4.8 Article

Biomimetically Ornamented Rapid Prototyping Fabrication of an Apatite-Collagen-Polycaprolactone Composite Construct with Nano-Micro-Macro Hierarchical Structure for Large Bone Defect Treatment

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 7, 期 47, 页码 26244-26256

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.5b08534

关键词

rapid prototyping technology; biomimetically functionalization; hierarchical structure; bone graft substitute; bone defect treatment; osteoconduction; osteointegration; bone regeneration

资金

  1. National Natural Science Foundation of China [81371964, 81572137]
  2. Program for Professor of Special Appointment (Eastern Scholar) at Shanghai Institutions of Higher Learning [1220000187]
  3. National Young Thousand-Talent Scheme, Shanghai Rising-Star Program [13QA1402400]
  4. Shanghai Jiao Tong University Medicine-Engineering Integrated Research Grant [YG2012MS44]
  5. Shanghai Municipal Science and Technology Commission program [124119b0102]

向作者/读者索取更多资源

Biomaterial-based bone graft substitute with favorable mechanical and biological properties could be used as an alternative to autograft for large defect treatment. Here, an apatite collagen polycaprolactone (Ap-Col-PCL) composite construct was developed with unique nano micro macro hierarchical architectures by combining rapid prototyping (RP) fabrication technology and a 3D functionalization strategy. Macroporous PCL framework was fabricated using RP technology, then functionalized by collagen incorporation and biomimetic deposition. Ap-Col-PCL composite construct was characterized with hierarchical architectures of a nanoscale (similar to 100 nm thickness and similar to 1 mu m length) platelike apatite coating on the microporous (126 +/- 18 mu m) collagen networks, which homogeneously filled the macroporous (similar to 4000 mu m) PCL frameworks and possessed a favorable hydrophilic property and compressive modulus (68.75 +/- 3.39 MPa) similar to that of cancellous bone. Moreover, in vitro cell culture assay and in vivo critical-sized bone defect implantation demonstrated that the Ap-Col-PCL construct could not only significantly increase the cell adhesion capability (2.0-fold) and promote faster cell proliferation but also successfully bridge the segmental long bone defect within 12 weeks with much more bone regeneration (5.2-fold), better osteointegration (7.2-fold), and a faster new bone deposition rate (2.9-fold). Our study demonstrated that biomimetically ornamented Ap-Col-PCL constructs exhibit a favorable mechanical property, more bone tissue ingrowth, and better osteointegration capability as an effective bone graft substitute for critical-sized bone defect treatment; meanwhile, it can also harness the advantages of RP technology, in particular, facilitating the customization of the shape and size of implants according to medical images during clinical application.

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