Effect of Dried Leaf Powders and Ethanol Extracts of Perilla Frutescens, Artemisia Princeps Var. Orientalis and Aster Scaber on Lipid Metabolism and Antioxidative Capacity in Rats

깻잎, 쑥, 참취의 건분 및 에탄올 추출물이 흰쥐의 지방대사와 항산화능에 미치는 영형

  • 김주희 (이화여자대학교 식품영양학과)
  • Published : 1999.07.01

Abstract

This study was performed to investigate the effects of dried leaf powders and ethanol extracts of Perilla frutescens(perilla leaf), Artemisia princeps var. orientalis(mugwort) and Aster scaber(chamchui) on lipid metabolism and antioxidative capacity in rats. Forty-nine male Sprague-Dawley rats weighing 105.9$\pm$1.7g were blocked into seven groups according to body weigth and raised for four weeks with diets containing 5% dried powders of perilla leaf, mugwort and chamchui, or ethanol extracts from the same amount of each dried leaf powder. Food intake was higher in the control and chamchui powder groups than the other remaining groups. Weight gain was not significantly different among all experimental groups. Food efficiency ratio was highest in the perilla leaf powder group. Plasma total lipid and cholesterol, liver total lipid and triglyceride levels were highest in the perilla leaf powder group. In contrast, dried powders of mugwort and chamchui showed hypolipidemic effects in plasma and liver. Plasma and liver TBARS levels in both dried powder and ethanol extract groups of the three plants were lower than control. There was also no significant difference between corresponding dried powder and ethanol extract groups. Catalas and GSH-Px activities in erythrocyte and liver were not different among all the experimental groups. However, SOD activities were significantly different among the esperimental groups. In erythrocyte. SOD activiteis of all dried powder and ethanol extract groups except the perilla leaf powder group were higher than control, and the chamchui power group showed the highest activity among them. In liver, all the plant groups showed higher SOD activities than control. There was no significant difference between corresponding dried powder and ethanol extract groups. In conclusion, the dried chamchui powder and liver. All the dried plant powder and ethanol extract were effective in decreasing the TBARS levels of liver and particularly plasma. Among the antiocidative enzymes, SOD activity was most responsive to the experimental diets. All the plant groups showed increases in liver SOD activities and there were more increments in dried powder groups. Since the effects of dried powder groups on lipid metabolism were better than those of extract groups, it is plausible that the high dietary fiber level in dried powders was effective. Antioxidative effects were not significantly different between corresponding dried power and extract groups, and it was thought that ethanol extracts from three plants also had similar antioxidative effects as dried powderers.

Keywords

References

  1. J Korean Soc Food Sci Nut v.25 no.2 Dietary fiber intake of Korea Lee HS
  2. Korea statistical yearbook National statistical office
  3. Lancet v.344 Free radicals, antioxidants, and human disease: Curiosity, cause, or consequence? Barry H
  4. Present knowledge in nutrition(7th Edition) Vitamin E. Sokol RJ;Ekhard EZ(ed.);Filler LJ(ed.)
  5. J Nutr v.122 Regulation of antioxidant enzymes Harris ED
  6. Nutr Rev v.56 no.11 Polyphenols: Chemistry, dietary sources, metabolism, and nutritional significane Laura B
  7. Int J Pharmacog v.34 no.5 Biological properties of plant flavonoids: An overview Middleton EJ
  8. Nutr Biochem v.7 Flavonoids-chemistry, metabolism, cardio-protective effects, and dietary sources Cook NC;Samman S
  9. Biochem Pharmacol v.40 Structure-activity relationships of polymethoxyflavones and other flavonoids as inhibitors of nonenzymic lipid peroxidation Mora A;Paya M;Rios JL;Alcaraz MJ
  10. Phytochem v.26 Hydroxyl radical scavenging activity of falvonoids Rafat HS;Josiane C;Pierre C
  11. Biochemica et Biophysica Acta v.1234 Antioxidative activity of quercetin and quercetin monoglucosides in solution and phospholipid bilayers Kana I;Tojiro T;Yoko T;Nobuji N;Junji T
  12. J Agric Food Chem v.20 Content of potentially anticarcinogenic falvonoids of 28 vegetables and 9 fruits commonly consumed in the Netherlands Hertog MGL;Hollman PCH;Katan MB
  13. J Agric Food Chem v.33 Distribution of quercetin and kaempferol in lettuce, kale, chive, garlic chive, leek, horseradish, red radish, and red cabbage tissues Bilyk A;Sapers GM
  14. Korean J Food Sci Technol v.15 no.4 Research on component of wild plant Kim YD;Yang WM
  15. Natural plant resources in Korea Kim TJ
  16. J Brewing Soc Japan v.80 A liqueur using the extract of Perilla ocimoides var. Crispa Ohaba T;Haseo T;Akita O;Yamamoto Y
  17. Korean J Nutr v.21 no.2 Antimutagenic effects and inhibitory effects in development of AZ-521 gastric tumor cell in green and yellow vegetables Park KY;Lee KI;Lee SH
  18. J Korean Soc Food Nutr v.21 Antimutagenic compounds identified from perilla leaf Lee KI;Rhee SK;Park KY;Kim JO
  19. J Agric Food Chem v.45 no.7 Profiles of potentially antiallergic flavonoids in 27 kinds of health tea and green tea infusions Toyoda M;Tanak K;Hoshino K;Akiyama H;Tanimura A;Satio Y
  20. Biosci Biotech Biochem v.60 no.8 Novel antioxidants isolated from Perilla frutescens Britton var. crisp(Thunb.) Tada M;Matsumoto R;Yamaguchi H;Chiba K
  21. Beitr Zuechtungsforsch v.2 no.1 Differential display of specifically expressed genes for anthocyanin biosynthesis in Perilla frutescens Yamazaki M;Gong Z;Satio K
  22. Zeitschrift Fuer Lebensmittel-Untersuchung and Forschung v.179 no.2 Essential oil of Artemisia abrotanum Vostrowsky O;Michaelis K;Ihm H;Knobloch K
  23. J Ethnopharmacology v.26 Pharmacological screening and antimicrobial activity of the essential oil of artemisia caerulescens subsp gallica Moran A;Montero MJ;Martin ML;San Roman L
  24. Herba Chem Pharm Bull v.23 Capillarisin, a constituent from Artemisia capillaris Komiya T;Sukui MT;Oshio H
  25. Clin Exp Pharmacol Physiol v.13 no.7 Treatment of diabetes mellitus by Artemisia herba alba extract: Preliminary study Al-Waili NS
  26. J Ethnopharmacol v.24 Hypoglycemic activity of Artemisia herba alba Twaij HA;Badr AA
  27. Chem Pharm Bull v.33 no.5 Studies on the activities of tannins and related compounds from medicinal plants and drug. Effects of extracts of leaves of Artemisia, Species and caffeic acid and chlorogenic acid on lipid metabolic injury in rats fed peroxidized oil Kimura Y;Okuda H;Okuda T;Hatano T;Agat I;Arichi S
  28. J Korean Soc Food Sci Nutr v.26 no.2 Effect of Aster scaber and Ixeris dentata on contractility and vasodilation of cardiovascular and endothelial cell in hyperlipidemic rat Lim SS;Lee JH
  29. J Korean Soc Food Sci Nutr v.26 no.2 Screening and characterization of anticholesterogenic substances from food plant extracts Park JR;Park JC;Choi SH
  30. Effects of korean native plant diet on lipid metabolism, antioxidative capacities and Cd detoxification in rats Park JA
  31. Korean Food Nutr Sci Technol v.26 no.2 Detection and separation of cholesterol synthesis inhibitors from edible plant extracts Park JR;Park JC;Choi SH
  32. Korean J Nutr v.27 no.7 Effects of edible herbs o the growth of In Vitro intestinal microorganism Han BJ;Lee SW;Shin HK
  33. J Korean Soc Food Nutr v.25 no.3 Effects of pine needle extracts on serum and liver lipid contents in rats fed high fat diet Kang YH;Park YK;Ha TY;Moon KD
  34. Anal Chem v.55 Isocratic nonaqueous reversed-phase liquid chromatography of carotenoids Nills HJCF
  35. The guide to hygienic experimental method Japan Drug Association
  36. Official methods of analysis(16th Ed) AOAC international USA
  37. J Assoc off Anal Chem v.75 Determination of total, soluble and insoluble dietary fiber in food-enzymatic gravimetric method, MES-TRIS buffer: Collaborative study Lee SC;Prosky L;DeVries JW
  38. Am J Clin Nutr v.53 A calorimetric method for determination of total serum lipid based on the sulfuric-phospho-vanillin reaction Frings CS;Dunn RT
  39. Can J Biochem Physiol v.37 A rapid method of total lipid extraction and purification Bligh EG;Dyer WJ
  40. Method in enzymology v.105 Assay for blood plasma or serum. Yagi K
  41. J Nutr v.115 Effect of dietary polyunsaturated / saturated fatty acid ratio and dietary vitamin E on lipid peroxidation in the rat Buckingham KW
  42. Analytical Biochem v.174 A spectrophotometric method for determination of catalase activity in small tissue samples Johansson LH;Hakan BLA
  43. CRC handbook of free radicals and antioxidants in biomedicine Convenient assays for superoxide dismutase Flohe L;Becker R;Brigelius R;Lengfelder E;Otting F
  44. J Lab Clin Med v.70 no.1 Studies on the quantitative and qualitative characterization of erythrocyte glutathione peroxidase Paglia DE;Valentine WN
  45. Methods in enzymology v.105 Assays of glutathione peroxidase. Flohe L;Gunzler WA
  46. J Biol Chem v.193 Protein measurement with the folin phenol reagent Lowry OH;Rosebrough NJ;Farr AL;Randall RJ
  47. J Nutr v.124 Dietary grape seed tannins affect lipoproteins, lipoprotein lipases, and tissue lipids in rats fed hypercholesterolemic diets Tebib K;Besancon P;Rouanet JM
  48. Comp Biochem Physiol v.104 The effects of tannic acid on serum and liver lipids of RAIF and RICO rats fed on high fat diet Yugari T;Tan BKH;Das NP
  49. J Nutr Sci Vitaminol v.32 Effects of green tea catechins on plasma cholesterol level in cholesterol-fed rats Muramatsu K;Fukuyu M;Hara Y
  50. Korean J Nutr v.31 no.4 Retarding effect of dietary fibers isolated from persimmon peels and jujubes on in vitro glucose, bile acid, and cadmium transport Kim MK;Lee HJ
  51. Biochem Pharmacol v.45 Antioxidant and iron-chelating activities of the flavonoids catechin, quercetin and diosmetin on iron-loaded rat hepatocyte culture Isabelle M;Gerard L;Pascale C;Odile S;Nicole P;Pierre B;Piierre C;Josiane C
  52. Biochem Pharmacol v.37 Flavonoids are scavengers of superoxide anions Jadwiga R;Ryszard JG
  53. Phytochem v.26 Hydroxy radical scavenging activity of flavonoids Husain SR;Cillard J;Cillard P
  54. Phytochem v.25 Antioxidant activity of flavonoids and reactivity with peroxy radical Torel J;Cillard J;Cillard P
  55. Biochem Pharmacol v.37 Flavonoids are scavengers of superoxide anions Jadwiga R;Ryszard J;Gryglewski
  56. Phytochem v.24 Inhibition of lipoxygenase-dependent lipid peroxidation by quercetin: Mechanism of antioxidative function Umeo T
  57. Atherosclerosis v.123 In vitro effects of a flavonoid-rich extract on LDL oxidation Marta V;Coral B;Bartolome B;Victoria BM;Mario C;Vitoria F;Emilio H
  58. J Nutr v.118 Effects of β-carotene and retinyl palmitate on corn oil-induced superoxide dismutase and catalase in rats Shirley RB;Lynnard S;James A;Elaine VK
  59. J Nutr v.121 Dietary(n-3) fatty acids affects rat heart, liver and aorta protective enzyme activities and lipid peroxidation Mary RL;Keith DT;Joyce LBR
  60. Pharmacol Res Comm v.18 Heterogenous effect of flavonoids on K+ loss and lipid peroxidation induced by oxygen-free radical in human red cells Maridonneau-Parini I;Braquet P;Garay RP
  61. Korean J Nutr v.31 no.4 Effects of hesperidin and naringin on antioxidative capacity in the rat Sohn JS;Kim MK
  62. Biochem Pharmacol v.37 Flavonoids are scavengers of superoxide anions Jadwiga R;Ryszard JG
  63. Bratislavske Lekarske Listy v.99 no.5 Relation between levels of vitamins C, E, A and β-carotene and activity of antioxidant enzymes in the blood Bratislavske LL