Orthosera GmbH, 3500 Krems an der Donau, Austria.
Institute of Translational Medicine, Semmelweis University, 1094 Budapest, Hungary.
Int J Mol Sci. 2022 Sep 12;23(18):10557. doi: 10.3390/ijms231810557.
Albumin is a constitutional plasma protein, with well-known biological functions, e.g., a nutrient for stem cells in culture. However, albumin is underutilized as a biomaterial in regenerative medicine. This review summarizes the advanced therapeutic uses of albumin, focusing on novel compositions that take advantage of the excellent regenerative potential of this protein. Albumin coating can be used for enhancing the biocompatibility of various types of implants, such as bone grafts or sutures. Albumin is mainly known as an anti-attachment protein; however, using it on implantable surfaces is just the opposite: it enhances stem cell adhesion and proliferation. The anticoagulant, antimicrobial and anti-inflammatory properties of albumin allow fine-tuning of the biological reaction to implantable tissue-engineering constructs. Another potential use is combining albumin with natural or synthetic materials that results in novel composites suitable for cardiac, neural, hard and soft tissue engineering. Recent advances in materials have made it possible to electrospin the globular albumin protein, opening up new possibilities for albumin-based scaffolds for cell therapy. Several described technologies have already entered the clinical phase, making good use of the excellent biological, but also regulatory, manufacturing and clinical features of serum albumin.
白蛋白是一种组织蛋白,具有多种生物学功能,例如,为培养中的干细胞提供营养。然而,白蛋白在再生医学中作为生物材料尚未得到充分利用。本综述总结了白蛋白的先进治疗用途,重点介绍了利用该蛋白质出色的再生潜力的新型制剂。白蛋白涂层可用于增强各种类型植入物(如骨移植物或缝线)的生物相容性。白蛋白主要作为抗附着蛋白而被人们熟知;然而,将其用于可植入表面则恰恰相反:它可增强干细胞的黏附和增殖。白蛋白的抗凝、抗菌和抗炎特性可精细调节对可植入组织工程构建物的生物反应。另一个潜在用途是将白蛋白与天然或合成材料结合,从而产生适用于心脏、神经、硬组织和软组织工程的新型复合材料。最近在材料方面的进展使得电纺球形白蛋白蛋白成为可能,为基于白蛋白的细胞治疗支架开辟了新的可能性。几种已描述的技术已经进入临床阶段,充分利用了血清白蛋白优异的生物学特性,以及监管、制造和临床特性。