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受遗传疾病影响的毛发的机械各向异性突出了与角蛋白中差异交联相关的结构信息。

Mechanical anisotropy of hair affected by genetic diseases highlights structural information related to differential crosslinking in keratins.

作者信息

Breakspear Steven, Noecker Bernd, Popescu Crisan

机构信息

KAO European Research Laboratories, KAO Germany GmbH, 64297, Darmstadt, Germany.

出版信息

Eur Biophys J. 2023 Feb;52(1-2):53-67. doi: 10.1007/s00249-023-01635-2. Epub 2023 Feb 28.

Abstract

Previous work with Atomic Force Microscope (AFM) nanoindentation, on longitudinal and cross-sections of the human hair fibre, allowed for the derivation of a model for the mechanical behaviour of human hair, called the Anisotropic Index. Expanding that research further, and by applying this model, the nanomechanical behaviour of hairs from patients with the disease Trichothiodystrophy (TTD) has been examined and structural insights, gained from combining the AFM results with Differential Scanning Calorimetry (DSC) experiments and tensile measurements, suggests that TTD-affected hairs have a relatively increased amount of Keratin Intermediate Filaments, contained in compartments of differing crosslinking extent. The associated calculations of axial and transverse Young's Moduli deliver values in good agreement with the measured fibre mechanics. Furthermore, comparing these findings with the results previously obtained from the study of hairs from patients with the disease Monilethrix, it is shown that the Anisotropic Index correlates well with the known deficiencies in both hair types obtained from such patients and allows for discerning between the Control hair and from those affected by the two diseases. AFM nanoindentation along and across the fibre axis and the Anisotropic Index thus appear to reveal structural details of hair not otherwise acquirable, whilst DSC may offer a quick and simple method for distinguishing between different severities of TTD.

摘要

先前使用原子力显微镜(AFM)纳米压痕技术对人发纤维的纵向和横截面进行的研究,推导出了一种用于描述人发力学行为的模型,称为各向异性指数。进一步拓展该研究,并应用此模型,对患有毛发硫营养不良症(TTD)患者的头发的纳米力学行为进行了研究,将AFM结果与差示扫描量热法(DSC)实验及拉伸测量相结合所获得的结构见解表明,受TTD影响的头发中,不同交联程度的隔室所含的角蛋白中间丝数量相对增加。轴向和横向杨氏模量的相关计算得出的值与测得的纤维力学性能吻合良好。此外,将这些发现与先前对患有念珠状发患者的头发研究结果进行比较,结果表明各向异性指数与这类患者的两种头发类型中已知的缺陷密切相关,并且能够区分对照头发和受这两种疾病影响的头发。因此,沿纤维轴和横跨纤维轴的AFM纳米压痕以及各向异性指数似乎揭示了用其他方法无法获得的头发结构细节,而DSC可能提供一种快速简便的方法来区分TTD的不同严重程度。

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