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流变仪可用于研究软骨的频率相关特性。

Rheometer enabled study of cartilage frequency-dependent properties.

机构信息

School of Pharmacy and Pharmaceutical Sciences, Cardiff University, King Edward VII Avenue, Redwood BuildingCardiff, CF10 3NB, UK.

出版信息

Sci Rep. 2020 Nov 26;10(1):20696. doi: 10.1038/s41598-020-77758-9.

Abstract

Despite the well-established dependence of cartilage mechanical properties on the frequency of the applied load, most research in the field is carried out in either load-free or constant load conditions because of the complexity of the equipment required for the determination of time-dependent properties. These simpler analyses provide a limited representation of cartilage properties thus greatly reducing the impact of the information gathered hindering the understanding of the mechanisms involved in this tissue replacement, development and pathology. More complex techniques could represent better investigative methods, but their uptake in cartilage research is limited by the highly specialised training required and cost of the equipment. There is, therefore, a clear need for alternative experimental approaches to cartilage testing to be deployed in research and clinical settings using more user-friendly and financial accessible devices. Frequency dependent material properties can be determined through rheometry that is an easy to use requiring a relatively inexpensive device; we present how a commercial rheometer can be adapted to determine the viscoelastic properties of articular cartilage. Frequency-sweep tests were run at various applied normal loads on immature, mature and trypsinased (as model of osteoarthritis) cartilage samples to determine the dynamic shear moduli (G*, G' G″) of the tissues. Moduli increased with increasing frequency and applied load; mature cartilage had generally the highest moduli and GAG depleted samples the lowest. Hydraulic permeability (K) was estimated from the rheological data and decreased with applied load; GAG depleted cartilage exhibited higher hydraulic permeability than either immature or mature tissues. The rheometer-based methodology developed was validated by the close comparison of the rheometer-obtained cartilage characteristics (G*, G', G″, K) with results obtained with more complex testing techniques available in literature. Rheometry is relatively simpler and does not require highly capital intensive machinery and staff training is more accessible; thus the use of a rheometer would represent a cost-effective approach for the determination of frequency-dependent properties of cartilage for more comprehensive and impactful results for both healthcare professional and R&D.

摘要

尽管软骨力学性能与施加负载的频率密切相关,但由于确定时变特性所需设备的复杂性,该领域的大多数研究都是在无负载或恒载条件下进行的。这些更简单的分析提供了对软骨特性的有限描述,从而大大降低了所收集信息的影响,阻碍了对涉及这种组织替代、发育和病理学的机制的理解。更复杂的技术可以代表更好的研究方法,但由于所需的高度专业化培训和设备成本,它们在软骨研究中的应用受到限制。因此,需要替代的实验方法来测试软骨,以便在研究和临床环境中使用更易于使用且经济实惠的设备。流变学可以确定频率相关的材料特性,它是一种易于使用的方法,需要相对便宜的设备;我们介绍了如何使用商业流变仪来确定关节软骨的粘弹性特性。在各种施加的法向载荷下对未成熟、成熟和胰蛋白酶处理(作为骨关节炎模型)的软骨样本进行频率扫描测试,以确定组织的动态剪切模量(G*、G'、G″)。模量随频率和施加的载荷增加而增加;成熟软骨的模量通常最高,GAG 耗尽的样本最低。从流变学数据估算液压渗透率(K),并随施加的载荷而降低;GAG 耗尽的软骨的液压渗透率高于未成熟或成熟组织。所开发的基于流变仪的方法通过与文献中更复杂的测试技术获得的流变仪获得的软骨特性(G*、G'、G″、K)的紧密比较得到验证。流变学相对更简单,不需要高度资本密集型的机械和员工培训更容易获得;因此,使用流变仪将是一种经济有效的方法,可用于确定软骨的频率相关特性,以便为医疗保健专业人员和研发人员提供更全面和有影响力的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42fc/7693262/5ede9199eff6/41598_2020_77758_Fig1_HTML.jpg

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