Identification and characterization of anti-diabetic principle in Senna alata (Linn.) flower using alloxan-induced diabetic male Wistar rats

被引:11
|
作者
Uwazie, Judith Nkechiyere [1 ,2 ]
Yakubu, Musa Toyin [3 ]
Ashafa, Anofi Omotayo Tom [2 ]
Ajiboye, Taofeek Olakunle [4 ]
机构
[1] Nile Univ Nigeria, Fac Nat & Appl Sci, Dept Biochem, Abuja, Nigeria
[2] Univ Free State, Dept Plant Sci, Phytomed & Phytopharmacol Res Grp, Qwaqwa Campus, Phuthaditjhaba, South Africa
[3] Univ Ilorin, Dept Biochem, Phytomed Toxicol Reprod & Dev Biochem Res Lab, Ilorin, Nigeria
[4] Nile Univ Nigeria, Coll Hlth Sci, Dept Med Biochem, Antioxidant Redox Biol & Toxicol Res Lab, Abuja, Nigeria
关键词
Senna alata; Fabaceae; Anti-diabetic principle; Emodin; DENSITY-LIPOPROTEIN; NATURAL-PRODUCTS; AQUEOUS EXTRACT; CASSIA-ALATA; PATHOPHYSIOLOGY; CHOLESTEROL; MECHANISMS; MODEL; STEM;
D O I
10.1016/j.jep.2020.112997
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Ethno-pharmacological relevance: The age-long folkloric use of Senna alata flower (SAF) was recently substantiated with scientific evidence. However, the study did not account for the anti-diabetic principle(s) in SAF. Aim of the study: The study aimed to identify and characterize the bioactive principle(s) responsible for the antidiabetic activity in SAF. Materials and methods: Ninety-one male Wistar rats were used for the two phases of this study. In phase 1, forty-two of these were allotted into six groups (A-F) of seven rats each. Animals in group A received distilled water while those in groups B-F were made diabetic by treatment with 150 mg/kg body weight (b.w.) of alloxan. Group B received 0.5 mL of distilled water; C, D and E were treated each with 75 mg/kg b.w. of ethyl acetate, n-butanol and aqueous residual fractions of SAF, while F received 2.5 mg/kg b.w. of glibenclamide. In the second phase, forty-nine rats were assigned into seven groups (A-G) of seven rats each. Group A received distilled water. Animals in Groups B-G were also made diabetic by alloxan treatment. B received 0.5 mL of distilled water; C, D, E and F were treated with 5.77, 25.96, 15.40, 27.87 mg/kg b.w (equivalent dose of 75 mg/kg b.w.) of sub-fractions obtained from the ethyl acetate fraction of SAF respectively whereas G received 2.5 mg/kg b.w. of glibenclamide. Fasting blood glucose (FBG), serum lipids, albumin, globulin, liver glycogen, urine ketone, hexokinase and glucose-6-phosphate dehydrogenase activities, a-glucosidase and a-amylase inhibitory activities and cardiac function indices were evaluated using standard methods. Compounds D, E and F isolated from ethyl acetate sub-fraction B were evaluated for in vitro anti-diabetic activity. The structure of the anti-diabetic compound was identified using FTIR, H-1-NMR, C-13-NMR, HCOSY, HSQC and HMBC. Data were subjected to Analysis of Variance and Duncan Multiple Range Test at p < 0.05. Results: Alloxan treatment increased the levels of FBG, total cholesterol, LDL-cholesterol, VLDL-cholesterol, urine ketone and cardiac function indices and reduced the levels of globulin, albumin, HDL-cholesterol, globulin, liver glycogen, hexokinase and glucose-6-phosphate dehydrogenase activities. Ethyl acetate fraction and sub-fraction B reversed the level and/or activities of these biochemical indices to levels and/or activities that compared favourably with the distilled water treated non-diabetic animals. Of the three compounds (D, E and F) that were obtained from the sub-fraction B, compound E which was Emodin (1, 3, 8-trihydroxy-6-methylanthraquinone) produced the highest a-glucosidase and a-amylase inhibitory activities. Conclusion: Emodin is one of the bioactive constituents present in Senna alata flower.
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页数:15
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