Spontaneous Fusion of Core‐Shell Nanocapsules with Oil Cores and Oppositely Charged Polysaccharide Shells

Author:

Odrobińska‐Baliś Joanna12ORCID,Gumieniczek–Chłopek Elżbieta3ORCID,Uchacz Tomasz2ORCID,Banachowicz Piotr24ORCID,Medaj Aneta25ORCID,Zapotoczny Szczepan2ORCID

Affiliation:

1. Institute of Catalysis and Surface Chemistry Polish Academy of Sciences Niezapominajek 8 Krakow 30–239 Poland

2. Faculty of Chemistry Jagiellonian University Gronostajowa 2 Krakow 30–387 Poland

3. Faculty of Physics and Applied Computer Science AGH University of Krakow A. Mickiewicza Avenue 30 Krakow 30–059 Poland

4. Institute of Organic Chemistry Polish Academy of Sciences Kasprzaka 44/52 Warsaw 01–224 Poland

5. Doctoral School of Exact and Natural Sciences Jagiellonian University Prof. St. Lojasiewicza 11 Krakow 30–348 Poland

Abstract

AbstractPolymer nanocapsules with hydrophobic cores are promising candidates for nanoreactors to carry out (bio)chemical reactions mimicking the performance of natural cellular systems. Their architecture allows reagents to be encapsulated in the cores enabling reactions to proceed in confined environments in a controlled, and efficient manner. Polysaccharide‐shell oil‐core nanocapsules are proposed here as facile mergeable nanoreactors. Spontaneous fusion of oppositely charged polysaccharide capsules is demonstrated for the first time. Such capsules are formed and easily loaded with reagents by nanoemulsification of an aqueous solution of hydrophobically modified polysaccharides (chitosan, hyaluronate) and oleic acid with dissolved desired hydrophobic compounds. Efficient fusion of the formed nanocapsules dispersed in an aqueous medium at optimized conditions (pH, ionic strength) is followed using fluorescence microscopy by labeling both their cores and shells with fluorescent dyes. As a proof of concept, a model fluorogenic synthesis is also realized by fusing the capsules containing separated reagents and the catalyst. The nanocapsules and fusion process developed here establish a platform for realization of versatile reactions in a confined environment including model studies on biologically relevant processes taking place in natural systems.

Funder

Narodowe Centrum Nauki

Publisher

Wiley

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