...
首页> 外文期刊>Acta biomaterialia >In vivo annular repair using high-density collagen gel seeded with annulus fibrosus cells
【24h】

In vivo annular repair using high-density collagen gel seeded with annulus fibrosus cells

机译:使用高密度胶原凝胶播种与环纤维细胞的高密度胶原凝胶的环形修复

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

ObjectiveThe aim is assessing the in vivo efficacy of annulus fibrosus (AF) cells seeded into collagen by enhancing the reparative process around annular defects and preventing further degeneration in a rat-tail model. Summary of background dataTreating disc herniation with discectomy may relieve the related symptoms but does not address the underlying pathology. The persistent annular defect may lead to re-herniation and further degeneration. We recently demonstrated that riboflavin crosslinked high-density collagen gels (HDC) can facilitate annular repair in vivo. Methods42 rats, tail disc punctured with an 18-gauge needle, were divided into 3 groups: untreated (n?=?6), injected with crosslinked HDC (n?=?18), and injected with AF cell-laden crosslinked HDC (n?=?18). Ovine AF cells were mixed with HDC gels prior to injection. X-rays and MRIs were conducted over 5?weeks, determining disc height index (DHI), nucleus pulposus (NP) size, and hydration. Histological assessments evaluated the viability of implanted cells and degree of annular repair. ResultsAlthough average DHIs of both HDC gel groups were higher than those of the puncture control group at 5?weeks, the retention of disc height, NP size and hydration at 1 and 5?weeks was significant for the cellular group compared to the punctured, and at 5?weeks to the acellular group. Histological assessment indicated that AF cell-laden HDC gels have accelerated reparative sealing compared to acellular HDC gels. ConclusionsAF cell-laden HDC gels have the ability of better repairing annular defects than acellular gels after needle puncture. Statement of SignificanceThis project addresses the compelling demand of a sufficient treatment strategy for degenerative disc disease (DDD) perpetuated by annulus fibrosus (AF) injury, a major cause of morbidity and burden to health care systems. Our study is designed to answer the question of whether injectable, photo-crosslinked, high density collagen gels can seal defects in the annulus fibrosus of rats and prevent disc degeneration. Furthermore, we investigated whether the healing of AF defects will be enhanced by the delivery of AF cells (fibrochondrocytes) to these defects.The use of cell-laden collagen gels in spine surgery holds promise for a wide array of applications, from current discectomy procedures to future nucleus pulposus reparative therapies, and our group is excited about this potential.
机译:客观的目的是评估环纤维(AF)细胞的体内疗效通过增强环形缺陷的重复过程并防止大鼠尾模型中的进一步变性。背景数据概述与椎间盘切除术的椎间盘突出症疝可以缓解相关症状,但没有解决潜在的病理学。持续的环形缺陷可能导致重新阶段和进一步变性。我们最近证明,核黄素交联的高密度胶原凝胶(HDC)可以促进体内的环形修复。方法42大鼠,用18号针刺,用18号针刺尾椎间盘分为3组:未处理(n?=Δ6),注入交联的HDC(n?=α18),并注射AF细胞交联HDC( n?=?18)。在注射之前将绵羊AF细胞与HDC凝胶混合。进行X射线和MRIS超过5?周,确定盘高指数(DHI),核浆(NP)尺寸和水合。组织学评估评估了植入细胞的活力和环形修复程度。结果虽然HDC凝胶基团的平均DHIs在5?周的刺穿对照组的平均DHIS,但与刺破的椎间盘高度,NP尺寸和水合作的保留是显着的,与刺破相比,细胞组是显着的,在5?周到的缩小群。组织学评估表明,与细胞HDC凝胶相比,AF细胞升温HDC凝胶具有加速重复密封。结论AIOSAF CELL-LADEN HDC凝胶具有在针刺后更好地修复的环形缺损的能力。重要的陈述项目涉及由环纤维(AF)损伤的退行性椎间盘疾病(DDD)的充分治疗策略的令人信服的需求,其发病率和医疗保健系统负担的主要原因。我们的研究旨在回答是否可注射光交联,高密度胶原凝胶的问题可以密封大鼠环形纤维树脂中的缺陷并防止盘变性。此外,我们研究了通过将AF细胞(纤维素胶质细胞)递送给这些缺陷来增强AF缺陷的愈合。在脊柱外科手术中使用细胞 - 载花胶原凝胶,从当前的椎间盘突出程序中占据了各种应用对于未来的髓核腐败疗法,我们的小组对这种潜力感到兴奋。

著录项

  • 来源
    《Acta biomaterialia》 |2018年第2018期|共9页
  • 作者单位

    Department of Neurological Surgery Weill Cornell Brain and Spine Institute Weill Cornell Medical;

    Department of Biomedical Engineering Cornell University;

    Department of Neurological Surgery Weill Cornell Brain and Spine Institute Weill Cornell Medical;

    Department of Neurological Surgery Weill Cornell Brain and Spine Institute Weill Cornell Medical;

    Department of Biomedical Engineering Cornell University;

    Department of Neurological Surgery Weill Cornell Brain and Spine Institute Weill Cornell Medical;

    Department of Neurological Surgery Weill Cornell Brain and Spine Institute Weill Cornell Medical;

    Department of Neurological Surgery Weill Cornell Brain and Spine Institute Weill Cornell Medical;

    Department of Neurological Surgery Weill Cornell Brain and Spine Institute Weill Cornell Medical;

    Department of Neurological Surgery Weill Cornell Brain and Spine Institute Weill Cornell Medical;

    Department of Neurological Surgery Weill Cornell Brain and Spine Institute Weill Cornell Medical;

    Department of Biomedical Engineering Cornell University;

    Department of Neurological Surgery Weill Cornell Brain and Spine Institute Weill Cornell Medical;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;
  • 关键词

    Annular repair; IVD repair; Collagen gel; AF cell implantation; Annulus fibrosus repair;

    机译:环形修复;IVD修复;胶原凝胶;AF细胞植入;环形纤维修复;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号