周,而与BMP2一起递送EPO则可在4周时提高BV,使得多种生物制剂的递送成为增加预制皮瓣再生骨骼的有前途的方法。

著录项

  • 作者

    Patel, Janki Jayesh.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Biomedical engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 194 p.
  • 总页数 194
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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