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Nano on micro: tuning microbial metabolisms by nano-based artificial mediators to enhance and expand production of biochemicals

机译:纳米纳米微观:调节纳米人工介质的微生物代谢,增强和扩大生化生产

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Advances in synthetic biology and metabolic engineering across the past few decades have enabled the successful production of many novel chemicals. However, bioproduction of such chemicals is often limited by low yield and titer due to disrupted metabolic homeostasis. Finely tuning cellular metabolism to restore robust metabolic functions entails various genetic modifications, which is often not practical. Alternatively, artificial mediators capable of tailoring microbial metabolisms open a new avenue for restoring physiological functions. In this context, nanoparticle-based artificial mediators have been pursued to tune cellular metabolisms. They can not only enhance production of molecules from endogenous metabolism, but also expand bioproducts spectrum. Here, we reviewed recent advances toward the employment of nano-based artificial mediators for the tuning of cellular metabolism, with a focus on their positive effects on electron transfer and pathway flux. Perspectives for potential applications of artificial mediators for mediating microbial metabolisms in the future were also provided.
机译:过去几十年的合成生物学和代谢工程的进步使得成功地生产了许多新化学品。然而,由于破坏的代谢稳态,这种化学品的生物制造通常受到低产率和滴度的限制。精细调整细胞代谢恢复鲁棒代谢功能需要各种遗传修改,这通常不实用。或者,能够定制微生物代谢的人造介质开辟了一种恢复生理功能的新途径。在这种情况下,已追求基于纳米粒子的人工介质来调整细胞代谢。它们不仅可以增强来自内源性代谢的分子的产量,还可以扩大生物过程光谱。在这里,我们审查了最近朝着纳米人工介质的就业进展,以便调整细胞代谢的调整,重点是它们对电子转移和途径通量的积极影响。还提供了人造介质在未来中介导微生物代谢的潜在应用的透视。

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