Castillo-Díaz Luis A, Gough Julie E, Miller Aline F, Saiani Alberto
School of Chemical Engineering & Manchester Institute of Biotechnology, The University of Manchester, Manchester, UK.
Departamento de Medicina y Ciencias de la Salud, Facultad Interdisciplinaria de Ciencias Biológicas y de la Salud, Universidad de Sonora, Hermosillo, Sonora, Mexico.
J Pept Sci. 2025 Feb;31(2):e3653. doi: 10.1002/psc.3653. Epub 2024 Sep 27.
Self-assembling peptide hydrogels (SAPHs) have been used in the past decade as reliable three-dimensional (3D) synthetic scaffolds for the culture of a variety of mammalian cells in vitro. Thanks to their versatile physicochemical properties, they allow researchers to tailor the hydrogel properties, including stiffness and functionality to the targeted cells and cells' behaviour. One of the advantages of using SAPH scaffolds is the ease of functionalisation. In the present work, we discuss the effect that functionalising the FEFEFKFK (F, phenylalanine; K, lysine; and E, glutamic acid) hydrogel scaffold using the cell-binding RGDS (fibronectin - R, arginine; G, glycine; D, aspartic acid; S, serine) epitope affects the material properties as well as the function of encapsulated human osteoblast cells. RGDS functionalisation resulted in cells adopting an elongated morphology, suggesting attachment and increased proliferation. While this led to higher cell viability, it also resulted in a decrease in extra-cellular matrix (ECM) protein production as well as a decrease in calcium ion deposition, suggesting lower mineralisation capabilities. The work clearly shows that SAPHs are a flexible platform that allow the modification of scaffolds in a controlled manner to investigate cell-material interactions.
在过去十年中,自组装肽水凝胶(SAPHs)已被用作可靠的三维(3D)合成支架,用于体外培养多种哺乳动物细胞。由于其多样的物理化学性质,它们使研究人员能够根据目标细胞和细胞行为来定制水凝胶的性质,包括硬度和功能。使用SAPH支架的优点之一是易于功能化。在本研究中,我们探讨了使用细胞结合性RGDS(纤连蛋白 - R,精氨酸;G,甘氨酸;D,天冬氨酸;S,丝氨酸)表位对FEFEFKFK(F,苯丙氨酸;K,赖氨酸;E,谷氨酸)水凝胶支架进行功能化处理后,对材料性质以及封装的人成骨细胞功能的影响。RGDS功能化导致细胞呈现伸长形态,表明细胞发生附着且增殖增加。虽然这导致了更高的细胞活力,但也导致细胞外基质(ECM)蛋白产量下降以及钙离子沉积减少,表明矿化能力降低。这项工作清楚地表明,SAPHs是一个灵活的平台,能够以可控方式对支架进行修饰,以研究细胞与材料之间的相互作用。