INVESTIGADORES
HERRERA Santiago Esteban
artículos
Título:
Insulin‐Delivery from Glucose‐Responsive Self‐Assembled Polyamine Nanoparticles: Smart "Sense‐and‐Treat" Nanocarriers Made Easy
Autor/es:
AGAZZI, MAXIMILIANO; HERRERA, SANTIAGO; CORTEZ, M. LORENA; MARMISOLLÉ, WALDEMAR; TAGLIAZUCCHI, MARIO; AZZARONI, OMAR
Revista:
CHEMISTRY-A EUROPEAN JOURNAL
Editorial:
WILEY-V C H VERLAG GMBH
Referencias:
Año: 2019
ISSN:
0947-6539
Resumen:
Polyamine‐salt aggregates (PSA) are biomimetic soft‐materials that have attracted great attention due to their straightforward fabrication methods, high drug‐loading efficiencies and attractive properties for pH‐triggered release. Here, a simple and fast multicomponent self‐assembly process was used to construct crosslinked poly(allylamine hydrochloride)/phosphate PSAs (hydrodynamic diameter of 360 nm) containing glucose oxidase enzyme, as a glucose‐responsive element, and human recombinant insulin, as a therapeutic agent for the treatment of diabetes mellitus (GI‐PSA). The addition of increasing glucose concentrations promotes the release of insulin due to the disassembly of the GI‐PSAs triggered by the catalytic in‐situ formation of gluconic acid. While under normoglycemia, the GI‐PSA integrity remained intact for at least 24 h, hyperglycemic conditions produced a 100% of cargo releasing after 4 h of glucose addition. This entirely supramolecular strategy presents great potential for the construction of smart glucose‐responsive delivery nanocarriers.