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冻干脱细胞真皮基质移植物:复水对物理、化学和力学性能的影响。

Freeze-dried acellular dermal matrix graft: effects of rehydration on physical, chemical, and mechanical properties.

作者信息

Bottino Marco C, Jose Moncy V, Thomas Vinoy, Dean Derrick R, Janowski Gregg M

机构信息

Department of Materials Science and Engineering, University of Alabama at Birmingham, BEC 254, 1530 3rd Avenue South, Birmingham, AL 35294-4461, USA.

出版信息

Dent Mater. 2009 Sep;25(9):1109-15. doi: 10.1016/j.dental.2009.03.007. Epub 2009 Apr 24.

Abstract

OBJECTIVES

To test the effect of rehydration time over the range prescribed in the manufacturer's protocol on (1) the biomechanical properties and on (2) the recovery and stabilization of the collagenous matrix of AlloDerm.

METHODS

A sterile dish containing warm saline solution was prepared, and samples rehydrated for 5 min. Subsequently, three other dishes with the solution were prepared and samples assigned into three groups according to the total rehydration time: 10 min (G1), 20 min (G2), and 40 min (G3). Uni-axial tensile testing was used to assess the biomechanical properties of the different groups and the control (dry condition). Physico-chemical properties were examined by Fourier transform infrared spectroscopy (FT-IR), and differential scanning calorimetry (DSC) as a function of rehydration time.

RESULTS

ANOVA revealed a significant change in tensile strength (p=0.0269) and in elastic modulus (p=0.0306) for AlloDerm following different rehydration times. The lowest tensile strength was in the dry condition, whereas the highest was achieved after a 40 min rehydration. The shortest rehydration periods did not result in a statistically significant (p>0.05) change in elastic modulus. However, after 40 min the elastic modulus increased significantly when compared to the shortest periods. FT-IR confirmed the protein backbone recovery of the graft matrix after rehydration. DSC scans of rehydrated samples showed visible shifts in the denaturation temperature to higher values compared to as-received sample (dry) suggesting stronger polymer-water bridge formation, supporting the increase in the biomechanical properties.

SIGNIFICANCE

The current study suggests that there are major changes on the biomechanical properties of the collagenous graft as rehydration time increases, which were also structurally confirmed by the physico-chemical analyses. Clinicians must be aware that the rehydration times of the manufacturer's protocol result in a significant range in mechanical and physico-chemical properties. Therefore, a rehydration time of at least 20 min guarantees not only better handling and mechanical properties but, most importantly, supplies a material that closely resembles the natural tissue.

摘要

目的

测试在制造商方案规定的时间范围内复水时间对(1)生物力学性能以及(2)同种异体真皮胶原基质的恢复和稳定性的影响。

方法

准备一个装有温盐水溶液的无菌培养皿,将样本复水5分钟。随后,准备另外三个装有该溶液的培养皿,并根据总复水时间将样本分为三组:10分钟(G1)、20分钟(G2)和40分钟(G3)。采用单轴拉伸试验评估不同组以及对照组(干燥状态)的生物力学性能。通过傅里叶变换红外光谱(FT-IR)和差示扫描量热法(DSC)研究复水时间对物理化学性质的影响。

结果

方差分析显示,不同复水时间后同种异体真皮的拉伸强度(p = 0.0269)和弹性模量(p = 0.0306)有显著变化。干燥状态下的拉伸强度最低,而复水40分钟后达到最高。最短的复水时间并未导致弹性模量发生统计学显著变化(p>0.05)。然而,与最短复水时间相比,40分钟后弹性模量显著增加。FT-IR证实复水后移植基质的蛋白质主链得以恢复。复水样本的DSC扫描显示,与收到的样本(干燥)相比,变性温度明显向更高值偏移,表明形成了更强的聚合物-水桥,这支持了生物力学性能的增加。

意义

当前研究表明,随着复水时间增加,胶原移植物的生物力学性能会发生重大变化,物理化学分析在结构上也证实了这一点。临床医生必须意识到,制造商方案中的复水时间会导致机械和物理化学性质出现显著差异。因此,至少20分钟的复水时间不仅能保证更好的操作性和机械性能,最重要的是,能提供一种与天然组织非常相似的材料。

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