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The Good the Bad and the Ugly of Glycosaminoglycans in Tissue Engineering Applications

机译:糖胺聚糖在组织工程应用中的利弊

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摘要

High sulfation, low cost, and the status of heparin as an already FDA- and EMA- approved product, mean that its inclusion in tissue engineering (TE) strategies is becoming increasingly popular. However, the use of heparin may represent a naïve approach. This is because tissue formation is a highly orchestrated process, involving the temporal expression of numerous growth factors and complex signaling networks. While heparin may enhance the retention and activity of certain growth factors under particular conditions, its binding ‘promiscuity’ means that it may also inhibit other factors that, for example, play an important role in tissue maintenance and repair. Within this review we focus on articular cartilage, highlighting the complexities and highly regulated processes that are involved in its formation, and the challenges that exist in trying to effectively engineer this tissue. Here we discuss the opportunities that glycosaminoglycans (GAGs) may provide in advancing this important area of regenerative medicine, placing emphasis on the need to move away from the common use of heparin, and instead focus research towards the utility of specific GAG preparations that are able to modulate the activity of growth factors in a more controlled and defined manner, with less off-target effects.
机译:高硫酸盐化,低成本以及肝素已被FDA和EMA批准的产品地位,意味着将其纳入组织工程(TE)策略正变得越来越受欢迎。但是,使用肝素可能是一种幼稚的方法。这是因为组织形成是高度协调的过程,涉及许多生长因子和复杂信号网络的时间表达。尽管肝素可以在特定条件下增强某些生长因子的保留和活性,但其结合的“混杂性”意味着它还可以抑制其他因素,例如在组织维持和修复中起重要作用。在这篇综述中,我们着重于关节软骨,强调了其形成过程中涉及的复杂性和高度受控的过程,以及试图有效改造该组织所面临的挑战。在这里,我们讨论了糖胺聚糖(GAG)在推进再生医学这一重要领域方面可能提供的机会,着重强调了摆脱常用肝素的需求,而是将研究重点转向了能够使用特定GAG制剂的用途。以更可控和更明确的方式调节生长因子的活性,减少脱靶效应。

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