Method for quickly measuring six types of soy isoflavones in feed additive
A technology of soybean isoflavones and feed additives, applied in the field of analytical chemistry, can solve the problems of few related reports and slow progress in the detection and research of soybean isoflavone content, and achieve the effects of high accuracy, rapid determination and good separation effect
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Embodiment 1
[0022] (1) The standard products purchased from Shanghai Tongtian Biotechnology Co., Ltd. were selected: six standard products of glycitein, daidzein, daidzein, daidzin, genistein, and genistin.
[0023] (2) Standard product preparation: Weigh daidzin, glycitin, genistin, daidzein, glycitein and genistein respectively 5mg, 4mg, 5mg, 5mg, 4mg, and 5mg of each of the six standard substances are accurate to 0.01mg, and they are dissolved in 80% ethanol to make up to 50mL, 100mL, 50mL, 50mL, 100mL and 50mL respectively. Concentrations of 100mg / L, 40mg / L, 100mg / L, 100mg / L, 40mg / L and 100mg / L were respectively prepared as standard mother solutions.
[0024] Take daidzein, daidzein, genistin, daidzein, daidzein and genistein 1mL, 2mL, 1mL, 1mL, 2mL, 1mL respectively to prepare mixed standards, the concentrations are 12.5mg / L, 10mg / L, 12.5mg / L, 12.5mg / L, 10mg / L and 12.5mg / L, as standard solution, for machine use.
[0025] (3) Sample pretreatment: Accurately weigh 0.1g of soybean iso...
Embodiment 2
[0032] Embodiment 2: Determination of the precision of 6 kinds of soybean isoflavones
[0033] Precision test: Accurately measure the prepared standard solution sample, inject samples continuously for 6 times according to the chromatographic conditions in Example 1 (4), and record the peak area of the chromatogram. The precision of six kinds of soybean isoflavones is shown in Table 2.
[0034] type
[0035] Table 2 Precision of 6 soybean isoflavones
Embodiment 3
[0036] Embodiment 3: linear regression equation, correlation coefficient, linear range of 6 kinds of soybean isoflavones
[0037] Inspection of the linear range: Precisely measure the prepared standard solution sample, dilute the standard concentration to different degrees, and record the chromatogram. Taking the peak area (Y) in the serial concentration standard solution as the ordinate, and the concentration X (μg / mL) as the abscissa, linear regression was carried out, and the results are shown in Table 3.
[0038]
[0039] Table 3 Linear regression equation, correlation coefficient and linear range of six soybean isoflavones
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