Institute for Biomedical Aging Research, Austrian Academy of Sciences, Innsbruck, Austria.
Gerontology. 2013;59(1):71-6. doi: 10.1159/000342200. Epub 2012 Sep 22.
Hyaluronan (HA) is present in extracellular spaces and interstitia of many tissue types. As it is capable of binding high amounts of water, HA provides ideal conditions for cell migration and proliferation. Under conditions of cellular crowding, it also permits lineage-specific differentiation and thus promotes many aspects of healing and tissue remodeling.
The simplicity of its structure makes it amenable to chemical modifications and/or combined formulations with other bioactive substances. Thus a wide variety of clinical applications have been proposed, several of which are currently being implemented in advanced therapies.
Known features of HA biology, in particular regarding synthesis and processes related to signaling and control, have been adopted to elaborate specific products in order to support progress in regenerative medicine. Purified HA, HA-based hydrogels or special HA composites have been formulated together with other well-characterized biomaterials and bioactive factors. HA is currently employed in a variety of therapeutic applications both in its pure form and in a biofunctionalized form.
HA plays an essential role in regenerative processes. Owing to the growing scientific knowledge in this field, medicinal products based on HA have been devised and are being routinely applied in ophthalmology or in trauma and transplantation surgery. Further areas of application are contemplated, such as the use of HA composite scaffold material in tissue engineering, or refined HA hydrogels enabling controlled release of medication.
透明质酸(HA)存在于多种组织类型的细胞外空间和间质中。由于它能够结合大量的水,HA 为细胞迁移和增殖提供了理想的条件。在细胞拥挤的情况下,它还允许谱系特异性分化,从而促进愈合和组织重塑的许多方面。
其结构简单,易于进行化学修饰和/或与其他生物活性物质联合配方。因此,已经提出了各种各样的临床应用,其中一些目前正在先进治疗中实施。
HA 生物学的已知特征,特别是关于合成以及与信号转导和控制相关的过程,已被采用以精心设计特定产品,以支持再生医学的进展。已将纯化的 HA、基于 HA 的水凝胶或特殊的 HA 复合材料与其他经过充分表征的生物材料和生物活性因子一起配制。HA 目前以纯形式和生物功能化形式用于各种治疗应用。
HA 在再生过程中起着至关重要的作用。由于该领域的科学知识不断增加,已经设计出基于 HA 的药物,并在眼科、创伤和移植手术中常规应用。预计会有更多的应用领域,例如在组织工程中使用 HA 复合支架材料,或使用精细的 HA 水凝胶实现药物的控制释放。