首页> 外文期刊>Osteoarthritis and cartilage >Chitosan-glycerol phosphate/blood implants elicit hyaline cartilage repair integrated with porous subchondral bone in microdrilled rabbit defects.
【24h】

Chitosan-glycerol phosphate/blood implants elicit hyaline cartilage repair integrated with porous subchondral bone in microdrilled rabbit defects.

机译:壳聚糖-磷酸甘油/血液植入物在微钻孔兔缺损中引起与透明软骨下骨整合的透明软骨修复。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

OBJECTIVE: We have previously shown that microfractured ovine defects are repaired with more hyaline cartilage when the defect is treated with in situ-solidified implants of chitosan-glycerol phosphate (chitosan-GP) mixed with autologous whole blood. The objectives of this study were (1) to characterize chitosan-GP/blood clots in vitro, and (2) to develop a rabbit marrow stimulation model in order to determine the effects of the chitosan-GP/blood implant and of debridement on the formation of incipient cartilage repair tissue. METHODS: Blood clots were characterized by histology and in vitro clot retraction tests. Bilateral 3.5 x 4 mm trochlear defects debrided into the calcified layer were pierced with four microdrill holes and filled with a chitosan-GP/blood implant or allowed to bleed freely as a control. At 1 day post-surgery, initial defects were characterized by histomorphometry (n=3). After 8 weeks of repair, osteochondral repair tissues between or through the drill holes were evaluated by histology, histomorphometry, collagen type II expression, and stereology (n=16). RESULTS: Chitosan-GP solutions structurally stabilized the blood clots by inhibiting clot retraction. Treatment of drilled defects with chitosan-GP/blood clots led to the formation of a more integrated and hyaline repair tissue above a more porous and vascularized subchondral bone plate compared to drilling alone. Correlation analysis of repair tissue between the drill holes revealed that the absence of calcified cartilage and the presence of a porous subchondral bone plate were predictors of greater repair tissue integration with subchondral bone (P<0.005), and of a higher total O'Driscoll score (P<0.005 and P<0.01, respectively). CONCLUSIONS: Chitosan-GP/blood implants applied in conjunction with drilling, compared to drilling alone, elicited a more hyaline and integrated repair tissue associated with a porous subchondral bone replete with blood vessels. Concomitant regeneration of a vascularized bone plate during cartilage repair could provide progenitors, anabolic factors and nutrients that aid in the formation of hyaline cartilage.
机译:目的:我们以前已经证明,当使用原位凝固的壳聚糖-甘油磷酸酯(chitosan-GP)和自体全血混合原位凝固植入物治疗缺损的绵羊时,可以用更多的透明软骨修复羊缺损。这项研究的目的是(1)体外表征壳聚糖-GP /血凝块,以及(2)建立兔骨髓刺激模型,以确定壳聚糖-GP /血液植入物和清创术对小鼠的影响。初期软骨修复组织的形成。方法:通过组织学和体外凝集回缩试验对血凝块进行表征。用四个微孔打孔清创进入钙化层的双侧3.5 x 4 mm滑车缺陷,并用壳聚糖-GP /血液植入物填充或作为对照自由放血。术后1天,通过组织形态计量学(n = 3)表征初始缺陷。修复8周后,通过组织学,组织形态计量学,II型胶原蛋白表达和立体学评估n个钻孔之间或穿过钻孔的骨软骨修复组织(n = 16)。结果:壳聚糖-GP溶液通过抑制血块回缩而在结构上稳定了血块。与单独钻孔相比,用脱乙酰壳多糖-GP /血凝块治疗钻孔缺损导致在多孔性和血管化软骨下骨板上方形成更完整,更透明的修复组织。钻孔之间的修复组织的相关性分析表明,钙化软骨的缺乏和软骨下多孔骨板的存在是与软骨下骨更好的修复组织整合的预测因素(P <0.005),并且O'Driscoll总评分更高(分别为P <0.005和P <0.01)。结论:与单独钻孔相比,将壳聚糖-GP /血液植入物与钻孔结合使用可引起更多的透明质酸和整合的修复组织,与充满血管的多孔软骨下骨相关。软骨修复过程中伴随血管化的骨板的再生可以提供祖先,合成代谢因子和营养物质,帮助形成透明软骨。

著录项

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