Mantovani Daniel, Cardozo Filho Lúcio, Santos Leonilda Correia, de Souza Vera Lúcia Ferreira, Watanabe Cecília Sumie
Department of Agronomy, State University of Maringa, Av. Colombo 5790, CEP 87020-900 Maringa, PR, Brazil.
J Chromatogr Sci. 2009 Oct;47(9):766-9. doi: 10.1093/chromsci/47.9.766.
Glycine max soybean and its derivates stand out as functional food due to its content being free of aglycon isoflavones and their respective beta-glucosides. This study is aimed at classifying and quantifying the isoflavones content in defatted soy flour (DSF) derivates and textured soy protein (TSP). From DSF and TSP samples found in the market, the soy protein isolates (SPI) and the soluble soy protein concentrate (SSPC) were obtained. The isoflavones were extracted from SPI and from SSPC, classified, and quantified through HPLC. The isoflavones daidzein and genistein and their glucosides daidzin, genistin, were found. For the SPI obtained from the TSP, values of beta-glucosides came out with an average of 32.08 mg/100 g. However, for the SPI obtained from the DSF, values averaged 13.32 +/- 0.172 mg/100 g. The highest content levels were observed in the derivates obtained from TSP. SPI was found with the lowest levels of daidzin in SSPC obtained from the DSF. Genistein was only observed in the supernatant, a derivate of SSPC obtained from TSP. During the derivatization process, losses of up to 35.7% of isoflavones in the precipitate occurred. Both SPI and SSPC, obtained from DSF and from TSP, presented great concentration of b-glucosides compounds.
由于其不含苷元异黄酮及其相应的β-葡萄糖苷,大豆及其衍生物成为功能性食品。本研究旨在对脱脂大豆粉(DSF)衍生物和组织化大豆蛋白(TSP)中的异黄酮含量进行分类和定量。从市场上获取的DSF和TSP样品中,得到了大豆分离蛋白(SPI)和可溶性大豆浓缩蛋白(SSPC)。通过高效液相色谱法(HPLC)从SPI和SSPC中提取、分类和定量异黄酮。发现了大豆苷元、染料木黄酮及其糖苷大豆苷、染料木苷。对于从TSP获得的SPI,β-葡萄糖苷的值平均为32.08mg/100g。然而,对于从DSF获得的SPI,其值平均为13.32±0.172mg/100g。在从TSP获得的衍生物中观察到最高含量水平。在从DSF获得的SSPC中发现SPI的大豆苷水平最低。仅在从TSP获得的SSPC衍生物上清液中观察到染料木黄酮。在衍生化过程中,沉淀物中异黄酮损失高达35.7%。从DSF和TSP获得的SPI和SSPC均呈现出高浓度的β-葡萄糖苷化合物。