CurcuminanimalAnimal model2011

Cooperative binding and stabilization of the medicinal pigment curcumin by diamide linked γ-cyclodextrin dimers: a spectroscopic characterization.

The journal of physical chemistry. B

confidence

Key findings

Diamide-linked gamma-CD dimers stabilize curcumin in water, extending half-life from <30 min to >16 h; no clinical/biological endpoints reported.

View source on PubMed (PMID 21194191) ↗

Population
In vitro (spectroscopic study)
Blinding
not_reported
Controls
none
Drug class
polyphenol
Full abstract

Diamide linked &#x3b3;-cyclodextrin (&#x3b3;-CD) dimers are used to capture curcumin and suppress its decomposition in water. In this study, succinamide and urea linked &#x3b3;-CD dimers joined through the C6(A) carbon on each &#x3b3;-CD are used. The &#x3b3;-CD dimers, 66&#x3b3;CD(2)su and 66&#x3b3;CD(2)ur, show a remarkable ability to suppress the decomposition of curcumin and extend its half-life from less than 30 min to greater than 16 h. The 1:1 association of curcumin with 66&#x3b3;CD(2)su and 66&#x3b3;CD(2)ur has high stability constants of 8.7 &#xd7; 10(6) M(-1) and 2.0 &#xd7; 10(6) M(-1), respectively. In addition, 2D (1)H NOESY NMR results show specific hydrogen interactions in the association of curcumin with 66&#x3b3;CD(2)su and 66&#x3b3;CD(2)ur, consistent with the cooperative binding of curcumin by both &#x3b3;-CD annuli of 66&#x3b3;CD(2)su and 66&#x3b3;CD(2)ur. The interactions between curcumin in the linked &#x3b3;-CD dimers and surfactant micelles were studied using fluorescence spectroscopy. While linked &#x3b3;-CD dimer-bound curcumin has a negligible fluorescence quantum yield, a significant increase in fluorescence intensity (&#x3a6;(fl) &gt; 2%) in the presence of micelles suggests that curcumin is delivered to the micelle. The overall results indicate that the diamide linked &#x3b3;-CD dimers are highly promising systems for curcumin delivery in vivo due to effective curcumin stabilization.

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