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首页> 外文期刊>Journal of materials science >Design of novel three-phase PCL/TZ-HA biomaterials for use in bone regeneration applications
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Design of novel three-phase PCL/TZ-HA biomaterials for use in bone regeneration applications

机译:用于骨再生应用的新型三相PCL / TZ-HA生物材料的设计

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摘要

The design of bioactive scaffold materials able to guide cellular processes involved in new-tissue genesis is key determinant in bone tissue engineering. The aim of this study was the design and characterization of novel multi-phase biomaterials to be processed for the fabrication of 3D porous scaffolds able to provide a temporary bio-compatible substrate for mesenchymal stem cells (MSCs) adhesion, proliferation and osteogenic differentiation. The biomaterials were prepared by blending poly(e-caprolac-tone) (PCL) with thermoplastic zein (TZ), a thermoplastic material obtained by de novo thermoplasticization of zein. Furthermore, to bioactivate the scaffolds, microparticles of osteoconductive hydroxyapatite (HA) were dispersed within the organic phases. Results demonstrated that materials and formulations strongly affected the micro-structural properties and hydrophilicity of the scaffolds and, therefore, had a pivotal role in guiding cell/scaffold interaction. In particular, if compared to neat PCL, PCL-HA composite and PCL/TZ blend, the three-phase PCL/ TZ-HA showed improved MSCs adhesion, proliferation and osteogenic differentiation capability, thus demonstrating potential for bone regeneration.
机译:能够指导涉及新组织发生的细胞过程的生物活性支架材料的设计是骨组织工程中的关键决定因素。这项研究的目的是设计和表征新型多相生物材料,以制备3D多孔支架,从而为间充质干细胞(MSC)粘附,增殖和成骨分化提供临时的生物相容性基质。生物材料是通过将聚(ε-己酸单酯)(PCL)与热塑性玉米醇溶蛋白(TZ)掺混而制备的,热塑性玉米醇溶蛋白是一种通过玉米醇溶蛋白从头进行热塑而获得的热塑性材料。此外,为了生物活化支架,将骨导电性羟基磷灰石(HA)的微粒分散在有机相中。结果表明,材料和制剂强烈影响支架的微观结构性质和亲水性,因此在指导细胞/支架相互作用中起关键作用。特别是,如果与纯净PCL,PCL-HA复合材料和PCL / TZ共混物相比,三相PCL / TZ-HA显示出改善的MSCs粘附,增殖和成骨分化能力,从而证明了骨再生的潜力。

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  • 来源
    《Journal of materials science 》 |2010年第9期| p.2569-2581| 共13页
  • 作者单位

    Interdisciplinary Research Centre on Biomaterials (CRIB) and Italian Institute of Technology (IIT), Piazzale Tecchio 80, 80125 Naples, Italy Institute of Composite and Biomedical Materials, National Research Council (IMCB-CNR), Piazzale Tecchio 80, 80125 Naples, Italy;

    rnInstitute of Composite and Biomedical Materials, National Research Council (IMCB-CNR), Piazzale Tecchio 80, 80125 Naples, Italy;

    rnDepartment of Materials and Production Engineering, University of Naples Federico II, Piazzale Tecchio 80, 80125 Naples, Italy;

    rnInterdisciplinary Research Centre on Biomaterials (CRIB) and Italian Institute of Technology (IIT), Piazzale Tecchio 80, 80125 Naples, Italy Department of Materials and Production Engineering, University of Naples Federico II, Piazzale Tecchio 80, 80125 Naples, Italy;

    rnStem Cells Laboratory, Bambino Gesu Children's Hospital, Scientific Institute (IRCCS), Rome, Italy;

    rnDepartment of Comparative Biomedical Science, University of Teramo, Teramo, Italy;

    rnIRCCS-CSS San Giovanni Rotondo and CSS Mendel Institute, Rome, Italy Department of Experimental Medicine and Pathology, University 'La Sapienza', Rome, Italy;

    rnIRCCS-CSS San Giovanni Rotondo and CSS Mendel Institute, Rome, Italy Department of Experimental Medicine and Pathology, University 'La Sapienza', Rome, Italy;

    rnNeurosurgery, Bambino Gesu Children's Hospital, Scientific Institute (IRCCS), Rome, Italy;

    rnNeurosurgery, Bambino Gesu Children's Hospital, Scientific Institute (IRCCS), Rome, Italy;

    rnStem Cells Laboratory, Bambino Gesu Children's Hospital, Scientific Institute (IRCCS), Rome, Italy;

    rnNeurosurgery, Bambino Gesu Children's Hospital, Scientific Institute (IRCCS), Rome, Italy;

    rnDepartment of Experimental Medicine, University of L'Aquila, L'Aquila, Italy;

    rnInstitute of Composite and Biomedical Materials, National Research Council (IMCB-CNR), Piazzale Tecchio 80, 80125 Naples, Italy;

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