Mechanical Properties of Inflamed Appendix Tissues.

IF 3.9 3区 工程技术 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Biomedicines Pub Date : 2024-11-12 DOI:10.3390/biomedicines12112588
Piotr Deptuła, Dawid Łysik, Przemysław Wolak, Grzegorz Król, Paulina Paprocka, Piotr Bijak, Dominika Ziembicka, Joanna Mystkowska, Robert Bucki
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Abstract

Background/Objectives: Histopathological examination enables visualization of morphological changes in cells and tissues. In recent years, there has been increasing interest in assessing the mechanical properties of tissues that cannot be determined by standard histopathological examinations. Mechanobiology is crucial in human physiology and holds promise for uncovering new diagnostic markers for disease processes such as carcinogenesis and inflammation. In this study, we concentrated on measuring the mechanical properties of appendix biopsy specimens to identify potential mechanomarkers of inflammation. Appendix tissues provided the opportunity to measure mechanical properties both with an atomic force microscope and a shear rheometer. Methods: The atomic force microscope AFM-NanoWizard 4 BioScience JPK/Bruker was used for the evaluation of the elastic modulus (i.e., Young's modulus) of appendix tissues. Young's modulus was derived from the Hertz-Sneddon model applied to force-indentation curves. The rheological properties of macroscopic samples were measured on a parallel-plate, strain-controlled shear rheometer Anton Paar MCR302. Results: The data collected suggest that elasticity, expressed as Young's modulus and the storage modulus, could be considered a marker indicating appendix tissue inflammation. Young's modulus of inflamed appendix tissues was found to be significantly lower than that of healthy ones, with an average reduction of 67%. Furthermore, it was observed that inflamed appendix tissues, in comparison to healthy ones, respond differently under varying axial and shear stresses, enabling their identification. Conclusions: Our findings suggest that the specific mechanical properties of inflamed vermiform appendices could serve as novel mechanomarkers for the early detection and monitoring of appendicitis.

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发炎阑尾组织的机械特性
背景/目的:通过组织病理学检查可以观察细胞和组织的形态变化。近年来,人们对标准组织病理学检查无法确定的组织机械特性的评估越来越感兴趣。机械生物学在人体生理学中至关重要,有望为致癌和炎症等疾病过程发现新的诊断标记。在这项研究中,我们主要测量阑尾活检标本的机械特性,以确定炎症的潜在机械标记物。阑尾组织为使用原子力显微镜和剪切流变仪测量机械特性提供了机会。测量方法使用原子力显微镜 AFM-NanoWizard 4 BioScience JPK/Bruker 评估阑尾组织的弹性模量(即杨氏模量)。杨氏模量是根据力-压痕曲线应用 Hertz-Sneddon 模型得出的。宏观样本的流变特性是在平行板、应变控制剪切流变仪 Anton Paar MCR302 上测量的。结果:收集的数据表明,以杨氏模量和储能模量表示的弹性可被视为阑尾组织炎症的标志。研究发现,发炎阑尾组织的杨氏模量明显低于健康组织,平均降低了 67%。此外,研究还发现,与健康盲肠组织相比,发炎盲肠组织在不同的轴向和剪切应力作用下会产生不同的反应,因此可以对其进行识别。结论:我们的研究结果表明,发炎蚯蚓状阑尾的特殊机械特性可作为新型机械标记物,用于早期检测和监测阑尾炎。
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来源期刊
Biomedicines
Biomedicines Biochemistry, Genetics and Molecular Biology-General Biochemistry,Genetics and Molecular Biology
CiteScore
5.20
自引率
8.50%
发文量
2823
审稿时长
8 weeks
期刊介绍: Biomedicines (ISSN 2227-9059; CODEN: BIOMID) is an international, scientific, open access journal on biomedicines published quarterly online by MDPI.
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