School of Chemistry, University of New South Wales, Sydney, NSW, 2052, Australia.
Australian Center for Nanomedicine, University of New South Wales, Sydney, NSW, 2052, Australia.
Nat Commun. 2023 Oct 23;14(1):6604. doi: 10.1038/s41467-023-41907-1.
Soft materials in nature are formed through reversible supramolecular assembly of biological polymers into dynamic hierarchical networks. Rational design has led to self-assembling peptides with structural similarities to natural materials. However, recreating the dynamic functional properties inherent to natural systems remains challenging. Here we report the discovery of a short peptide based on the tryptophan zipper (trpzip) motif, that shows multiscale hierarchical ordering that leads to emergent dynamic properties. Trpzip hydrogels are antimicrobial and self-healing, with tunable viscoelasticity and unique yield-stress properties that allow immediate harvest of embedded cells through a flick of the wrist. This characteristic makes Trpzip hydrogels amenable to syringe extrusion, which we demonstrate with examples of cell delivery and bioprinting. Trpzip hydrogels display innate bioactivity, allowing propagation of human intestinal organoids with apical-basal polarization. Considering these extensive attributes, we anticipate the Trpzip motif will prove a versatile building block for supramolecular assembly of soft materials for biotechnology and medicine.
天然软物质是通过生物聚合物的可逆超分子组装形成的动态分级网络。合理的设计导致了具有与天然材料相似结构的自组装肽。然而,重现天然系统固有的动态功能特性仍然具有挑战性。在这里,我们报告了一种基于色氨酸拉链(trpzip)基序的短肽的发现,该肽表现出多尺度分级有序,从而产生出涌现的动态特性。trpzip 水凝胶具有抗菌和自修复功能,可调节粘弹性和独特的屈服应力特性,可通过手腕轻弹立即收获嵌入的细胞。这一特性使得 trpzip 水凝胶适合注射器挤出,我们通过细胞输送和生物打印的例子展示了这一点。trpzip 水凝胶具有内在的生物活性,允许人类肠类器官的顶端-基底极化。考虑到这些广泛的属性,我们预计 trpzip 基序将成为生物技术和医学中软物质超分子组装的通用构建块。