Influence of Halide Solutions on Collagen Networks: Measurements of Physical Properties by Atomic Force Microscopy

Birgit Spitzer-Sonnleitner, A. Kempe, Maximilian Lackner
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Abstract

The influence of aqueous halide solutions on collagen coatings was tested. The effects on resistance against indentation/penetration on adhesion forces were measured by atomic force microscopy (AFM) and the change of Young's modulus of the coating was derived. Comparative measurements over time were conducted with halide solutions of various concentrations. Physical properties of the mesh-like coating generally showed large variability. Starting with a compact set of physical properties, data disperse after minutes. A trend of increase in elasticity and permeability was found for all halide solutions. These changes were largest in NaI, displaying a logical trend with ion size. However a correlation with concentration was not measured. Adhesion properties were found to be independent of mechanical properties. The paper also presents practical experience for AFM measurements of soft tissue under liquids, particularly related to data evaluation. The weakening in physical strength found after exposure to halide solutions may be interpreted as widening of the network structure or change in the chemical properties in part of the collagen fibres (swelling). In order to design customized surface coatings at optimized conditions also for medical applications, halide solutions might be used as agents with little impact on the safety of patients.
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卤化物溶液对胶原网络的影响:用原子力显微镜测量物理性质
测试了卤化物水溶液对胶原膜的影响。利用原子力显微镜(AFM)测量了涂层抗压痕/渗透阻力对附着力的影响,并推导了涂层的杨氏模量的变化。在不同浓度的卤化物溶液中进行了时间的比较测量。网状涂层的物理性能普遍表现出较大的变异性。从一组紧凑的物理属性开始,数据在几分钟后分散。所有卤化物溶液的弹性和渗透率都有增加的趋势。这些变化在NaI中最大,与离子大小呈逻辑趋势。然而,没有测量其与浓度的相关性。附着力与力学性能无关。本文还介绍了液体下软组织AFM测量的实践经验,特别是与数据评估有关的经验。暴露于卤化物溶液后发现的物理强度减弱可能被解释为网络结构的扩大或部分胶原纤维化学性质的变化(肿胀)。为了在最佳条件下为医疗应用设计定制的表面涂层,可以使用卤化物溶液作为对患者安全影响很小的药剂。
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