滑液中大分子相互作用的流变效应。

IF 1 4区 医学 Q4 BIOPHYSICS Biorheology Pub Date : 2016-07-29 DOI:10.3233/BIR-15104
L Martin-Alarcon, T A Schmidt
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引用次数: 35

摘要

滑液(SF)的流变特性很大程度上归因于高分子量透明质酸(HA)的存在。然而,SF和纯HA溶液之间的流变学差异表明,SF蛋白积极地促进了这种生物流体的总体粘弹性。由于涉及低粘度生物流体流变学的各种实验挑战,SF中的大分子相互作用及其相对流变学重要性仍然是一个积极讨论的问题。然而,有趣的是,最近的证据表明,蛋白多糖4 (PRG4,也称为润滑素)的浓度和结构可以直接调节HA-PRG4溶液的粘弹性。这篇综述的目的是强调最近的流变学研究,研究了SF中HA和蛋白质之间的大分子相互作用。首先,概述了SF的化学组成及其关键成分HA和PRG4的分子结构。随后,讨论了已开发的用于表征HA溶液的各种流变实验技术。最后,研究了HA、血清蛋白和PRG4之间大分子相互作用的流变学研究。这篇综述说明了不同的流变学技术如何扩展我们对SF中成分-结构-功能关系的理解。
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Rheological effects of macromolecular interactions in synovial fluid.

The rheological properties of synovial fluid (SF) are largely attributed to the presence of high molecular weight hyaluronan (HA). However, rheological differences between SF and pure HA solutions suggest that SF proteins actively contribute towards the bulk viscoelasticity of this biological fluid. Due to various experimental challenges involved with the rheometry of low-viscosity biological fluids, the macromolecular interactions in SF and their relative rheological importance are still a matter of active discussion. Interestingly however, recent evidence suggests that the concentration and structure of proteoglycan 4 (PRG4, also known as lubricin) can directly modulate the viscoelastic properties of HA-PRG4 solutions. The objective of this review is to highlight recent rheological studies that examine the macromolecular interactions between HA and proteins in SF. First, a general overview of the chemical composition of SF and the molecular structure of its key constituents HA and PRG4 is provided. Subsequently, diverse rheological experimental techniques that have been developed to characterize HA solutions are discussed. Finally, rheological investigations of macromolecular interactions between HA, serum proteins, and PRG4 are examined. This review illustrates how diverse rheological techniques can expand our understanding of the composition-structure-function relationships in SF.

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来源期刊
Biorheology
Biorheology 医学-工程:生物医学
CiteScore
2.00
自引率
0.00%
发文量
5
审稿时长
>12 weeks
期刊介绍: Biorheology is an international interdisciplinary journal that publishes research on the deformation and flow properties of biological systems or materials. It is the aim of the editors and publishers of Biorheology to bring together contributions from those working in various fields of biorheological research from all over the world. A diverse editorial board with broad international representation provides guidance and expertise in wide-ranging applications of rheological methods to biological systems and materials. The scope of papers solicited by Biorheology extends to systems at different levels of organization that have never been studied before, or, if studied previously, have either never been analyzed in terms of their rheological properties or have not been studied from the point of view of the rheological matching between their structural and functional properties. This biorheological approach applies in particular to molecular studies where changes of physical properties and conformation are investigated without reference to how the process actually takes place, how the forces generated are matched to the properties of the structures and environment concerned, proper time scales, or what structures or strength of structures are required.
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