Hollyhock extract, preparation method and use for treating diabetes and its complications
A technology of hollyhocks and extracts, which can be applied in the directions of urinary system diseases, medical preparations containing active ingredients, metabolic diseases, etc., can solve the problems of less hollyhock extracts, etc.
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Embodiment 1
[0022] Weigh the hollyhock herb group, each 1.0kg, take one group and use 3L (60-90°C) petroleum ether (gasoline can also be used instead of petroleum ether in industrial production) to reflux and extract for 3 times to obtain a small polar solvent reflux liquid and residue I;
[0023] TLC analysis of the reflux liquid of the small polar solvent showed no particularly obvious spots at 254nm and 365nm, and the concentrated sulfuric acid-vanillin color reagent was sprayed to show yellow (strip tailing), judging that this part mainly contains fatty acids and their esters class of compounds.
[0024] Residue Ⅰ was reflux extracted with 80% ethanol or methanol for 3 times, and the amount of solvent was 5 times of the weight of the medicinal material to obtain alcohol solvent reflux liquid A and residue Ⅱ. Reserve sample alcohol solvent reflux liquid A; - The color reaction of magnesium powder was detected and identified. At the same time, spectrophotometry was used to measure the ...
Embodiment 2
[0032] Diabetic nephropathy (DN) is one of the microvascular complications of diabetes. With the rising incidence of diabetes, DN has become the main cause of end-stage renal disease. It has important clinical and social significance to explore its pathogenesis and prevention methods. Peroxisome proliferator-activated receptor (VEroxi-some proliferator-activated receptor, PPAR) is one of the ligand-activated transcription factors in the nuclear receptor superfamily, with three subtypes: PPARα, PPARβ (PPARβ / δ ), PPARγ.
[0033] Studies have found that PPARβ is widely distributed and is highly expressed in islets, cardiac muscle, skeletal muscle, adipose tissue, skin, and brain tissue. Studies have also found that in skeletal muscle, cardiac muscle, and adipose tissue, PPARβ can enhance the oxidation and utilization of fatty acids, and is an upstream regulator of fatty acid oxidase. PPARβ is therefore regarded as a new and powerful therapeutic target for metabolic syndrome. Ho...
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