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水合溶液的pH值与经克罗萨多防腐处理的人髂胫束生物力学特性之间的关系

The relationship between the pH value of a hydration solution and the biomechanical properties of Crosado-embalmed human iliotibial bands.

作者信息

Steel S, Pearcy Q, Li K C, Scholze M, Zwirner J

机构信息

Department of Anatomy, University of Otago, Dunedin, New Zealand.

Sir John Walsh Research Institute, University of Otago, Dunedin, New Zealand.

出版信息

J Mech Behav Biomed Mater. 2022 Aug;132:105266. doi: 10.1016/j.jmbbm.2022.105266. Epub 2022 May 10.

Abstract

Determining the biomechanical properties of human tissues commonly involves the immersion or spraying of the tissues to maintain them in a hydrated state. However, the influence of the pH value of these solutions on the biomechanical properties of the tissues is not well understood. This study investigated the effects of the pH value on the biomechanical properties of the collagen-rich human iliotibial band (ITB). A total of 124 samples were allocated to polyethylene glycol (PEG) solutions of pH values between 3 and 13 for 24 h, which is a frequently used immersion time prior to biomechanical tests. After this, the samples were biomechanically tested in a uniaxial tensile testing setup using an established testing routine. Similarly, 69 samples were allocated to pH groups of 6, 7 and 8 and biomechanically tested after 1, 2 and 3 weeks. The cross-sectional area of all samples was determined after immersion into the PEG solutions for the specified time frames. In the 24-h experiment, the elastic modulus (pH 12: p ≤ 0.045; pH 13: p ≤ 0.020) and the ultimate tensile strength (pH 12: p ≤ 0.031; pH 13: p ≤ 0.026) of the pH groups 12 and 13 were significantly lower and their cross-sectional areas were higher (pH 12: p ≤ 0.005; pH 13: p ≤ 0.003) compared to several groups of acidic to alkaline pH values. There was no difference in the maximum forces between the different groups within a 24-h immersion time (p > 0.999). In the 3-week-test, a decrease of the ultimate tensile strength was noted between the 24-h and 3 week values for the pH groups 7 (p = 0.034) and 8 (p = 0.029). It is concluded that pH-dependent tissue swelling influences the cross-sectional area-dependent biomechanical properties of the human ITB. Therefore, the pH value of storage and hydration solutions for the preparation of biomechanical tests should be recorded. From a biomechanical perspective, the collagen stability of the human ITB is largely unaltered in PEG solutions with pH values between 3 and 13 over 24 h.

摘要

确定人体组织的生物力学特性通常涉及将组织浸泡或喷洒以使其保持水合状态。然而,这些溶液的pH值对组织生物力学特性的影响尚未得到充分了解。本研究调查了pH值对富含胶原蛋白的人体髂胫束(ITB)生物力学特性的影响。总共124个样本被分配到pH值在3至13之间的聚乙二醇(PEG)溶液中24小时,这是生物力学测试前常用的浸泡时间。在此之后,使用既定的测试程序在单轴拉伸测试装置中对样本进行生物力学测试。同样,69个样本被分配到pH值为6、7和8的组中,并在1、2和3周后进行生物力学测试。在将所有样本浸泡到PEG溶液中指定时间后,测定其横截面积。在24小时实验中,与几组酸性至碱性pH值相比,pH值为12和13的组的弹性模量(pH 12:p≤0.045;pH 13:p≤0.020)和极限抗拉强度(pH 12:p≤0.031;pH 13:p≤0.026)显著更低,且其横截面积更大(pH 12:p≤0.005;pH 13:p≤0.003)。在24小时浸泡时间内,不同组之间的最大力没有差异(p>0.999)。在3周测试中,注意到pH值为7(p = 0.034)和8(p = 0.029)的组在24小时和3周值之间极限抗拉强度有所下降。得出的结论是,pH依赖性组织肿胀会影响人体ITB的横截面积依赖性生物力学特性。因此,应记录用于生物力学测试准备的储存和水合溶液的pH值。从生物力学角度来看,在pH值为3至13的PEG溶液中,人体ITB的胶原蛋白稳定性在24小时内基本未改变。

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