the aglycone structure of this flavonoid was determined by nmr spectroscopy.
researchers isolated the aglycone moiety from the plant extract.
the aglycone derivative showed enhanced biological activity.
aglycone synthesis requires several chemical steps.
the aglycone metabolism varies among different species.
a new method for aglycone extraction was developed.
the aglycone identification was confirmed by mass spectrometry.
aglycone analysis revealed significant structural differences.
the aglycone content varies depending on the fruit ripeness.
the aglycone fraction was collected for further study.
phenolic aglycones contribute to the antioxidant properties.
the flavonoid aglycone exhibits anticancer potential.
the aglycone structure of this flavonoid was determined by nmr spectroscopy.
researchers isolated the aglycone moiety from the plant extract.
the aglycone derivative showed enhanced biological activity.
aglycone synthesis requires several chemical steps.
the aglycone metabolism varies among different species.
a new method for aglycone extraction was developed.
the aglycone identification was confirmed by mass spectrometry.
aglycone analysis revealed significant structural differences.
the aglycone content varies depending on the fruit ripeness.
the aglycone fraction was collected for further study.
phenolic aglycones contribute to the antioxidant properties.
the flavonoid aglycone exhibits anticancer potential.
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