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Description UV–vis evaluation of the liberation of Bromophenol Blue (0.1 mm) entrapped in the hydrogel formed by SucIleCsa.
Article Title: A Dual Stimuli Responsive Supramolecular Gel Provides Insulin Hydrolysis Protection and Redox‐Controlled Release of Actives
Publication Title: Macromolecular Chemistry and Physics -
Description Structure of the studied compounds SucIleCsa, GltValCsa, and related compounds 1 and 2.
Article Title: A Dual Stimuli Responsive Supramolecular Gel Provides Insulin Hydrolysis Protection and Redox‐Controlled Release of Actives
Publication Title: Macromolecular Chemistry and Physics -
Description Selected 1H NMR spectra from the kinetic study of SucIleCsa gel disassembly in the presence of TCEP.
Article Title: A Dual Stimuli Responsive Supramolecular Gel Provides Insulin Hydrolysis Protection and Redox‐Controlled Release of Actives
Publication Title: Macromolecular Chemistry and Physics -
Description Top: TEM images of the xerogels. Bottom: CSLM images of the hydrogels stained with Nile red.
Article Title: A Dual Stimuli Responsive Supramolecular Gel Provides Insulin Hydrolysis Protection and Redox‐Controlled Release of Actives
Publication Title: Macromolecular Chemistry and Physics -
Description Calculated species distribution diagram for SucIleCsa (15 mm).
Article Title: A Dual Stimuli Responsive Supramolecular Gel Provides Insulin Hydrolysis Protection and Redox‐Controlled Release of Actives
Publication Title: Macromolecular Chemistry and Physics -
Description Left: images of insulin‐loaded hydrogels in the presence of 0.2 m phosphate buffer (pH 7.4) at different time intervals. Right: Wells used in the ELISA evaluation of insulin concentration. Yellow...
Article Title: A Dual Stimuli Responsive Supramolecular Gel Provides Insulin Hydrolysis Protection and Redox‐Controlled Release of Actives
Publication Title: Macromolecular Chemistry and Physics -
Description Pictorial representation of entrapment of insulin in a molecular gel and its pH change promoted liberation.
Article Title: A Dual Stimuli Responsive Supramolecular Gel Provides Insulin Hydrolysis Protection and Redox‐Controlled Release of Actives
Publication Title: Macromolecular Chemistry and Physics