首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Synergistic effects of gelatin and nanotopographical patterns on biomedical PCL patches for enhanced mechanical and adhesion properties
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Synergistic effects of gelatin and nanotopographical patterns on biomedical PCL patches for enhanced mechanical and adhesion properties

机译:明胶和纳米检测模式对增强机械和粘合性能的生物医学PCL贴剂的协同作用

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Biomedical patches have been known as important biomaterial-based medical devices for the clinical treatment of tissue and organ diseases. Inspired by the extracellular matrix-like aligned nanotopographical pattern as well as the unique physical and biocompatible properties of gelatin, we developed strength-enhanced biomedical patches by coating gelatin onto the nanopatterned surface of polycaprolactone (PCL). The relative contributions of the nanotopographical pattern (physical factor) and gelatin coating (chemical factor) in enhancing the mechanical and adhesive properties of PCL were quantitatively investigated. The nanotopographical pattern increased the surface area of PCL, allowing more gelatin to be coated on its surface. The biomedical patch made from gelatin-coated nanopatterned PCL showed strong mechanical and adhesive properties (tensile strength: similar to 14.5 MPa; Young's modulus: similar to 60.2 MPa; and normal and shear adhesive forces: similar to 1.81 N/cm(2) and similar to 352.3 kPa) as well as good biocompatibility. Although the nanotopographical pattern or gelatin coating alone could enhance these physical properties of PCL in both dry and wet environmental conditions, both factors in combination further strengthened the properties, indicating the importance of synergistic cues in driving the mechanical behavior of biomedical materials. This strength-enhanced biomedical patch will be especially useful for the treatment of tissues such as cartilage, tendon, and bone.
机译:生物医学贴片被认为是临床治疗组织和器官疾病的重要生物材料医疗设备。受细胞外基质样排列的纳米形貌图案以及明胶独特的物理和生物相容性的启发,我们通过在聚己内酯(PCL)的纳米图案表面涂覆明胶,开发了增强强度的生物医学贴片。定量研究了纳米形貌(物理因素)和明胶涂层(化学因素)在提高PCL力学性能和粘接性能方面的相对贡献。纳米形貌图案增加了PCL的表面积,允许在其表面涂覆更多明胶。由明胶包裹的纳米图案PCL制成的生物医用贴片显示出强大的机械和粘合性能(拉伸强度:类似于14.5 MPa;杨氏模量:类似于60.2 MPa;法向和剪切粘合力:类似于1.81 N/cm(2),类似于352.3 kPa),以及良好的生物相容性。尽管纳米形貌图案或明胶涂层单独可在干燥和潮湿环境条件下增强PCL的这些物理性能,但这两个因素的组合进一步增强了性能,表明协同线索在驱动生物医学材料的机械行为方面的重要性。这种增强强度的生物医用贴片将特别适用于软骨、肌腱和骨等组织的治疗。

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