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兔膝关节移植联合手术血管生成——一种新的实验模型。

Knee joint transplantation combined with surgical angiogenesis in rabbits--a new experimental model.

机构信息

Department of Orthopedic Surgery, Microsurgery Research Laboratory, Mayo Clinic, Rochester, MN 55905, USA.

出版信息

Microsurgery. 2012 Feb;32(2):118-27. doi: 10.1002/micr.20946. Epub 2011 Nov 24.

Abstract

PURPOSE

We have previously described a means to maintain bone allotransplant viability, without long-term immune modulation, replacing allogenic bone vasculature with autogenous vessels. A rabbit model for whole knee joint transplantation was developed and tested using the same methodology, initially as an autotransplant.

MATERIALS/METHODS: Knee joints of eight New Zealand White rabbits were elevated on a popliteal vessel pedicle to evaluate limb viability in a nonsurvival study. Ten additional joints were elevated and replaced orthotopically in a fashion identical to allotransplantation, obviating only microsurgical repairs and immunosuppression. A superficial inferior epigastric facial (SIEF) flap and a saphenous arteriovenous (AV) bundle were introduced into the femur and tibia respectively, generating a neoangiogenic bone circulation. In allogenic transplantation, this step maintains viability after cessation of immunosuppression. Sixteen weeks later, X-rays, microangiography, histology, histomorphometry, and biomechanical analysis were performed.

RESULTS

Limb viability was preserved in the initial eight animals. Both soft tissue and bone healing occurred in 10 orthotopic transplants. Surgical angiogenesis from the SIEF flap and AV bundle was always present. Bone and joint viability was maintained, with demonstrable new bone formation. Bone strength was less than the opposite side. Arthrosis and joint contractures were frequent.

CONCLUSION

We have developed a rabbit knee joint model and evaluation methods suitable for subsequent studies of whole joint allotransplantation.

摘要

目的

我们之前描述了一种方法,可以在不进行长期免疫调节的情况下维持同种异体骨移植物的活力,即用自体血管替代同种异体骨血管。我们开发并使用相同的方法测试了一种兔全膝关节移植模型,最初是作为自体移植。

材料/方法:将 8 只新西兰白兔的膝关节抬高到腘血管蒂上,以评估非生存研究中的肢体存活率。另外 10 个膝关节被抬高并以与同种异体移植相同的方式原位替代,仅避免了显微修复和免疫抑制。将腹壁下浅动脉皮瓣(SIEF)和隐静脉动静脉(AV)束分别引入股骨和胫骨,从而产生新的血管生成骨循环。在同种异体移植中,这一步骤在停止免疫抑制后维持移植物的活力。16 周后,进行 X 射线、微血管造影、组织学、组织形态计量学和生物力学分析。

结果

最初的 8 只动物的肢体存活率得到了保留。10 例同种异体移植中均发生了软组织和骨愈合。SIEF 皮瓣和 AV 束的手术血管生成始终存在。骨和关节存活良好,有明显的新骨形成。骨强度低于对侧。骨关节炎和关节挛缩很常见。

结论

我们已经开发出一种适合后续全关节同种异体移植研究的兔膝关节模型和评估方法。

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