Division of Plastic Surgery and Hand Surgery, University Hospital Zurich, Sternwartstrasse 14, 8091 Zurich, Switzerland.
Oral Biotechnology & Bioengineering, Center for Dental Medicine, Cranio-Maxillofacial and Oral Surgery, University of Zurich, 8032 Zurich, Switzerland.
Int J Mol Sci. 2023 Jun 17;24(12):10272. doi: 10.3390/ijms241210272.
Tendon injuries can result in two major drawbacks. Adhesions to the surrounding tissue may limit the range of motion, while fibrovascular scar formation can lead to poor biomechanical outcomes. Prosthetic devices may help to mitigate those problems. Emulsion electrospinning was used to develop a novel three-layer tube based on the polymer DegraPol (DP), with incorporated insulin-like growth factor-1 (IGF-1) in the middle layer. Scanning electron microscopy was utilized to assess the fiber diameter in IGF-1 containing pure DP meshes. Further characterization was performed with Fourier Transformed Infrared Spectroscopy, Differential Scanning Calorimetry, and water contact angle, as well as through the assessment of mechanical properties and release kinetics from ELISA, and the bioactivity of IGF-1 by qPCR of , and in rabbit Achilles tenocytes. The IGF-1-containing tubes exhibited a sustained release of the growth factor up to 4 days and showed bioactivity by significantly upregulated and gene expression. Moreover, they proved to be mechanically superior to pure DP tubes (significantly higher fracture strain, failure stress, and elastic modulus). The novel three-layer tubes intended to be applied over conventionally sutured tendons after a rupture may help accelerate the healing process. The release of IGF-1 stimulates proliferation and matrix synthesis of cells at the repair site. In addition, adhesion formation to surrounding tissue can be reduced due to the physical barrier.
肌腱损伤可能导致两个主要问题。周围组织的粘连可能会限制运动范围,而纤维血管瘢痕形成则可能导致生物力学效果不佳。假体设备可能有助于缓解这些问题。乳液静电纺丝被用于开发一种基于聚合物 DegraPol(DP)的新型三层管,其中在中间层中掺入胰岛素样生长因子-1(IGF-1)。扫描电子显微镜用于评估含 IGF-1 的纯 DP 网眼的纤维直径。进一步的特征在于傅里叶变换红外光谱、差示扫描量热法和水接触角,以及通过 ELISA 评估机械性能和释放动力学,以及通过 qPCR 评估 IGF-1 的生物活性,在兔跟腱腱细胞中进行了 、 和 。含 IGF-1 的管在 4 天内持续释放生长因子,并通过显著上调 和 基因表达显示出生物活性。此外,它们在机械性能上优于纯 DP 管(显著提高断裂应变、失效应力和弹性模量)。新型三层管旨在在肌腱断裂后应用于常规缝合的肌腱上,可能有助于加速愈合过程。IGF-1 的释放可刺激修复部位细胞的增殖和基质合成。此外,由于物理屏障的存在,周围组织的粘连形成可以减少。