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EFFECT OF DYNAMIC DEFORMATIONAL LOADING ON THE TRANSPORT OF DEXTRAN MOLECULES INTO AGAROSE GELS

机译:动态变形载荷对Dextran分子向琼脂糖凝胶迁移的影响

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The poor intrinsic healing capacity of articular cartilage has led to a number of attempts to engineer a replacement tissue . One of these approaches, termed functional tissue engineering, suggests that the application of mechanical preconditioning, mimicking the in vivo loading environment, may enhance the development of material properties in these constructs. Using this approach, our previous studies have demonstrated that dynamic loading (DL) increases the mechanical properties of chondrocyte-seeded agarose hydrogels relative to free swelling (FS) controls. One mechanism by which the increase in mechanical properties occurs is hypothesized to be due to enhanced transport of nutrients and/or growth factors under dynamic loading. The goal of the current study is to determine the effect of dynamic loading on the transport of neutral dextran molecules into agarose gels. Dextran, a neutral and generally inert solute commonly used in diffusion and transport studies, is used in its fluorophore-conjugated form thus making it possible to track the solute and quantify its content inside a hydrogel. We hypothesize that the uptake of dextran molecules into the agarose gels will be significantly enhanced under the influence of physiological dynamic deformation loading. Two varying molecular weights of dextran, 3 kDa and 70 kDa, were chosen in this study to ascertain a wide range of transport behaviors, and to interpret the experimental results in the context of a recently developed mixture theory model for the transport of neutral solutes in a neutrally charged gel, such as agarose.
机译:关节软骨固有的较差的愈合能力导致进行了许多尝试来设计置换组织的尝试。这些被称为功能组织工程的方法之一表明,模仿体内加载环境的机械预处理的应用可能会增强这些构建体中材料特性的发展。使用这种方法,我们以前的研究表明,相对于游离溶胀(FS)对照,动态负载(DL)可以增加软骨细胞接种的琼脂糖水凝胶的机械性能。推测机械性能增加的一种机理是由于在动态负荷下营养物质和/或生长因子的运输增加。当前研究的目的是确定动态负载对中性右旋糖酐分子向琼脂糖凝胶运输的影响。右旋糖酐是一种通常用于扩散和迁移研究的中性且通常是惰性的溶质,以其与荧光团结合的形式使用,因此可以追踪溶质并量化其在水凝胶中的含量。我们假设,在生理动态变形负荷的影响下,右旋糖酐分子对琼脂糖凝胶的吸收将显着增强。在这项研究中,选择了两种不同分子量的葡聚糖,分别为3 kDa和70 kDa,以确定广泛的运输行为,并在最近开发的混合理论模型的背景下解释了实验结果,该模型用于中性溶质的运输。中性电荷的凝胶,例如琼脂糖。

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