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兔生长板损伤模型在再生医学方法评估中的应用。

Rabbit Model of Physeal Injury for the Evaluation of Regenerative Medicine Approaches.

机构信息

Department of Orthopaedic Surgery, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.

Department of Orthopedics, University of Colorado Anschutz Medical Campus, Aurora, Colorado.

出版信息

Tissue Eng Part C Methods. 2019 Dec;25(12):701-710. doi: 10.1089/ten.TEC.2019.0180. Epub 2019 Oct 31.

Abstract

Physeal injuries can lead to bony repair tissue formation, known as a bony bar. This can result in growth arrest or angular deformity, which is devastating for children who have not yet reached their full height. Current clinical treatment involves resecting the bony bar and replacing it with a fat graft to prevent further bone formation and growth disturbance, but these treatments frequently fail to do so and require additional interventions. Novel treatments that could prevent bone formation but also regenerate the injured physeal cartilage and restore normal bone elongation are warranted. To test the efficacy of these treatments, animal models that emulate human physeal injury are necessary. The rabbit model of physeal injury quickly establishes a bony bar, which can then be resected to test new treatments. Although numerous rabbit models have been reported, they vary in terms of size and location of the injury, tools used to create the injury, and methods to assess the repair tissue, making comparisons between studies difficult. The study presented here provides a detailed method to create a rabbit model of proximal tibia physeal injury using a two-stage procedure. The first procedure involves unilateral removal of 25% of the physis in a 6-week-old New Zealand white rabbit. This consistently leads to a bony bar, significant limb length discrepancy, and angular deformity within 3 weeks. The second surgical procedure involves bony bar resection and treatment. In this study, we tested the implantation of a fat graft and a photopolymerizable hydrogel as a proof of concept that injectable materials could be delivered into this type of injury. At 8 weeks post-treatment, we measured limb length, tibial angle, and performed imaging and histology of the repair tissue. By providing a detailed, easy to reproduce methodology to perform the physeal injury and test novel treatments after bony bar resection, comparisons between studies can be made and facilitate translation of promising therapies toward clinical use. Impact Statement This study provides details to create a rabbit model of physeal injury that can facilitate comparisons between studies and test novel regenerative medicine approaches. Furthermore, this model mimics the human, clinical situation that requires a bony bar resection followed by treatment. In addition, identification of a suitable treatment can be seen in the correction of the growth deformity, allowing this model to facilitate the development of novel physeal cartilage regenerative medicine approaches.

摘要

骺板损伤可导致骨修复组织形成,即骨桥。这可能导致生长停滞或成角畸形,对尚未达到完全身高的儿童来说是毁灭性的。目前的临床治疗包括切除骨桥并用脂肪移植物替代,以防止进一步的骨形成和生长干扰,但这些治疗经常失败,需要额外的干预。需要有新的治疗方法来防止骨形成,但也要再生受伤的骺板软骨并恢复正常的骨伸长。为了测试这些治疗方法的疗效,需要使用模拟人类骺板损伤的动物模型。兔骺板损伤模型能快速建立骨桥,然后可以切除该骨桥来测试新的治疗方法。尽管已经报道了许多兔模型,但它们在损伤的大小和位置、用于创建损伤的工具以及评估修复组织的方法上存在差异,使得研究之间的比较变得困难。本研究提供了一种详细的方法,使用两阶段程序创建兔胫骨近端骺板损伤模型。第一阶段手术涉及在 6 周龄新西兰白兔中单侧切除 25%的骺板。这一致导致骨桥、显著的肢体长度差异和 3 周内的成角畸形。第二阶段手术涉及骨桥切除和治疗。在本研究中,我们测试了脂肪移植物和光聚合水凝胶的植入作为一种概念验证,即可将注射材料递送到这种类型的损伤中。在治疗后 8 周,我们测量了肢体长度、胫骨角度,并对修复组织进行了成像和组织学检查。通过提供一种详细、易于复制的方法来进行骺板损伤并测试骨桥切除后的新型治疗方法,可以进行研究之间的比较,并促进有前途的治疗方法向临床应用的转化。影响陈述本研究提供了创建骺板损伤兔模型的详细信息,有助于研究之间的比较,并测试新型再生医学方法。此外,该模型模拟了需要切除骨桥然后进行治疗的人类临床情况。此外,通过纠正生长畸形,可以看到合适治疗方法的确定,从而使该模型能够促进新型骺板软骨再生医学方法的发展。

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Regenerative Medicine Approaches for the Treatment of Pediatric Physeal Injuries.再生医学方法治疗儿科骺板损伤。
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