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Silk micrococoons for protein stabilisation and molecular encapsulation

机译:用于蛋白质稳定和分子包封的丝绸微囊

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摘要

Naturally spun silks generate fibres with unique properties, including strength, elasticity and biocompatibility. Here we describe a microfluidics-based strategy to spin liquid native silk, obtained directly from the silk gland of Bombyx mori silkworms, into micron-scale capsules with controllable geometry and variable levels of intermolecular β-sheet content in their protein shells. We demonstrate that such micrococoons can store internally the otherwise highly unstable liquid native silk for several months and without apparent effect on its functionality. We further demonstrate that these native silk micrococoons enable the effective encapsulation, storage and release of other aggregation-prone proteins, such as functional antibodies. These results show that native silk micrococoons are capable of preserving the full activity of sensitive cargo proteins that can aggregate and lose function under conditions of bulk storage, and thus represent an attractive class of materials for the storage and release of active biomolecules.
机译:天然纺丝产生的纤维具有独特的特性,包括强度,弹性和生物相容性。在这里,我们描述了一种基于微流控的策略,将直接从家蚕蚕体的丝腺中获得的液态天然蚕丝纺成微米级的胶囊,这些胶囊的几何形状可控,蛋白质壳中的分子间β-折叠含量可变。我们证明,这种微茧可以在内部储存本来高度不稳定的液态天然蚕丝几个月,而对其功能没有明显影响。我们进一步证明,这些天然丝微茧能够有效封装,存储和释放其他易于聚集的蛋白质,例如功能性抗体。这些结果表明,天然丝微茧能够保留敏感的货物蛋白质的全部活性,这些货物在大容量存储条件下会聚集并丧失功能,因此代表了一类有吸引力的用于存储和释放活性生物分子的材料。

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