ACS Nano · 2019 · 69 citations · 45 references
Cell surface engineering is an emerging technology to encapsulate cells in order to enhance their functions. However, methods for reversible encapsulation of cells with abiotic functionalities are rare. Herein, we describe a phenylboronic acid based click reaction for encapsulation of single yeast cells using mesoporous silica nanoparticles (MSNs). This encapsulation does not impact natural growth of the cells and leads to a significant enhancement of cell survival in a variety of hostile environments. Owing to the glucose-responsiveness of the boronate ester bond between cell surface polysaccharides and B(OH)<sub>2</sub>-grafted MSNs, encapsulation was reversible by addition or removal of glucose. This effort offers living cells effective protection under harsh conditions and enables reversible assembling-detaching of abiotic functions.
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Functionalized Monolayers on Ordered Mesoporous Supports
Xiaming Feng, G.E. Fryxell, L.-Q. Wang et al. · Science · 1997 · 1.6K citations
Materials Science, Functional Nanomaterials, Molecular Sieve +14
Architecture of the Yeast Cell Wall
R. KOLLÁR, Bruce B. Reinhold, Eva Petráková et al. · Journal of Biological Chemistry · 1997 · 633 citations · Full text