Department of Biofibers and Biomaterials Science, Kyungpook National University, Daegu 41566, Republic of Korea.
Preclinical Research Center, Daegu-Gyeongbuk Medical Innovation Foundation, Daegu 41061, Republic of Korea.
Int J Mol Sci. 2023 Jul 14;24(14):11485. doi: 10.3390/ijms241411485.
In this study, five different nonwoven silk fabrics were fabricated with silk fibers from different cocoon layers, and the effect of the cocoon layer on the structural characteristics and properties of the nonwoven silk fabric was examined. The diameter of the silk fiber and thickness of the nonwoven silk fabric decreased from the outer to the inner cocoon layer. More amino acids with higher hydrophilicity (serine, aspartic acid, and glutamic acid) and lower hydrophilicity (glycine and alanine) were observed in the outer layers. From the outer to the inner layer, the overall crystallinity and contact angle of the nonwoven silk fabric increased, whereas its yellowness index, moisture retention, and mechanical properties decreased. Regardless of the cocoon layer at which the fiber was sourced, the thermal stability of fibroin and sericin and good cell viability remained unchanged. The results of this study indicate that the properties of nonwoven silk fabric can be controlled by choosing silk fibers from the appropriate cocoon layers. Moreover, the findings in this study will increase the applicability of nonwoven silk fabric in the biomedical and cosmetic fields, which require specific properties for industrialization.
在这项研究中,使用来自不同蚕茧层的丝纤维制备了五种不同的非织造丝织物,并研究了蚕茧层对非织造丝织物结构特征和性能的影响。丝纤维的直径和非织造丝织物的厚度从外到内蚕茧层逐渐减小。在外层观察到更多具有更高亲水性(丝氨酸、天冬氨酸和谷氨酸)和较低亲水性(甘氨酸和丙氨酸)的氨基酸。从外到内,非织造丝织物的整体结晶度和接触角增加,而黄度指数、保水率和机械性能降低。无论纤维来自哪个蚕茧层,丝素和丝胶的热稳定性以及良好的细胞活力保持不变。这项研究的结果表明,可以通过选择来自适当蚕茧层的丝纤维来控制非织造丝织物的性能。此外,本研究的结果将提高非织造丝织物在生物医学和化妆品领域的适用性,这些领域需要特定的性能才能实现工业化。