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不同补液方案对不同脱细胞组织基质生物力学特性的影响。

The influence of various rehydration protocols on biomechanical properties of different acellular tissue matrices.

作者信息

Kasaj Adrian, Levin Liran, Stratul Stefan-Ioan, Götz Hermann, Schlee Markus, Rütters Constantin B, Konerding Moritz A, Ackermann Maximilian, Willershausen Brita, Pabst Andreas M

机构信息

Department of Operative Dentistry and Periodontology, University Medical Center, Augustusplatz 2, 55131, Mainz, Germany.

Division of Periodontology, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Canada.

出版信息

Clin Oral Investig. 2016 Jul;20(6):1303-15. doi: 10.1007/s00784-015-1614-1. Epub 2015 Oct 5.

Abstract

OBJECTIVES

This study evaluated the influence of different rehydration media and time periods on biomechanical and structural properties of different acellular collagen matrices (ACMs).

MATERIALS AND METHODS

Specimens of three ACMs (mucoderm®, Mucograft®, Dynamatrix®) were rehydrated in saline solution (SS) or human blood for different time periods (5-60 min). ACMs under dry condition served as controls. Biomechanical properties of the ACMs after different rehydration periods were determined by means of tensile testing. ACMs' properties were further characterized using Fourier-transform-infrared spectroscopy (FTIR) and differential scanning calorimetry (DSC).

RESULTS

At dry conditions, mucoderm® presented the highest tensile strength (TS) and Dynamatrix® showed the maximum elastic modulus (EM; p each ≤0.036). Rehydration in SS and blood resulted in significant TS changes of mucoderm® (p each ≤0.05). Concering EM, mucograft® showed significantly decreased values after rehydration in SS compared to Dynamatrix® and mucoderm® after 10 min (p each ≤0.024). mucoderm® hydrated for 5 min in blood displayed nearly double TS and a significantly increased EM after 60 min (p = 0.043) compared to rehydration in SS. TS and EM values of Dynamatrix® and Mucograft® were not altered following rehydration in blood versus SS (p each ≥0.053). FTIR analysis confirmed the recovery of the graft protein backbone with increased rehydration in all samples. DSC measurements revealed that tissue hydration decreased thermal stability of the investigated ACMs.

CONCLUSION

Our findings demonstrated that the rehydration protocol affects the biomechanical properties of ACMs.

CLINICAL RELEVANCE

Clinicians should be aware of altered handling and mechanical properties of ACMs following different rehydration protocols.

摘要

目的

本研究评估了不同复水介质和时间段对不同脱细胞胶原基质(ACM)生物力学和结构特性的影响。

材料与方法

三种ACM(mucoderm®、Mucograft®、Dynamatrix®)样本在盐溶液(SS)或人血中复水不同时间段(5 - 60分钟)。干燥条件下的ACM作为对照。通过拉伸试验测定不同复水时间段后ACM的生物力学特性。使用傅里叶变换红外光谱(FTIR)和差示扫描量热法(DSC)进一步表征ACM的特性。

结果

在干燥条件下,mucoderm®呈现出最高的拉伸强度(TS),Dynamatrix®显示出最大的弹性模量(EM;每组p≤0.036)。在SS和血液中复水导致mucoderm®的TS发生显著变化(每组p≤0.05)。关于EM,与Dynamatrix®和mucoderm®相比,Mucograft®在SS中复水10分钟后显示出显著降低的值(每组p≤0.024)。与在SS中复水相比,mucoderm®在血液中复水5分钟后,60分钟时TS几乎翻倍且EM显著增加(p = 0.043)。Dynamatrix®和Mucograft®在血液与SS中复水后的TS和EM值未发生改变(每组p≥0.053)。FTIR分析证实所有样本中随着复水增加,移植蛋白主链得以恢复。DSC测量表明组织水合作用降低了所研究ACM的热稳定性。

结论

我们的研究结果表明复水方案会影响ACM的生物力学特性。

临床意义

临床医生应意识到不同复水方案后ACM的操作和力学特性会发生改变。

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