Lyu Yaqi, Azevedo Helena S
School of Engineering and Materials Science, Institute of Bioengineering, Queen Mary University of London, Mile End Road, London E1 4NS, UK.
Molecules. 2021 Feb 7;26(4):873. doi: 10.3390/molecules26040873.
Therapeutic proteins, such as growth factors (GFs), have been used in tissue engineering (TE) approaches for their ability to provide signals to cells and orchestrate the formation of functional tissue. However, to be effective and minimize off-target effects, GFs should be delivered at the target site with temporal control. In addition, protein drugs are typically sensitive water soluble macromolecules with delicate structure. As such, hydrogels, containing large amounts of water, provide a compatible environment for the direct incorporation of proteins within the hydrogel network, while their release rate can be tuned by engineering the network chemistry and density. Being formed by transient crosslinks, afforded by non-covalent interactions, supramolecular hydrogels offer important advantages for protein delivery applications. This review describes various types of supramolecular hydrogels using a repertoire of diverse building blocks, their use for protein delivery and their further application in TE contexts. By reviewing the recent literature on this topic, the merits of supramolecular hydrogels are highlighted as well as their limitations, with high expectations for new advances they will provide for TE in the near future.
治疗性蛋白质,如生长因子(GFs),因其能够向细胞提供信号并协调功能性组织的形成,已被用于组织工程(TE)方法中。然而,为了有效并将脱靶效应降至最低,生长因子应以时间可控的方式递送至靶位点。此外,蛋白质药物通常是结构精细的水溶性大分子。因此,含有大量水的水凝胶为蛋白质直接纳入水凝胶网络提供了一个相容的环境,同时其释放速率可通过设计网络化学和密度来调节。由非共价相互作用提供的瞬时交联形成的超分子水凝胶在蛋白质递送应用中具有重要优势。本综述描述了使用各种不同构建块的各类超分子水凝胶、它们在蛋白质递送中的应用以及它们在组织工程背景下的进一步应用。通过回顾关于该主题的最新文献,突出了超分子水凝胶的优点及其局限性,并对它们在不久的将来为组织工程带来的新进展寄予厚望。