Indian Institute of Technology, Rubber Technology Centre, Kharagpur, 721302, India.
Indian Institute of Technology, School of Medical Science and Technology, Kharagpur, 721302, India.
J Biomed Mater Res B Appl Biomater. 2019 Jul;107(5):1634-1644. doi: 10.1002/jbm.b.34256. Epub 2018 Oct 17.
Composition and architecture of scaffolds are the most important factors determining the performance of skin substitutes. In this work, morphology induced unique physical and biological characteristics of compatibilized TPU-PDMS blend scaffolds at 90:10, 80:20, and 70:30 blend ratios of TPU and PDMS was studied. The fiber morphology, porosity, surface wettability, and mechanical properties of electrospun scaffolds were distinctly influenced by the presence of PDMS. Interestingly, the scaffold architecture varied from electrospun fibers to porous fibers and finally occurrence of unique porous beads noticed at 30% PDMS in the microstructure which was confirmed using FESEM. Micro-CT analysis revealed that the porosity of electrospun scaffolds was enhanced from 61% to 79% with 30 parts of PDMS addition. Moreover, MTT assay and cell proliferation were studied using human skin fibroblast cells and found to be significantly enhanced with the PDMS percentage. TPU-PDMS blends offer better overall performance at 70:30 blend ratio of TPU and PDMS (T70P30). Only 4% of hemolysis was observed for T70P30 blends, which establishes the hemocompatibility of the material. In comparison, the results reveal the potential of the cytocompatible T70P30 scaffold for the fabrication of skin substitutes for tissue engineering applications. © 2018 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater 107B: 1634-1644, 2019.
支架的组成和结构是决定皮肤替代物性能的最重要因素。在这项工作中,研究了 TPU-PDMS 共混物在 90:10、80:20 和 70:30 的 TPU 和 PDMS 混合比下的形态诱导的独特物理和生物学特性。共混物支架的纤维形态、孔隙率、表面润湿性和机械性能明显受 PDMS 的影响。有趣的是,支架结构从电纺纤维到多孔纤维变化,最后在微观结构中观察到 30% PDMS 存在时出现独特的多孔珠,这是使用 FESEM 确认的。微 CT 分析表明,随着 30 份 PDMS 的加入,电纺支架的孔隙率从 61%增加到 79%。此外,通过人皮肤成纤维细胞研究了 MTT 测定和细胞增殖,发现 PDMS 百分比显著提高。TPU-PDMS 共混物在 TPU 和 PDMS 的 70:30 混合比下提供了更好的整体性能(T70P30)。T70P30 共混物仅观察到 4%的溶血,这确立了材料的血液相容性。相比之下,结果表明,细胞相容性 T70P30 支架具有用于组织工程应用的皮肤替代物制造的潜力。©2018 威利父子公司。生物医学材料研究杂志 B 部分:应用生物材料 107B:1634-1644,2019。