扩展底物光谱的纳米级表面工程活细胞。

W C Mak, K W Sum, D Trau, R Renneberg
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引用次数: 10

摘要

我们报道了利用层逐层(LbL)技术扩展底物光谱的活微生物细胞表面工程。以酵母菌Arxula adeninivorans LS3 (Arxula)为模型生物和生物模板。利用LbL技术,将Arxula细胞包被聚电解质和酶层。包封处理后,其生物活性得以保留。包裹在小针叶周围的聚合物胶囊为活细胞的表面工程提供了一个稳定的界面。聚电解质的LbL随后是乳酸氧化酶的酶层组装。外酶层为Arxula提供了额外的生物学功能,将不利的底物乳酸转化为有利的底物丙酮酸,从而扩展了生物体的底物光谱。此外,还研究了表面工程紫苏的胶囊稳定性和酶偶联稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanoscale surface engineered living cells with extended substrate spectrum.

We report on cell surface engineering of living microorganisms by using Layer-by-Layer (LbL) technology to extend the substrate spectrum. The yeast Arxula adeninivorans LS3 (Arxula) was employed as a model organism and biological template. By using LbL technology, Arxula cells were encapsulated by polyelectrolyte and enzyme layers. The biological activity of the Arxula was retained after the encapsulation process. The polymeric capsule surrounding the Arxula provides a stable interface for surface engineering of living cells. LbL of polyelectrolytes followed by an enzyme layer of lactate oxidase were assembled. The outer enzyme layer provides an additional biological function for Arxula to convert the unfavourable substrate lactate into the favourable substrate pyruvate, thus extending the substrate spectrum of the organism. Moreover, capsule stability and enzyme conjugate stability of the surface engineered Arxula were studied.

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