Physicochemical and Binder Properties of Starch Obtained from Cyperus esculentus
The purpose of this study was to isolate starch from the tubers of Cyperus esculentus L. and evaluate its physicochemical and binder properties. Extraction of starch using sodium metabisulfite yielded 37 g of starch per 100 g of the tubers. Scanning electron microscopy indicated that Cyperus starch...
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Veröffentlicht in: | AAPS PharmSciTech 2012-06, Vol.13 (2), p.379-388 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The purpose of this study was to isolate starch from the tubers of
Cyperus esculentus L.
and evaluate its physicochemical and binder properties. Extraction of starch using sodium metabisulfite yielded 37 g of starch per 100 g of the tubers. Scanning electron microscopy indicated that
Cyperus
starch consists of oval to elliptical particles with a smooth surface.
Cyperus
starch demonstrates a narrow particle size distribution with a mean of 8.25 μm.
Cyperus
starch conforms well to United States Pharmacopeia standards established for widely used starches like maize and potato. The X-ray powder diffraction pattern and moisture sorption profile of
Cyperus
starch were comparable to that of maize starch.
Cyperus
starch had lower swelling power than maize and potato starch, indicative of stronger associative forces within the granules. Carr’s index and Hausner ratio indicate that
Cyperus
starch should have comparable flow properties with respect to maize and potato starch.
Cyperus
starch was employed as binder for the formulation of metronidazole tablets. Formulations containing 5%, 7.5%, and 10%
Cyperus
starch were compared with those containing 10% potato starch. At 10% binder concentration, the tablets containing
Cyperus
starch exhibited better hardness and negligible friability as compared with those with potato starch. Although the binder concentration had a significant effect on the disintegration time of the tablets, it did not seem to affect the dissolution profile. These results indicate that
Cyperus
starch provides excellent binding properties without compromising drug release characteristics and should be explored in pharmaceutical formulations. |
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ISSN: | 1530-9932 1530-9932 |
DOI: | 10.1208/s12249-012-9761-z |