Department of Polyurethane, Iran Polymer & Petrochemical Institute, Tehran, Iran; Department of Stem Cells and Developmental Biology, Cell Science Research Center, Royan Institute, Tehran, Iran.
Department of Stem Cells and Developmental Biology, Cell Science Research Center, Royan Institute, Tehran, Iran.
Biomaterials. 2016 Apr;84:54-63. doi: 10.1016/j.biomaterials.2016.01.025. Epub 2016 Jan 11.
Alginate-based supramolecular ionic polyurethanes (ASPUs) as mechanically tunable biomaterials with high strength and toughness in both dry and hydrated states are developed under metal-free conditions. The Young's modulus and tensile strength of ASPUs are tuned from 30 to 100 MPa, and 20 to 50 MPa, respectively. Interestingly, the ASPUs exhibit a small hysteresis loop, minimal loss of tensile strength and minimal creep deformation after 100 repetitive cycles which makes them of use for engineering of load-bearing tissues. This is the first report that describes a linear PU can resist a large number of cyclic stresses without significant stretching. These bio-based elastomers engineered by ionic interactions are biocompatible and biodegradable. The ASPUs demonstrate a similar in vivo degradation rate compared to polycaprolactone (PCL). These biomaterials also demonstrate a rapid self-healing and recovery after rupture, and have a linear biodegradation profile. Furthermore, histological examination of subcutaneous transplanted ASPUs after five months reveals low immunological response and low fibrosis.
无金属条件下开发出了基于海藻酸盐的超分子离子型聚氨酯(ASPUs),这种材料兼具高强度和韧性,无论是在干燥状态还是在水合状态下都是如此。ASPUs 的杨氏模量和拉伸强度可分别在 30-100 MPa 和 20-50 MPa 的范围内进行调节。有趣的是,ASPUs 在经受 100 次重复循环后,仅表现出较小的滞后环、拉伸强度的极小损失和极小的蠕变变形,这使得它们可用于承载组织的工程设计。这是首次描述线性 PU 可在无明显拉伸的情况下抵抗大量循环应力的报告。这些通过离子相互作用设计的生物弹性体具有生物相容性和可生物降解性。ASPUs 的体内降解速率与聚己内酯(PCL)相似。这些生物材料在破裂后还表现出快速的自修复和恢复能力,以及线性的生物降解特性。此外,在植入皮下五个月后对 ASPUs 进行组织学检查的结果表明,其免疫反应和纤维化程度均较低。