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超低温对皮质骨移植物的生物力学和生物学效应。

The biomechanical and biological effect of supercooling on cortical bone allograft.

机构信息

Department of Small Animal Clinical Sciences, University of Florida College of Veterinary Medicine, Gainesville, FL 32611, United States of America.

Department of Veterinary Surgery, College of Veterinary Medicine, Konkuk University, Seoul 05029, Korea.

出版信息

J Vet Sci. 2023 Nov;24(6):e79. doi: 10.4142/jvs.23183. Epub 2023 Oct 5.

Abstract

BACKGROUND

The need for a storage method capable of preserving the intrinsic properties of bones without using toxic substances has always been raised. Supercooling is a relatively recently introduced preservation method that meets this need. Supercooling refers to the phenomenon of liquid in which the temperature drops below its freezing point without solidifying or crystallizing.

OBJECTIVES

The purpose of this study was to identify the preservation efficiency and applicability of the supercooling technique as a cortical bone allograft storage modality.

METHODS

The biomechanical effects of various storage methods, including deep freezing, cryopreservation, lyophilization, glycerol preservation, and supercooling, were evaluated with the three-point banding test, axial compression test, and electron microscopy. Additionally, cortical bone allografts were applied to the radial bone defect in New Zealand White rabbits to determine the biological effects. The degree of bone union was assessed with postoperative clinical signs, radiography, micro-computed tomography, and biomechanical analysis.

RESULTS

The biomechanical properties of cortical bone grafts preserved using glycerol and supercooling method were found to be comparable to those of normal bone while also significantly stronger than deep-frozen, cryopreserved, and lyophilized bone grafts. Preclinical research performed in rabbit radial defect models revealed that supercooled and glycerol-preserved bone allografts exhibited significantly better bone union than other groups.

CONCLUSIONS

Considering the biomechanical and biological superiority, the supercooling technique could be one of the optimal preservation methods for cortical bone allografts. This study will form the basis for a novel application of supercooling as a bone material preservation technique.

摘要

背景

人们一直需要一种能够在不使用有毒物质的情况下保存骨骼固有特性的储存方法。过冷是一种相对较新的保存方法,能够满足这一需求。过冷是指液体温度降至冰点以下而不凝固或结晶的现象。

目的

本研究旨在确定过冷技术作为皮质骨同种异体移植物储存方式的保存效率和适用性。

方法

通过三点弯曲试验、轴向压缩试验和电子显微镜评估了深冷冻、冷冻保存、冻干、甘油保存和过冷等各种储存方法的生物力学效应。此外,还将皮质骨同种异体移植物应用于新西兰白兔的桡骨缺损,以确定其生物学效应。通过术后临床症状、影像学、微计算机断层扫描和生物力学分析评估骨愈合程度。

结果

发现甘油和过冷保存方法保存的皮质骨移植物的生物力学性能与正常骨相当,并且明显强于深冷冻、冷冻保存和冻干骨移植物。在兔桡骨缺损模型的临床前研究中发现,过冷和甘油保存的同种异体骨移植物的骨愈合明显优于其他组。

结论

考虑到生物力学和生物学的优越性,过冷技术可能是皮质骨同种异体移植物的最佳保存方法之一。本研究将为过冷作为骨材料保存技术的新应用奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4683/10694378/751389ca3d6c/jvs-24-e79-g001.jpg

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