Goder Orbach Daniella, Roitman Ilana, Coster Kimhi Geffen, Zilberman Meital
Department of Biomedical Engineering, Tel-Aviv University, Tel Aviv 6997801, Israel.
Polymers (Basel). 2024 Oct 12;16(20):2879. doi: 10.3390/polym16202879.
The development of injectable hydrogels for soft tissue regeneration has gained significant attention due to their minimally invasive application and ability to conform precisely to the shape of irregular tissue cavities. This study presents a novel injectable porous scaffold based on natural polymers that undergoes in situ crosslinking, forming a highly resilient hydrogel with tailorable mechanical and physical properties to meet the specific demands of soft tissue repair. By adjusting the formulation, we achieved a range of stiffness values that closely mimic the mechanical characteristics of native tissues while maintaining very high resilience (>90%). The effects of gelatin, alginate, and crosslinker concentrations, as well as porosity, on the hydrogel's properties were elucidated. The main results indicated a compression modulus range of 2.7-89 kPa, which fits all soft tissues, and gelation times ranging from 5 to 30 s, which enable the scaffold to be successfully used in various operations. An increase in gelatin and crosslinker concentrations results in a higher modulus and lower gelation time, i.e., a stiffer hydrogel that is created in a shorter time. In vitro cell viability tests on human fibroblasts were performed and indicated high biocompatibility. Our findings demonstrate that these injectable hydrogel scaffolds offer a promising solution for enhancing soft tissue repair and regeneration, providing a customizable and resilient framework that is expected to support tissue integration and healing with minimal surgical intervention.
用于软组织再生的可注射水凝胶因其微创应用以及能够精确贴合不规则组织腔形状的能力而备受关注。本研究提出了一种基于天然聚合物的新型可注射多孔支架,该支架可进行原位交联,形成具有可定制机械和物理性能的高弹性水凝胶,以满足软组织修复的特定需求。通过调整配方,我们获得了一系列刚度值,这些值紧密模拟了天然组织的机械特性,同时保持了非常高的弹性(>90%)。阐明了明胶、藻酸盐和交联剂浓度以及孔隙率对水凝胶性能的影响。主要结果表明压缩模量范围为2.7-89 kPa,适用于所有软组织,凝胶化时间为5至30秒,这使得该支架能够成功用于各种手术。明胶和交联剂浓度的增加会导致更高的模量和更低的凝胶化时间,即能在更短时间内形成更硬的水凝胶。对人成纤维细胞进行了体外细胞活力测试,结果表明具有高生物相容性。我们的研究结果表明,这些可注射水凝胶支架为增强软组织修复和再生提供了一个有前景的解决方案,提供了一个可定制的弹性框架,有望在最小限度的手术干预下支持组织整合和愈合。