Health Research Institute, Michigan Technological University, 202E Chemical Sciences and Engineering Building, 1400 Townsend Drive, Houghton, Michigan 49931, United States.
Department of Chemistry, Michigan Technological University, 609 Chemical Sciences and Engineering Building,1400 Townsend Drive, Houghton, Michigan 49931, United States.
ACS Appl Bio Mater. 2024 Feb 19;7(2):863-878. doi: 10.1021/acsabm.3c00894. Epub 2024 Jan 11.
A pair of alkyne- and thiol-functionalized polyesters are designed to engineer elastomeric scaffolds with a wide range of tunable material properties (e.g., thermal, degradation, and mechanical properties) for different tissues, given their different host responses, mechanics, and regenerative capacities. The two prepolymers are quickly photo-cross-linkable through thiol-yne click chemistry to form robust elastomers with small permanent deformations. The elastic moduli can be easily tuned between 0.96 ± 0.18 and 7.5 ± 2.0 MPa, and in vitro degradation is mediated from hours up to days by adjusting the prepolymer weight ratios. These elastomers bear free hydroxyl and thiol groups with a water contact angle of less than 85.6 ± 3.58 degrees, indicating a hydrophilic nature. The elastomer is compatible with NIH/3T3 fibroblast cells with cell viability reaching 88 ± 8.7% relative to the TCPS control at 48 h incubation. Differing from prior soft elastomers, a mixture of the two prepolymers without a carrying polymer is electrospinnable and UV-cross-linkable to fabricate elastic fibrous scaffolds for soft tissues. The designed prepolymer pair can thus ease the fabrication of elastic fibrous conduits, leading to potential use as a resorbable synthetic graft. The elastomers could find use in other tissue engineering applications as well.
设计了一对炔基和巯基功能化的聚酯,以工程弹性支架,具有广泛的可调材料性能(例如,热,降解和机械性能)为不同的组织,由于其不同的宿主反应,力学和再生能力。两种预聚物可以通过硫醇-炔点击化学快速光交联,形成具有小永久变形的坚固弹性体。弹性模量可以很容易地在 0.96 ± 0.18 和 7.5 ± 2.0 MPa 之间调节,并且通过调节预聚物的重量比,可以将体外降解从几小时延长到几天。这些弹性体带有游离的羟基和疏基,水接触角小于 85.6 ± 3.58 度,表明其具有亲水性。弹性体与 NIH/3T3 成纤维细胞相容,细胞活力达到 88 ± 8.7%,相对于 TCPS 对照在 48 小时孵育时。与先前的软弹性体不同,两种预聚物的混合物而没有携带聚合物是可电纺的和可紫外交联的,以制造用于软组织的弹性纤维支架。因此,设计的预聚物对可以方便弹性纤维导管的制造,从而有可能用作可吸收的合成移植物。这些弹性体也可以在其他组织工程应用中找到用途。