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The enhanced osteogenesis and osteointegration of 3-DP PCL scaffolds via structural and functional optimization using collagen networks

机译:使用胶原块网络通过结构和功能优化增强3-DP PCL支架的骨肉和骨折

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摘要

Optimal balance between biological activity and mechanical stability should be meticulously considered during scaffold design for bone tissue engineering applications. To fabricate an individualized construct with biomechanical and biological functionality for bone tissue regeneration, a polycaprolactone-collagen (PCL-COL) composite construct was developed through the combination of three-dimensional printing (3-DP) technology and biomimetic collagen matrix incorporation, with a 3-DP PCL framework maintaining the mechanical stability and a porous collagen matrix improving the biological activity. The results indicate that the compressive modulus of the composite constructs increased synergistically (over 40 MPa), providing sufficient mechanical support during new bone formation. On the other hand, the collagen matrix with a micro-porous architecture structurally increased scaffold areas and provided cellular adhesion sites, allowing for the functional construction of a favorable 3D microenvironment for BMSC adhesion, proliferation and extracellular matrix production. Moreover, critical-sized long bone defect (CSD) implantation demonstrated that the optimized composite constructs could promote bone tissue regeneration (5.5-fold) and bone-material osteointegration (4.7-fold), and decrease fibrosis encapsulation, compared to pristine PCL. The results indicate that these biomimetically ornamented PCL-COL constructs exhibit favorable mechanical properties and biological functionality, demonstrating great potential as an effective bone graft substitute for bone defect treatment. Meanwhile, they can also harness the advantages of 3-DP technology and a collagen-based functionalized strategy, facilitating the creation of customized and functional PCL-COL constructs for clinical translation.
机译:在骨组织工程应用的支架设计期间,应暗中考虑生物活性与机械稳定性之间的最佳平衡。为了用生物力学和生物学功能制造具有生物力学和生物学功能的个体化构建体,通过三维印刷(3-DP)技术和仿生胶原基质掺入,通过三维印刷(3-DP)技术和仿生胶原蛋白掺入3-DP PCL框架保持机械稳定性和多孔胶原基质改善生物活性。结果表明,复合构建体的压缩模量增加了协同增长(超过40MPa),在新骨形成期间提供足够的机械载体。另一方面,胶原蛋白基质具有微多孔结构的结构上增加的支架区域并提供了蜂窝粘附位点,允许BMSC粘附,增殖和细胞外基质产生的有利3D微环境的功能构造。此外,与原始PCL相比,临界复合构建体证明优化的复合构建体可以促进骨组织再生(5.5倍)和骨质骨骨(4.7倍),降低纤维化包封。结果表明,这些仿古地装饰的PCL-CL-CL-CL-CL-CL构建体表现出有利的机械性能和生物学功能,证明了骨缺陷治疗的有效骨移植物的巨大潜力。同时,它们还可以利用3-DP技术的优点和基于胶原蛋白的功能化策略,促进为临床翻译的定制和功能性PCL-COL构建体的创建。

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  • 来源
    《RSC Advances 》 |2018年第56期| 共13页
  • 作者单位

    Shanghai Jiao Tong Univ Sch Med Coll Stomatol Shanghai Key Lab Stomatol Dept Oral &

    Maxillofacial Head &

    Neck Oncol Shang 639 Zhizaoju Rd Shanghai 200011 Peoples R China;

    Chinese Acad Sci Shanghai Inst Ceram State Key Lab High Performance Ceram &

    Superfine 1295 Dingxi Rd Shanghai 200050 Peoples R China;

    Fu Dan Univ Dept Oral Implantol Shanghai Stomatol Hosp 356 Beijing East Rd Shanghai 200001 Peoples R China;

    Shanghai Jiao Tong Univ Sch Med Coll Stomatol Shanghai Key Lab Stomatol Dept Oral &

    Maxillofacial Head &

    Neck Oncol Shang 639 Zhizaoju Rd Shanghai 200011 Peoples R China;

    Shanghai Jiao Tong Univ Sch Med Coll Stomatol Shanghai Key Lab Stomatol Dept Oral &

    Maxillofacial Head &

    Neck Oncol Shang 639 Zhizaoju Rd Shanghai 200011 Peoples R China;

    Shanghai Jiao Tong Univ Sch Med Coll Stomatol Shanghai Key Lab Stomatol Dept Oral &

    Maxillofacial Head &

    Neck Oncol Shang 639 Zhizaoju Rd Shanghai 200011 Peoples R China;

    Shanghai Jiao Tong Univ Sch Med Peoples Hosp 9 Shanghai Key Lab Tissue Engn 639 Zhizaoju Rd Shanghai 200011 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
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