AbstractCurcumin was complexed with β-CD using co-precipitation, freeze-drying and solvent evaporation methods. Co-precipitation enabled complex formation, as indicated by the FT-IR and FT-Raman techniques via the shifts in the peaks that were assigned to the aromatic rings of curcumin. In addition, photoacoustic spectroscopy and X-ray diffraction, with the disappearance of the band related to aromatic rings, by Gaussian fitting, and modifications in the spectral lines, respectively, also suggested complex formation. The possible complexation had an efficiency of 74% and increased the solubility of the pure colourant 31-fold. Curcumin–β-CD complex exhibited a sunlight stability 18% higher than the pure colourant. This material was stable to...
Core-shell nanofibers were designed via electrospinning using inclusion complex (IC) of model hydrop...
A water-free, ternary solvent mixture consisting of a natural deep eutectic solvent (NADES), ethanol...
ABSTRACT R1 R2 Mw RHC-1 -OCH3 -OCH3 396.42 RHC-2 -OCH3 -OH 368.37 RHC-3 -H -OH 308.32 RHC-4 -H -OC...
In the present work, the inclusion complexes between curcumin (CC) and β-cyclodextrin (β-CD) were ob...
Purpose: To evaluate the effect of the preparation method on the inclusion complex of curcumin and h...
Aim: Water insolubility, low potency, and instability are inherent problems of several herbal medici...
The effect of alpha-, beta-, and gamma-cyclodextrin (CD) and their hydroxygropylated (HP) derivative...
Curcumin is a bioactive constituent isolated from turmeric that has historically been used as a seas...
Curcumin (CURC) is endowed with many pharmacological properties, among these anti-inflammatory, anti...
Curcumin is a natural polyphenolic compound with anticancer, anti-inflammatory, and antioxidation p...
Background: Curcumin, a natural hydrophobic polyphenol, has been reported to have diverse pharmacolo...
Curcumin is an important natural pigment, which has many functions such as anti-oxidation, anti-infl...
The purpose of this study describes the formation of inclusion complex by coevaporation of curcumin ...
Curcumin has poor aqueous solubility and has bioavailability problems. Hence in the present study th...
[EN] Curcumin has uses as a food colorant and functional ingredient, these uses being restrained owi...
Core-shell nanofibers were designed via electrospinning using inclusion complex (IC) of model hydrop...
A water-free, ternary solvent mixture consisting of a natural deep eutectic solvent (NADES), ethanol...
ABSTRACT R1 R2 Mw RHC-1 -OCH3 -OCH3 396.42 RHC-2 -OCH3 -OH 368.37 RHC-3 -H -OH 308.32 RHC-4 -H -OC...
In the present work, the inclusion complexes between curcumin (CC) and β-cyclodextrin (β-CD) were ob...
Purpose: To evaluate the effect of the preparation method on the inclusion complex of curcumin and h...
Aim: Water insolubility, low potency, and instability are inherent problems of several herbal medici...
The effect of alpha-, beta-, and gamma-cyclodextrin (CD) and their hydroxygropylated (HP) derivative...
Curcumin is a bioactive constituent isolated from turmeric that has historically been used as a seas...
Curcumin (CURC) is endowed with many pharmacological properties, among these anti-inflammatory, anti...
Curcumin is a natural polyphenolic compound with anticancer, anti-inflammatory, and antioxidation p...
Background: Curcumin, a natural hydrophobic polyphenol, has been reported to have diverse pharmacolo...
Curcumin is an important natural pigment, which has many functions such as anti-oxidation, anti-infl...
The purpose of this study describes the formation of inclusion complex by coevaporation of curcumin ...
Curcumin has poor aqueous solubility and has bioavailability problems. Hence in the present study th...
[EN] Curcumin has uses as a food colorant and functional ingredient, these uses being restrained owi...
Core-shell nanofibers were designed via electrospinning using inclusion complex (IC) of model hydrop...
A water-free, ternary solvent mixture consisting of a natural deep eutectic solvent (NADES), ethanol...
ABSTRACT R1 R2 Mw RHC-1 -OCH3 -OCH3 396.42 RHC-2 -OCH3 -OH 368.37 RHC-3 -H -OH 308.32 RHC-4 -H -OC...