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Nanozyme-Based Artificial Organelles: An Emerging Direction for Artificial Organelles

期刊

SMALL
卷 18, 期 33, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.202202294

关键词

artificial organelles; biomedicine; compartmentalization; enzymes; nanozymes

资金

  1. National Natural Science Foundation of China [82122037, 81930050, 31900981]
  2. National Key Research and Development Program of China [2021YFC2102900]
  3. Strategic Priority Research Program of CAS [XDB29040101]
  4. CAS Interdisciplinary Innovation Team [JCTD-2020-08]
  5. Youth Innovation Promotion Association of Chinese Academy of Sciences [2019093]

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Artificial organelles are compartmentalized nanoreactors that mimic the functions of natural organelles through cascade catalytic activities. The emergence of nanozymes provides new ideas for the fabrication of artificial organelles. However, there are still challenges in expanding their functions, regulating activities, and targeted delivery.
Artificial organelles are compartmentalized nanoreactors, in which enzymes or enzyme-mimic catalysts exhibit cascade catalytic activities to mimic the functions of natural organelles. Importantly, research on artificial organelles paves the way for the bottom-up design of synthetic cells. Due to the separation effect of microcompartments, the catalytic reactions of enzymes are performed without the influence of the surrounding medium. The current techniques for synthesizing artificial organelles rely on the strategies of encapsulating enzymes into vesicle-structured materials or reconstituting enzymes onto the microcompartment materials. However, there are still some problems including limited functions, unregulated activities, and difficulty in targeting delivery that hamper the applications of artificial organelles. The emergence of nanozymes (nanomaterials with enzyme-like activities) provides novel ideas for the fabrication of artificial organelles. Compared with natural enzymes, nanozymes are featured with multiple enzymatic activities, higher stability, easier to synthesize, lower cost, and excellent recyclability. Herein, the most recent advances in nanozyme-based artificial organelles are summarized. Moreover, the benefits of compartmental structures for the applications of nanozymes, as well as the functional requirements of microcompartment materials are also introduced. Finally, the potential applications of nanozyme-based artificial organelles in biomedicine and the related challenges are discussed.

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