Faculty of Medicine, University of Padova, 35121 Padova, Italy.
Clinic of Plastic and Reconstructive Surgery, University of Padova, 35128 Padova, Italy.
Cells. 2020 Jul 21;9(7):1743. doi: 10.3390/cells9071743.
The discovery of several unexpected complex biological roles of hyaluronic acid (HA) has promoted new research impetus for biologists and, the clinical interest in several fields of medicine, such as ophthalmology, articular pathologies, cutaneous repair, skin remodeling, vascular prosthesis, adipose tissue engineering, nerve reconstruction and cancer therapy. In addition, the great potential of HA in medicine has stimulated the interest of pharmaceutical companies which, by means of new technologies can produce HA and several new derivatives in order to increase both the residence time in a variety of human tissues and the anti-inflammatory properties. Minor chemical modifications of the molecule, such as the esterification with benzyl alcohol (Hyaff-11 biomaterials), have made possible the production of water-insoluble polymers that have been manufactured in various forms: membranes, gauzes, nonwoven meshes, gels, tubes. All these biomaterials are used as wound-covering, anti-adhesive devices and as scaffolds for tissue engineering, such as epidermis, dermis, micro-vascularized skin, cartilage and bone. In this review, the essential biological functions of HA and the applications of its derivatives for pharmaceutical and tissue regeneration purposes are reviewed.
透明质酸(HA)的几个意想不到的复杂生物学作用的发现,为生物学家提供了新的研究动力,也激发了临床医学在多个领域的兴趣,如眼科、关节病理学、皮肤修复、皮肤重塑、血管假体、脂肪组织工程、神经重建和癌症治疗。此外,HA 在医学上的巨大潜力激发了制药公司的兴趣,这些公司通过新技术可以生产 HA 和几种新的衍生物,以增加其在各种人体组织中的停留时间和抗炎特性。分子的微小化学修饰,如用苄醇酯化(Hyaff-11 生物材料),使得生产水溶性聚合物成为可能,这些聚合物已经以各种形式制造:膜、纱布、无纺网、凝胶、管。所有这些生物材料都被用作伤口覆盖物、防粘连装置和组织工程的支架,如表皮、真皮、微血管皮肤、软骨和骨骼。在这篇综述中,回顾了 HA 的基本生物学功能及其衍生物在药物和组织再生方面的应用。