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Physical Properties and In Vitro Biocompatible Evaluation of Silicone-Modified Polyurethane Nanofibers and Films

机译:硅氧烷改性聚氨酯纳米纤维和薄膜的物理性质和体外生物相容性评价

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摘要

In this study, the physical properties and the biocompatibility of electrospun silicone-modified polyurethane (PUSX) nanofibers were discussed and compared with PUSX films. To investigate the effects of different structures on the physical properties, tensile strength, elongation at break, Young’s modulus, water retention, water contact angle (WCA) and thermal conductivity measurements were performed. To prove the in vitro biocompatibility of the materials, cell adhesion, cell proliferation, and cytotoxicity were studied by NIH3T3 mouse embryonic fibroblasts cells following by lactate dehydrogenase (LDH) analysis. As a conclusion, the mechanical properties, water retention, and WCA were proven to be able to be controlled and improved by adjusting the structure of PUSX. A higher hydrophobicity and lower thermal conductivity were found in PUSX nanofibers compared with polyurethane (PU) nanofibers and films. An in vitro biocompatibility evaluation shows that the cell proliferation can be performed on both PUSX nanofibers and films. However, within a short period, cells prefer to attach and entangle on PUSX nanofibers rather than PUSX films. PUSX nanofibers were proven to be a nontoxic alternative for PU nano-membranes or films in the biomedical field, because of the controllable physical properties and the biocompatibility.
机译:在该研究中,讨论了电纺器硅氧烷改性聚氨酯(PUSX)纳米纤维的物理性质和生物相容性并与PUSX膜进行比较。为了探讨不同结构对物理性质,拉伸强度,断裂伸长的影响,杨氏模量,水保持,水接触角(WCA)和导热率测量。通过NIH3T3小鼠胚胎成纤维细胞通过乳酸脱氢酶(LDH)分析,研究了材料的体外生物相容性,细胞粘附,细胞增殖和细胞毒性。作为结论,通过调整PUSX的结构,证明能够控制和改善机械性能,水保持和WCA。与聚氨酯(PU)纳米纤维和薄膜相比,在PUSX纳米纤维中发现了较高的疏水性和较低的导热率。体外的生物相容性评价表明,细胞增殖可以在PUSX纳米纤维和薄膜上进行。然而,在短时间内,细胞更倾向于在PUSX纳米纤维上而不是PUSX薄膜附着和缠结。由于可控的物理性质和生物相容性,被证明是生物医学领域的PU纳米膜或薄膜的无毒替代物。

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