Confining the Sol‐Gel Reaction at the Water/Oil Interface: Creating Compartmentalized Enzymatic Nano‐Organelles for Artificial Cells

Abstract: Living organisms compartmentalize their catalytic reactions in membranes for increased efficiency and selectivity. To mimic the organelles of eukaryotic cells, we develop a mild approach for in situ encapsulating enzymes in aqueous‐core silica nanocapsules. In order to confine the sol‐gel reaction at the water/oil interface of miniemulsion, we introduce an aminosilane to the silica precursors, which serves as both catalyst and an amphiphilic anchor that electrostatically assembles with negatively charged hydrolyzed alkoxysilanes at the interface. The semi‐permeable shell protects enzymes from proteolytic attack, and allows the transport of reactants and products. The enzyme‐carrying nanocapsules, as synthetic nano‐organelles, are able to perform cascade reactions when enveloped in a polymer vesicle, mimicking the hierarchically compartmentalized reactions in eukaryotic cells. This in situ encapsulation approach provides a versatile platform for the delivery of biomacromolecules.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Confining the Sol‐Gel Reaction at the Water/Oil Interface: Creating Compartmentalized Enzymatic Nano‐Organelles for Artificial Cells ; day:06 ; month:02 ; year:2023 ; extent:10
Angewandte Chemie / International edition. International edition ; (06.02.2023) (gesamt 10)

Creator
Gonçalves, Jenifer Pendiuk
Promlok, Duangkamol
Ivanov, Tsvetomir
Tao, Shijia
Rheinberger, Timo
Jo, Seong‐Min
Yu, Yingjie
Graf, Robert
Wagner, Manfred
Crespy, Daniel
Wurm, Frederik R.
Caire da Silva, Lucas
Jiang, Shuai
Landfester, Katharina

DOI
10.1002/anie.202216966
URN
urn:nbn:de:101:1-2023020714104862879435
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
14.08.2025, 10:44 AM CEST

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