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The use of small angle light scattering in assessing strain induced collagen degradation in arterial tissue ex vivo

机译:小角度光散射在评估菌株诱导的动脉组织中诱导胶原降解的情况下

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Collagen is the predominant load bearing component in many soft tissues including arterial tissue and is therefore critical in determining the mechanical integrity of such tissues. Degradation of collagen fibres is hypothesized to be a strain dependent process whereby the rate of degradation is affected by the magnitude of strain applied to the collagen fibres. The aim of this study is to investigate the ability of small angle light scattering (SALS) imaging to identify strain dependent degradation of collagen fibres in arterial tissue ex vivo, and determine whether a strain induced protection mechanism exists in arterial tissue as observed in pure collagen and other collagenous tissues. SALS was used in combination with histological and second harmonic generation (SHG) analysis to determine the collagen fibre architecture in arterial tissue subjected to strain directed degradation. SALS alignment analysis identified statistically significant differences in fibre alignment depending on the strain magnitude applied to the tissue. These results were also observed using histology and SHG. Our findings suggest a strain protection mechanism may exist for arterial collagen at intermediate strain magnitudes between 0% and 25%. These findings may have implications for the onset and progression of arterial disease where changes in the mechanical environment of arterial tissue may lead to changes in the collagen degradation rate. (C) 2018 Elsevier Ltd. All rights reserved.
机译:胶原蛋白是许多软组织中的主要负载轴承部件,因此在确定这种组织的机械完整性方面是至关重要的。胶原纤维的降解被假设为应变依赖性过程,从而降解速率受施加到胶原纤维的菌株的大小。本研究的目的是探讨小角度光散射(SAL)成像以鉴定动脉组织中胶原纤维的应变依赖性降解的能力,并确定在纯胶原蛋白中观察到的动脉组织中是否存在应变诱导的保护机制和其他胶原组织。 SAL与组织学和二次谐波产生(SHG)分析组合使用,以确定经受应变导向降解的动脉组织中的胶原纤维架构。 SALS对准分析根据施加到组织的应变幅度确定纤维对准的统计上显着差异。还使用组织学和SHG观察这些结果。我们的研究结果表明,在中间应变幅度下的动脉胶原蛋白可能存在应变保护机制0%和25%。这些发现可能对动脉疾病的发生和进展产生影响,其中动脉组织的机械环境的变化可能导致胶原降解率的变化。 (c)2018年elestvier有限公司保留所有权利。

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