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Synthetic cells function as biological mimics of natural cells by mimicking salient features of cells such as metabolism, response to stimuli, gene expression, direct metabolism, and high stability. Droplet‐based microfluidic technology presents the opportunity for encapsulating biological functional components in uni‐lamellar liposome or polymer droplets. Verified by its success in the fabrication...
Glucose monitoring is essential to evaluate the degree of glucose metabolism disorders. The enzymatic determination has been the most widely used method in glucose detection because of its high efficiency, accuracy, and sensitivity. Noble metal nanomaterials (NMs, i.e., Au, Ag, Pt, and Pd), inheriting their excellent electronic, optical, and enzyme‐like properties, are classified as noble metal nanozymes...
In article number 2002073, Kemin Wang, Jianbo Liu, and co‐workers establish an artificial form of invasion‐defense mutual interactions in a community of coacervate protocells and living cells. The glucose oxidation in the liquid coacervates initiates the generation of hydrogen peroxide, which serves as a reactive oxygen species resource to block cell proliferation. As a defense strategy, introduction...
The design and construction of mutual interaction models between artificial microsystems and living cells have the potential to open a wide range of novel applications in biomedical and biomimetic technologies. In this study, an artificial form of invasion‐defense mutual interactions is established in a community of glucose oxidase (GOx)‐containing liquid coacervate microdroplets and living cells,...
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