Thongnuek Peerapat, Kanokpanont Sorada, Uttayarat Pimpon, Damrongsakkul Siriporn
Center of Excellence in Biomaterial Engineering for Medical and Health, Chulalongkorn University, Bangkok 10330, Thailand.
Biomedical Engineering Program, Faculty of Engineering, Chulalongkorn University, Bangkok 10330, Thailand.
Polymers (Basel). 2023 Sep 12;15(18):3734. doi: 10.3390/polym15183734.
Gamma irradiation, which is one of the more conventional sterilization methods, was used to induce the hydrogelation of silk fibroin in this study. The physical and chemical characteristics of the irradiation-induced silk fibroin hydrogels were investigated. Silk fibroin solution with a concentration greater than 1 wt% formed hydrogel when irradiated by gamma rays at a dose of 25 or 50 kGy. The hydrogel induced by 50 kGy of radiation was more thermally stable at 80 °C than those induced by 25 kGy of radiation. When compared to the spontaneously formed hydrogels, the irradiated hydrogels contained a greater fraction of random coils and a lower fraction of β-sheets. This finding implies that gelation via gamma irradiation occurs via other processes, in addition to crystalline β-sheet formation, which is a well-established mechanism. Our observation suggests that crosslinking and chain scission via gamma irradiation could occur in parallel with the β-sheet formation. The irradiation-induced hydrogels were obtained when the solution concentration was adequate to support the radiation crosslinking of the silk fibroin chains. This work has, therefore, demonstrated that gamma irradiation can be employed as an alternative method to produce chemical-free, random coil-rich, and sterilized silk fibroin hydrogels for biomedical applications.
伽马辐射是较为传统的灭菌方法之一,在本研究中用于诱导丝素蛋白发生水凝胶化。对辐射诱导的丝素蛋白水凝胶的物理和化学特性进行了研究。浓度大于1 wt%的丝素蛋白溶液在25或50 kGy剂量的伽马射线照射下形成水凝胶。50 kGy辐射诱导的水凝胶在80°C时比25 kGy辐射诱导的水凝胶热稳定性更高。与自发形成的水凝胶相比,辐照水凝胶中无规卷曲的比例更高,β-折叠的比例更低。这一发现意味着,除了已确立的通过形成结晶β-折叠进行凝胶化的机制外,伽马辐射诱导的凝胶化还通过其他过程发生。我们的观察表明,伽马辐射引起的交联和链断裂可能与β-折叠的形成同时发生。当溶液浓度足以支持丝素蛋白链的辐射交联时,可获得辐照诱导的水凝胶。因此,这项工作表明,伽马辐射可作为一种替代方法,用于生产无化学物质、富含无规卷曲且经过灭菌的丝素蛋白水凝胶,用于生物医学应用。