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Femoral bone defect healing using two novel biocompatible degradable materials

机译:使用两种新型生物相容性可降解材料的股骨骨缺损愈合

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摘要

This study was conducted as an in vivo experiment in adult miniature pigs with the aim to test two new biomaterials. An iatrogenic defect was made into the central femoral diaphysis in the experimental animals and subsequently fixated by bridging plate osteosynthesis. Into the defect we implanted a cancellous autograft (control group), a pasty injectable scaffold (EXP A), and a porous 3D cylinder (EXP B). Radiological examination was performed in all animals at 0, 10, 20, 30 weeks after surgical procedure and histological assessment was performed. In the newly formed bone the osteoblastic activity was monitored. In terms of radiology, the most effective method was observed in the control group (completely healed 100%) compared to experimental groups EXP A (70.0%) and EXP B (62.5%). Histological assessment showed a higher cell count in the place of bone defect in the control group compared to experimental groups. Between the experimental groups, a higher count of bone marrow cells was found in group EXP B. Both newly developed biomaterials seem to be suitable as replacements for large bone defects, having good workability and applicability. However, compared to the control group treated with a cancellous autograft, the newly formed bone did not reach the same number of cells settling in and in some cases, full radiological healing was not reached. Nevertheless, the material was found to be grown into the original bone in all cases within the experimental groups. The new biomaterials have a great potential as a substitute in the treatment of large bone defects.
机译:本研究作为成人微型猪的体内实验进行,目的是测试两种新的生物材料。对实验动物中的股骨副骨题进行了一种原子能缺陷,随后通过桥板骨合成固定。进入缺陷我们植入消质自体移植(对照组),糊状可注射支架(EXP A)和多孔3D汽缸(EXP B)。在外科手术和组织学评估后30周的所有动物在0,10,20,20的动物中进行放射检查。在新形成的骨中,监测成骨细胞活性。在放射学方面,与实验组Exp A(70.0%)和Exp B(62.5%)相比,在对照组(完全愈合100%)中观察到最有效的方法。与实验组相比,组织学评估显示对照组中骨缺损的较高细胞计数。在实验组之间,在EXP B组中发现了较高计数的骨髓细胞。新开发的生物材料似乎是适合于大骨缺陷的替代品,具有良好的可加工性和适用性。然而,与用残空自体移植治疗的对照组相比,新形成的骨骼没有达到同样数量的细胞沉降,在某些情况下,没有达到全部放射愈合。然而,在实验组内的所有情况下,发现该材料被生长在原始骨骼中。新的生物材料具有较大的潜力作为替代大骨缺陷的替代品。

著录项

  • 来源
    《Acta Veterinaria Brno》 |2020年第2期|共9页
  • 作者单位

    Univ Vet &

    Pharmaceut Sci Brno Fac Vet Med Small Anim Clin Dept Surg &

    Orthopaed Palackeho Tr 1946-1 Brno 61242 Czech Republic;

    Univ Vet &

    Pharmaceut Sci Brno Fac Vet Med Small Anim Clin Dept Surg &

    Orthopaed Palackeho Tr 1946-1 Brno 61242 Czech Republic;

    Univ Vet &

    Pharmaceut Sci Brno Fac Vet Med Small Anim Clin Dept Diagnost Imaging Brno Czech Republic;

    Univ Vet &

    Pharmaceut Sci Brno Fac Vet Med Dept Pathol Morphol &

    Parasitol Brno Czech Republic;

    Univ Vet &

    Pharmaceut Sci Brno Fac Vet Med Small Anim Clin Dept Med Brno Czech Republic;

    Brno Univ Technol Adv Biomat Grp CEITEC Cent European Inst Technol Brno Czech Republic;

    Univ Vet &

    Pharmaceut Sci Brno Fac Vet Med Small Anim Clin Dept Surg &

    Orthopaed Palackeho Tr 1946-1 Brno 61242 Czech Republic;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 动物医学(兽医学);
  • 关键词

    Pig; biomaterial; scaffold; animal model;

    机译:猪;生物材料;脚手架;动物模型;
  • 入库时间 2022-08-20 00:30:28

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