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首页> 外文期刊>Journal of materials science >Novel alginate biphasic scaffold for osteochondral regeneration: an in vivo evaluation in rabbit and sheep models
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Novel alginate biphasic scaffold for osteochondral regeneration: an in vivo evaluation in rabbit and sheep models

机译:用于骨软骨再生的新型藻酸盐双相支架:在兔和绵羊模型中的体内评估

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摘要

Current therapeutic strategies for osteochondral restoration showed a limited regenerative potential. In fact, to promote the growth of articular cartilage and subchondral bone is a real challenge, due to the different functional and anatomical properties. To this purpose, alginate is a promising biomaterial for a scaffold-based approach, claiming optimal biocompatibility and good chondrogenic potential. A previously developed mineralized alginate scaffold was investigated in terms of the ability to support osteochondral regeneration both in a large and medium size animal model. The results were evaluated macroscopically and by microtomography, histology, histomorphometry, and immunohistochemical analysis. No evidence of adverse or inflammatory reactions was observed in both models, but limited subchondral bone formation was present, together with a slow scaffold resorption time.
机译:当前用于骨软骨修复的治疗策略显示出有限的再生潜力。实际上,由于功能和解剖学特性的不同,促进关节软骨和软骨下骨的生长是一项真正的挑战。为此,藻酸盐是一种有前途的生物材料,用于基于支架的方法,声称具有最佳的生物相容性和良好的成软骨潜力。在大型和中型动物模型中,就支持骨软骨再生的能力而言,对先前开发的矿化藻酸盐支架进行了研究。宏观,微观,组织学,组织形态学和免疫组化分析对结果进行了评估。在两个模型中均未观察到不良或炎症反应的证据,但软骨下骨形成有限,支架吸收时间缓慢。

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  • 来源
    《Journal of materials science 》 |2018年第6期| 74.1-74.13| 共13页
  • 作者单位

    Rizzoli Orthopaed Inst, Rizzoli RIT Dept, Nano Biotechnol NABI Lab, Via Barbiano 1-10, I-40136 Bologna, Italy;

    Rizzoli Orthopaed Inst, Rizzoli RIT Dept, Nano Biotechnol NABI Lab, Via Barbiano 1-10, I-40136 Bologna, Italy;

    Tech Univ Dresden, Joint & Soft Tissue Res Univ Hosp, Ctr Translat Bone, Fetscherstr 73, D-01307 Dresden, Germany;

    Tech Univ Dresden, Joint & Soft Tissue Res Univ Hosp, Ctr Translat Bone, Fetscherstr 73, D-01307 Dresden, Germany;

    Rizzoli Orthopaed Inst, Rizzoli RIT Dept, Lab Biocompatibil Innovat Technol & Adv Therapies, Via Barbiano 1-10, I-40136 Bologna, Italy;

    Humanitas Clin Inst, Orthopaed Div 3, Knee Joint Reconstruct Ctr, Via Alessandro Manzoni 56, Milan, Italy;

    Rizzoli Orthopaed Inst, Rizzoli RIT Dept, Lab Biocompatibil Innovat Technol & Adv Therapies, Via Barbiano 1-10, I-40136 Bologna, Italy;

    Rizzoli Orthopaed Inst, Rizzoli RIT Dept, Nano Biotechnol NABI Lab, Via Barbiano 1-10, I-40136 Bologna, Italy;

    Rizzoli Orthopaed Inst, Rizzoli RIT Dept, Lab Biocompatibil Innovat Technol & Adv Therapies, Via Barbiano 1-10, I-40136 Bologna, Italy;

    Rizzoli Orthopaed Inst, Rizzoli RIT Dept, Lab Biocompatibil Innovat Technol & Adv Therapies, Via Barbiano 1-10, I-40136 Bologna, Italy;

    Tech Univ Dresden, Joint & Soft Tissue Res Univ Hosp, Ctr Translat Bone, Fetscherstr 73, D-01307 Dresden, Germany;

    Humanitas Clin Inst, Orthopaed Div 3, Knee Joint Reconstruct Ctr, Via Alessandro Manzoni 56, Milan, Italy;

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