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首页> 外文期刊>Advanced drug delivery reviews >Genetic engineering of fibrous proteins: spider dragline silk and collagen.
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Genetic engineering of fibrous proteins: spider dragline silk and collagen.

机译:纤维蛋白的基因工程:蜘蛛牵引丝和胶原蛋白。

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摘要

Various strategies have been employed to genetically engineer fibrous proteins. Two examples, the subject of this review, include spider dragline silk from Nephila clavipes and collagen. These proteins are highlighted because of their unique mechanical and biological properties related to controlled release, biomaterials and tissue engineering. Cloning and expression of native genes and synthetic artificial variants of the consensus sequence repeats from the native genes has been accomplished. Expression of recombinant silk and collagen proteins has been reported in a variety of host systems, including bacteria, yeast, insect cells, plants and mammalian cells. Future utility for these proteins for biomedical materials is expected to increase as needs expand for designer materials with tailored mechanical properties and biological interactions to elicit specific responses in vitro and in vivo.
机译:已经采用了各种策略对纤维蛋白进行基因工程改造。本文的主题是两个例子,分别是Nephila clavipes的蜘蛛牵引丝和胶原蛋白。这些蛋白质因其与控释,生物材料和组织工程相关的独特机械和生物学特性而受到关注。已经完成了天然基因的克隆和表达以及来自天然基因的共有序列重复序列的合成人工变体。重组蚕丝和胶原蛋白的表达已在多种宿主系统中报道,包括细菌,酵母,昆虫细胞,植物和哺乳动物细胞。这些蛋白质用于生物医学材料的未来用途有望随着对设计材料的需求的增长而增加,这些设计材料具有定制的机械性能和生物相互作用以在体外和体内引起特定反应。

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