School of Chemistry, University of Leeds, Leeds, LS2 9JT, UK.
School of Mechanical Engineering, University of Leeds, Leeds, LS2 9JT, UK.
Adv Healthc Mater. 2021 Jun;10(11):e2001998. doi: 10.1002/adhm.202001998. Epub 2021 May 4.
Self-assembling hydrogels are promising materials for regenerative medicine and tissue engineering. However, designing hydrogels that replicate the 3-4 order of magnitude variation in soft tissue mechanics remains a major challenge. Here hybrid hydrogels are investigated formed from short self-assembling β-fibril peptides, and the glycosaminoglycan chondroitin sulfate (CS), chosen to replicate physical aspects of proteoglycans, specifically natural aggrecan, which provides structural mechanics to soft tissues. Varying the peptide:CS compositional ratio (1:2, 1:10, or 1:20) can tune the mechanics of the gel by one to two orders of magnitude. In addition, it is demonstrated that at any fixed composition, the gel shear modulus can be tuned over approximately two orders of magnitude through varying the initial vortex mixing time. This tuneability arises due to changes in the mesoscale structure of the gel network (fibril width, length, and connectivity), giving rise to both shear-thickening and shear-thinning behavior. The resulting hydrogels range in shear elastic moduli from 0.14 to 220 kPa, mimicking the mechanical variability in a range of soft tissues. The high degree of discrete tuneability of composition and mechanics in these hydrogels makes them particularly promising for matching the chemical and mechanical requirements of different applications in tissue engineering and regenerative medicine.
自组装水凝胶是再生医学和组织工程有前途的材料。然而,设计能够复制软组织力学中 3-4 个数量级变化的水凝胶仍然是一个主要挑战。在这里,研究了由短自组装 β-纤维肽和糖胺聚糖硫酸软骨素(CS)形成的杂化水凝胶,选择 CS 来复制蛋白聚糖的物理特性,特别是天然聚集蛋白聚糖,它为软组织提供结构力学。通过改变肽:CS 的组成比(1:2、1:10 或 1:20),可以将凝胶的力学性能调节一个到两个数量级。此外,还证明了在任何固定组成下,通过改变初始涡旋混合时间,可以将凝胶的剪切模量调谐约两个数量级。这种可调性源于凝胶网络的介观结构(纤维宽度、长度和连通性)的变化,导致剪切增稠和剪切稀化行为。所得水凝胶的剪切弹性模量范围为 0.14 至 220kPa,模拟了一系列软组织中的力学可变性。这些水凝胶在组成和力学方面具有高度离散的可调性,使其在组织工程和再生医学中的不同应用的化学和机械要求方面具有特别有前途的应用前景。