Impact of NaOH based perfusion-decellularization protocol on mechanical resistance of structural bone allografts.

IF 2.8 4区 医学 Q3 CELL BIOLOGY Connective Tissue Research Pub Date : 2024-07-01 Epub Date: 2024-05-23 DOI:10.1080/03008207.2024.2356586
Robin Evrard, Maxendre Feyens, Julie Manon, Benoit Lengelé, Olivier Cartiaux, Thomas Schubert
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Abstract

Introduction: To mitigate the post-operative complication rates associated with massive bone allografts, tissue engineering techniques have been employed to decellularize entire bones through perfusion with a sequence of solvents. Mechanical assessment was performed in order to compare conventional massive bone allografts and perfusion/decellularized massive bone allografts.

Material and methods: Ten porcine femurs were included. Five were decellularized by perfusion. The remaining 5 were left untreated as the "control" group. Biomechanical testing was conducted on each bone, encompassing five different assessments: screw pull-out, 3-points bending, torsion, compression and Vickers indentation.

Results: Under the experimental conditions of this study, all five destructive tested variables (maximum force until screw pull-out, maximum elongation until screw pull-out, energy to pull out the screw, fracture resistance in flexion and maximum constrain of compression) were statistically significantly superior in the control group. All seven nondestructive variables (Young's modulus in flexion, Young's modulus in shear stress, Young's modulus in compression, Elastic conventional limit in compression, lengthening to rupture in compression, resilience in compression and Vickers Hardness) showed no significant difference.

Discussion: Descriptive statistical results suggest a tendency for the biomechanical characteristics of decellularized bone to decrease compared with the control group. However, statistical inferences demonstrated a slight significant superiority of the control group with destructive mechanical stresses. Nondestructive mechanical tests (within the elastic phase of Young's modulus) were not significantly different.

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基于NaOH的灌注-脱细胞方案对结构骨异体移植物机械阻力的影响
简介:为了降低与大块骨异体移植相关的术后并发症发生率,人们采用了组织工程技术,通过一系列溶剂灌注使整个骨骼脱细胞。为了比较传统的大块骨异体移植和灌注/脱细胞大块骨异体移植,我们进行了机械评估:材料和方法:共纳入 10 个猪股骨。材料:共纳入 10 块猪股骨,其中 5 块通过灌注脱细胞。其余 5 个未经处理,作为 "对照 "组。对每块骨头进行了生物力学测试,包括五种不同的评估:螺钉拔出、三点弯曲、扭转、压缩和维氏压痕:在本研究的实验条件下,所有五个破坏性测试变量(螺钉拔出前的最大力、螺钉拔出前的最大伸长率、拔出螺钉的能量、屈曲时的断裂阻力和压缩时的最大约束)在统计学上都明显优于对照组。所有七个非破坏性变量(弯曲时的杨氏模量、剪切应力时的杨氏模量、压缩时的杨氏模量、压缩时的弹性常规极限、压缩时的拉长至断裂、压缩时的回弹性和维氏硬度)均无明显差异:描述性统计结果表明,与对照组相比,脱细胞骨的生物力学特性有下降趋势。然而,统计推论表明,对照组在破坏性机械应力方面略胜一筹。非破坏性机械测试(在杨氏模量的弹性阶段内)没有明显差异。
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来源期刊
Connective Tissue Research
Connective Tissue Research 生物-细胞生物学
CiteScore
6.60
自引率
3.40%
发文量
37
审稿时长
2 months
期刊介绍: The aim of Connective Tissue Research is to present original and significant research in all basic areas of connective tissue and matrix biology. The journal also provides topical reviews and, on occasion, the proceedings of conferences in areas of special interest at which original work is presented. The journal supports an interdisciplinary approach; we present a variety of perspectives from different disciplines, including Biochemistry Cell and Molecular Biology Immunology Structural Biology Biophysics Biomechanics Regenerative Medicine The interests of the Editorial Board are to understand, mechanistically, the structure-function relationships in connective tissue extracellular matrix, and its associated cells, through interpretation of sophisticated experimentation using state-of-the-art technologies that include molecular genetics, imaging, immunology, biomechanics and tissue engineering.
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