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Characterization and Scaled-Up Production of Azido-Functionalized Silk Fiber Produced by Transgenic Silkworms with an Expanded Genetic Code

机译:转基因蚕与扩展遗传密码产生的氮杂官能化丝纤维的表征及缩放生产

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摘要

The creation of functional materials from renewable resources has attracted much interest. We previously reported on the genetic code expansion of the domesticated silkworm Bombyx mori to functionalize silk fiber with synthetic amino acids such as 4-azido-L-phenylalanine (AzPhe). The azido groups act as selective handles for biorthogonal chemical reactions. Here we report the characterization and scaled-up production of azido-functionalized silk fiber for textile, healthcare, and medical applications. To increase the productivity of azido-functionalized silk fiber, the original transgenic line was hybridized with a high silk-producing strain. The F1 hybrid produced circa 1.5 times more silk fibroin than the original transgenic line. The incorporation efficiency of AzPhe into silk fibroin was retained after hybridization. The tensile properties of the azido-functionalized silk fiber were equal to those of normal silk fiber. Scaled-up production of the azido-functionalized silk fiber was demonstrated by rearing circa 1000 transgenic silkworms. Differently-colored fluorescent silk fibers were successfully prepared by click chemistry reactions, demonstrating the utility of the azido-functionalized silk fiber for developing silk-based materials with desired functions.
机译:来自可再生资源的功能材料的创建吸引了很多兴趣。我们以前报道了驯养蚕板米氏菌的遗传规范扩张,用合成氨基酸如4- azido-l-苯丙氨酸(二氮合)官能化丝纤维。 Azido群体充当双正交化学反应的选择性手柄。在这里,我们报告了纺织,医疗保健和医疗应用的Azido官能化丝绸纤维的表征和缩放生产。为了提高氮杂官能化丝纤维的生产率,原始转基因系用高丝绸产生的菌株杂交。 F1混合动力器产生了大约1.5倍的丝素蛋白比原始转基因线更多。杂交后,将氮杂掺入丝素蛋白的掺入效率。氮杂官能化丝纤维的拉伸性质等于正常丝纤维的抗纤维。通过饲养大约1000种转基因蚕,证明了叠氮官能化丝纤维的缩放生产。通过点击化学反应成功制备不同的荧光丝纤维,证明了氮杂官能化丝纤维的效用,用于使用所需功能呈现丝基材料。

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