Agrimony total flavone extract, preparing method and applications thereof
A technology of extracts and total flavonoids, applied in the field of preparation of cardiovascular and cerebrovascular drugs, to achieve the effect of fewer procedures, shortened production cycle, and removal of harmful metals or metalloid elements
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Embodiment 1
[0024] Example 1 Extraction and Purification of Agrimony Total Flavonoids Extract
[0025] Add 10kg of Agrimony whole herb and 80L of water to the extraction tank, boil for 2 hours, drain the extract from the bottom of the extraction tank, add 50L of water and extract for 1.5 hours under the same conditions. The two extracts were combined by filtration. The extract was concentrated under reduced pressure and dried to obtain 2 kg of extract.
[0026] Add 10kg of Agrimony whole herb and 70L of 60% ethanol to the extraction tank, boil for 2 hours, release the extract from the bottom of the extraction tank, add 50L of 60% ethanol and extract for 1.5 hours under the same conditions. The two extracts were combined by filtration. The extract was concentrated under reduced pressure and dried to obtain 1.7kg of extract.
[0027]Disperse 50 g of extract in 0.5 L of water, extract with 0.5 L of n-butanol, repeat 3 times, combine the extracts to recover n-butanol under reduced pressure...
Embodiment 2
[0029] The content detection of embodiment 2 Agrimony total flavonoids extract
[0030] Preparation of standard curve: Accurately weigh 10.0000 mg of rutin standard substance and dissolve in 50% ethanol aqueous solution, and dilute to 25 mL to obtain 400 μg / mL rutin standard solution. Accurately measure 0.0, 0.5, 1.0, 1.5, 2.0, 2.5mL of the above rutin standard solution into a 10mL volumetric flask, add 50% ethanol aqueous solution to make up 5mL, add 5% NaNO successively 2 and 10% Al(NO 3 ) 3 0.3 mL each, mix and stand for 5 minutes, add 4 mL of 4% NaOH solution, and finally use 50% ethanol aqueous solution to make up the volume, mix and stand for 10 minutes, then measure the absorbance A at 510 nm. Get the standard curve regression equation: y=0.9756x+0.0018, R 2 =0.9995
[0031] Determination: Accurately weigh 6.0000 mg of Agrimony total flavonoid extracts A and B, dissolve them in 50% ethanol aqueous solution, and dilute to 10 mL to obtain a test solution of 600 μg / mL....
Embodiment 3
[0033] Antioxidant activity experiment of embodiment 3 Agrimony total flavonoids extract
[0034] (1) The role of scavenging DPPH free radicals in vitro
[0035] DPPH was prepared into a 0.65mM solution with absolute ethanol and diluted immediately before use. The concentration of DPPH solution is linearly related to its absorbance at 517nm in the range of 0.01mM~0.08mM, and its linear regression equation is: A=0.1337c(DPPH)-0.0091, R 2 = 0.9981.
[0036] Take 0.1mL of sample solutions of different concentrations, add 1.9mL of 0.065mM DPPH solution and mix well. React at room temperature for a certain period of time, and measure the absorbance A at 517nm i . The corresponding solvent was used instead of the sample as a blank control, and the absorbance was A max , the absorbance of the corresponding sample solution is A 0 . Three parallel samples were made for each sample, and the average value was taken. The scavenging activity of DPPH free radicals is calculated acco...
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