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Figure 5 Structures of genistein and E2.
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Figure 1 Chemical structure of genistein.
Compare the molecular structure of genistein, a common soy isoflavone, with that of estradiol, the most abundant human estrogen in women during their reproductive years.
The structure of genistein myristate was elucidated using FTIR and MS spectra.
Fluorescence quenching methods in combination with Fourier transform infrared (FT-IR) spectroscopy and circular dichroism (CD) spectroscopy was used to determine the binding mode, the binding constant and the protein structure changes in the presence of genistein in aqueous solution.
TTR GEN crystal complexes and isothermal titration calorimetry (ITC) experiments showed that the binding mechanisms of genistein to the TTRwt and to V30M are different and are dependent on apoTTR structure conformations.
The antioxidative properties of genistein, combined with its capacity to activate antioxidant systems, reduce lipid peroxidation and stabilize cell membrane structure [ 9, 10].
The actual amounts of genistein in the final membranes have been quantified as a function of the genistein in feed.
The cyclodextrins presumably cover the surface of genistein.
An improved anti-inflammatory activity of genistein was detected when genistein was incorporated in the two β-CDs.
The actual amounts of genistein incorporated in the PES/PVP membranes were determined as a function of weight percent of genistein in feed.
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