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2014 | 17 | 1 |

Tytuł artykułu

Effect of fructooligosaccharides in Cynara scolymus and Allium cepa on carbohydrate and lipid metabolism in rats

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN

Wydawca

-

Rocznik

Tom

17

Numer

1

Opis fizyczny

http://www.ejpau.media.pl/volume17/issue1/art-02.html

Twórcy

autor
  • Biochemistry Department, National Research Center, Dokki, Cairo, Egypt
autor
  • Biochemistry Department, National Research Center, Dokki, Cairo, Egypt
autor
  • Chemistry department, Faculty of Science, Tanta University, Egypt
autor
  • Chemistry department, Faculty of Science, Tanta University, Egypt

Bibliografia

  • 1. Abdel-Sattar E., Harraz F.M., Ghareib S.A., Elberry A.A., Gabr S., Suliaman M.I., 2011. Antihyperglycaemic and hypolipidaemic effects of the methanolic extract of Caralluma tuberculata in streptozotocin-induced diabetic rats. Nat. Prod. Res., 25, 1171–1179.
  • 2. Abhayawick L., Laguerre J.C., Tauzin V., Duquenoy A., 2002. Physical properties of three onion varieties as affected by the moisture content. J. Food Eng., 55, 253–262.
  • 3. Allain C.C, Poon L.S., Chan C.S., et al., 1974. Enzymatic determination of total serum cholesterol. Clin. Chem., 20, 470–475.
  • 4. Alles M.S., Roos N.M., Bakx J.C., 1999. Consumption of fructooligosaccharides does not favorably affect blood glucose and serum lipid concentrations in patients with type 2 diabetes. Am. J. Clin. Nutr., 69, 64–69.
  • 5. AOAC, 1980. Official Methods of Analysis. 13th ed. Association of Official Analytical Chemist, Washington, DC, USA, 156–132.
  • 6. AOAC, 1990. Official Methods of Analysis. 15 ed. Arlkigton: AOAC Int., 58.
  • 7. Bennami-Kabochi N., Fdhil H., Cherrah Y., Bouayadi F.E.L., Kohel L., Marquie G., 2000. Therapeutic effect Olea europea var. Oleaster leaves on lipid and carbohydrate metabolism in obese and prediabetic sand rats. Ann. Pharm. Fr., 58, 4271–4277.
  • 8. Beylot M., 2005. Effects of inulin-type fructans on lipid metabolism in man and in animal models. Br. J. Nutr., 93, 163–168.
  • 9. Bornet F.R., Brouns F., Tashiro Y., Duvillier V., 2002. Nutritional aspects of short-chain fructooligosaccharides: natural occurrence, chemistry, physiology and health implications. Dig. Liver Dis., 34, 111–120.
  • 10. Busserolles J., Gueux E., Rock E., Demigne C., Mazur A., Rayssiguier Y., 2003. Oligofructose protects against the hypertriglyceridemic and prooxidative effects of a high fructose diet in rats. J. Nutr., 133, 1903–1908.
  • 11. Campos K.E., Diniz Y.S., Cataneo A.C., Faine L.A., Alves M.J., Novelli E.L., 2003. Hypoglycaemic and antioxidant effects of onion, Allium cepa: dietary onion addition, antioxidant activity and hypoglycaemic effects on diabetic rats. Int. J. Food Sci. Nutr., 54, 241–246.
  • 12. Cani P.D., Daubioul C.A., Reusens B., Remacle C., Catillon G., Delzenne N.M., 2005. Involvement of endogenous glucagon-like peptide-1(7-36) amide on glycaemia-lowering effect of oligofructose in streptozotocin-treated rats. J. Endocrinol., 185, 457–465.
  • 13. Carroll N.V., Longley R.W., Roe J.H., 1956. The determination of glycogen in liver and muscle by use of anthrone reagent. J. Biol. Chem., 220, 583–593.
  • 14. Cho S.S., Finocchiaro E.T., 2010. Handbook of prebiotics and probiotics ingredients : health benefits and food applications, CRC Press [chap. 2].
  • 15. Chope G.A., Terry L.A., White P.J., 2006. Effect of controlled atmosphere storage on abscisic acid concentration and other biochemical attributes of onion bulbs. Posth. Biol. Techn., 39, 233–242.
  • 16. Chung Y.C., Hsu C.K., Ko C.Y., Chan Y.C., 2007. Dietary intake of xylooligosaccharides improve the intestinal microbiota, fecal moisture and pH value in the elderly. Nutr. Res., 27, 756–761.
  • 17. Darbyshire B., Henry R.J., 1981. Differences in fructan content and synthesis in some Allium species. New Phytologist, 87, 249–256.
  • 18. Daubioul C.A., Horsmans Y., Lambert P., Danse E., Delzenne N.M., 2005. Effects of oligofructose on glucose and lipid metabolism in patients with nonalcoholic steatohepatitis: results of a pilot study. Eur. J. Clin. Nutr., 59, 723–726.
  • 19. Delzenne N.M., Kok N., Fiordaliso M.F., Deboyser D.M., Goethals F.M., Roberfroid M.B., 1993. Dietary fructooligosaccharides modify lipid metabolism in rats. Am. J. Clin. Nutr., 57, 820S.
  • 20. Downes K., Terry L.A., 2010. A new acetonitrile-free mobile phase method for LC-ELSD quantification of fructooligosaccharides in onion (Allium cepa L.). Talanta, 82, 118–124.
  • 21. Dubois M., Gilles K.A., Hamilton J.K., Rebers P.A., Smith F., 1956. Colorimetric method for determination of sugars and related substances. Anal. Chem., 28, 350–356.
  • 22. El-Demerdash F.M., Yousef M.I., El-Naga N.I., 2005. Biochemical study on the hypoglycemic effects of onion and garlic in alloxan-induced diabetic rats. Food Chem.. Toxicol., 43, 57–63.
  • 23. Ernst C.A., Rhees B.K., Miao J., Atchley W.R., 1998. Correlated response in partitioned maternal effects to selection for early postnatal growth rate in mice Proceedings of the 6th World Congress on Genetics Applied to Livestock Production. 26, 513–516.
  • 24. Fassati P., Prencipe L., 1982. Determination of triglycerides on serum. Clin. Chem., 28, 2077.
  • 25. Fernandez M.L., West K.L., 2005. Mechanisms by which dietary fatty acids modulate plasma lipids. J. Nutr., 135, 2075–2078.
  • 26. Figlewicz D.P., Ioannou G., Bennett J., Kittleson S., Savard C., Roth C.L., 2009. Effect of moderate intake of sweeteners on metabolic health in the rat. Physiol. Behav., 98, 618–624.
  • 27. Fiordaliso M., Kok N., Desager J., Goethals F., Deboyser D., Robetioid M., Delzenne N., 1995. Dietary oligotluctose lowers triglycerides, phospholipids and cholesterol in serum and very low density lipoproteins of rats. Lipids, 30, 163–167.
  • 28. Folch J., Lees M., Stanley G.H.S., 1956. A simple method for the isolation and purification of total lipides from animal tissues. J. Biol. Chem., 226, 497–509.
  • 29. Giacco R., Clemente G., Luongo D., Lasorella G., Fiume I., Brouns F., 2004. Effects of short chain fructo-oligosaccharides on glucose and lipid metabolism in mild hypercholesterolaemic individuals. Clin. Nutr., 23, 331–340.
  • 30. Glasser G., Graefe E.U., Struck F., Veit M., Gebhardt R., 2002. Comparision of antioxidative capacities and inhibitory effects on cholesterol biosynthesis of quercetin and potential metabolites. Phytomedicine, 9, 33–40.
  • 31. Heidarian E., Jafari-Dehkordi E., Seidkhan-Nahal A., 2011. Effect of garlic on liver phosphatidate phosphohydrolase and plasma lipid levels in hyperlipidemic rats. Food Chem. Toxicol., 49, 1110–1114.
  • 32. Hess J.R., Birkett A.M., Thomas W., Slavin J.L., 2011. Effects of short-chain fructooligosaccharides on satiety responses in healthy men and women. Appetite, 56, 128–134.
  • 33. Hidaka H., Eida T., Takizawa T., Tokunage T., Tashiro Y., 1986. Effects of fructooligosaccharides on intestinal flora and human health. Bifidobact. Microflora, 5, 37–50.
  • 34. Hwang D.F., Lai Y.S., Chiang M.T. 1996. Toxic effects of grass carp, snake and chicken bile juices in rats. Toxicol. Let., 85, 85–92.
  • 35. Instate soft ware. www.graphpad.com.
  • 36. Istvan S., Emese K.p., Beata K., Andrea L., 2011. Functional food Product development, marketing and consumer acceptance. Appetite, 51, 456–467.
  • 37. Jaime L., Molla E., Fernandez A., Martın-Cabrejas M.A., Lopez-Andreu F.J., Esteban R.M., 2002. Structural carbohydrate differences and potential source of dietary fiber of onion (Allium cepa L.) tissues. J. Agric. Food Chem.., 50, 122–128.
  • 38. Johnson I.T., Gee, J.M., 1986. Gastrointestinal adaptation in response  to soluble non-available polysaccharides in the rat. Br. J. Nutr., 55, 497–505.
  • 39. Jung J.Y., Lim Y., Moon M.S., Kim J.Y., Kwon O., 2011. Onion peel extracts ameliorate hyperglycemia and insulin resistance in high fat diet/streptozotocin-induced diabetic rats. Nutr. Metab., 8, 18.
  • 40. Juskiewicz J., Klewicki R., Zdunczyk Z., 2006. Consumption of galactosyl derivatives of polyols beneficially affects cecal fermentation and serum parameters in rats. Nutr. Res., 26, 531–536.
  • 41. Kaur N., Gupta A.K., 2002. Applications of inulin and oligofructose in health and nutrition. J. Biosci., 27, 703–714.
  • 42. Ketiku O., 1976. The chemical composition of Nigerian onions (Allium cepa, Linn). Food Chem., 1, 41–47.
  • 43. Kim M., Shin H.K., 1998. Thewater-soluble extract of chicory influences serum and liver lipid concentrations, cecal short-chain fatty acid concentrations and fecal lipid excretion in rats. J. Nutr., 128, 1732–1736.
  • 44. Kok N., Roberfroid M., Delzenne N., 1996a. Dietary oligofructose modifies the impact of fructose on hepatic triacylglycerol metabolism. Metabolism, 45, 1547–1550.
  • 45. Kok N., Roberfroid M., Robert A., Delzenne N., 1996b. Involvement of lipogenesis in the lower VLDL secretion induced by oligofructose in rats. Br. J. Nutr., 76, 881–890.
  • 46. Kostogrys B.R., Pisulewski M.P., 2010. Effect of conjugated linoleic acid (CLA) on lipid profile and liver histology in laboratory rats fed high fructose diet. Environ. Toxicol. Pharm., 30, 245–250.
  • 47. Kritchevsky D., Tepper S.A., Satchithanondem S., Cassidy M.M., Vahouny G.V., 1988. Dietary fiber supplements. Effect on serum and liver lipids and on liver phospholipids composition in rats. Lipids, 23, 318–321.
  • 48. Levrat M., Favier M., Moundras C., Remesy C., Demigne C., Morand C., 1994. Role of dietary propionic acid and bile acid excretion in the hypocholesterolemic effects of oligosaccharides in rats. J. Nutr., 124, 53l–538.
  • 49. Lowry O.H., Rosembrough N.J., Farr A.L., Randall R.J., 1951. Protein measurement with the Folin phenol reagent. J. Biol. Chem., 193, 267–275.
  • 50. Luo J., Van Yperselle M., Rizkalla S.W., Rossi F., Bornet F.R., Slama G., 2000. Chronic consumption of short-chain fructooligosaccharides does not affect basal hepatic glucose production or insulin resistance in type 2 diabetics. J. Nutr., 13, 1572–1577.
  • 51. Meier F.M., 2009. Basics in clinical nutrition: Fiber and short chain fatty acids. Eur. e-J. Clin. Nutr. Met. 4, e69–e71.
  • 52. Moharib S.A., 2006. Hypolipidemic effect of dietary fiber in rats. Adv. Food Sci., 28, 46–53.
  • 53. Moreau N.M., Martin L.J., Toquet C.S., Laboisse C.L., Nguyen G., Siliart B.S., et al., 2003. Restoration of the integrity of rat caecocolonic mucosa by resistant starch, but not by fructo-oligosaccharides, in dextran sulfate sodium-induced experimental colitis. Br. J. Nutr., 90, 75–85.
  • 54. Morris C., Morris G.A., 2012. The effect of inulin and fructo-oligosaccharide supplementation on the textural, rheological and sensory properties of bread and their role in weight management. A review Food Chem., 133, 237–248.
  • 55. Movahedian A., Zolfaghari B., Sajjadi S.E., Moknatjou R., 2010. Antihyperlipidemic effect of peucedanum pastinacifolium extract in streptozotocin-induced diabetic rats. Clinics, 65, 629–633.
  • 56. Nesto R.W., 2005. Beyond low-density lipoprotein: addressing the atherogenic lipid triad in type 2 diabetes mellitus and the metabolic syndrome. Am. J. Cardiovasc. Drugs., 5, 379–387.
  • 57. Ohta A., Ohtsuki M., Baba S., Hirayama M., Adachi T., 1998. Comparison of the nutritional effects of Fructo-oligosaccharides of different sugar chain length in rats. Nutr. Res., 18, 109–120.
  • 58. Pantis D.J., Diamantoglou S., Margaris S.N., 1987. Altitudinal variation in total lipid and soluble sugar content in herbaceous plants on mount Olympus (Greece). Vegetatio, 72, 21–25.
  • 59. Pushparaj P.N., Low H.K., Manikandan J., Tan B.K., Tan C.H., 2007. Anti-diabetic effects of Cichorium intybus in streptozotocin-induced diabetic rats. J Ethnopharm. 111, 430–434.
  • 60. Reeves P.G., Nielsen F.H., Fahey G.C., 1993. AIN-93 purified diets for laboratory rodents: final report of the American Institute of Nutrition ad hoc writing committee on the reformulation of the AIN-76A rodent diet. J. Nutr., 123, 1939–1951.
  • 61. Richmond W., 1973. Preparation and properties of a cholesterol oxidase from Nocardia sp. and its application to the enzymatic assay of total cholesterol in serum. Clin. Chem., 19, 1350–1356.
  • 62. Roberfroid M.B., 2007. Prebiotics: The concept revisited. J. Nutr., 137, 830–837.
  • 63. Rodrıgues A.S., Fogliano V., Graziani G., Mendes S., Vale A.P., Goncalves C., 2003. Nutritional value of onion regional varieties in Northwest Portugal. Ele. J. Environ. Agric. Food Chem., 2, 519–524.
  • 64. Rodríguez-Cabezas M.E., Camuesco D., Arribas B., Garrido-Mesa N., Comalada M., Bailón E., Cueto-Sola M., Utrilla P., Guerra-Hernández E., Pérez-Roca C., Gálvez J., Zarzuelo A., 2010. The combination of fructooligosaccharides and resistant starch shows prebiotic additive effects in rats. Clin. Nutr., 29, 832–839.
  • 65. Rodriguez-Galdn B., Tascon-Rodriguez C., Rodriguez-Rodriguez E.M., Diaz-Romero C.J., 2009. Fructans and major compounds in onion cultivars (Allium cepa). J. Food Comp. Anal., 22, 25–32.
  • 66. Sabater-Molina A., Larque M., Torrella F., Zamora S., 2009. Dietary fructooligosaccharides and potencial benefits on health. J. Physiol. Biochem., 65, 315–328.
  • 67. Scheuer P., Chalk B. 1986. "Staning methods"(eds): In "clinical tests of histopathology" Scheuer P.J., Chalk B.T., Wolf Medical Publication Ltd. (London), 84–85.
  • 68. Shah N.P. 2004. Probiotics and prebiotocs. Agro. Food Ind. HiTech., 15, 13–16.
  • 69. Sheu W.H., Lee I.T., Chen W., Chan Y.C., 2008. Effects of xylooligosaccharides in type 2 diabetes mellitus. J. Nutr. Sci. Vitam., 54, 396–401.
  • 70. Shiomi N., Onodera S., Sakai H., 1997. Fructo-oligosaccharide content and fructosyl-transferase activity during growth of onion bulbs. New Phytol., 136, 105–113.
  • 71. Smith J., Charter E., 2010. Probiotics and prebiotics, the application of prebiotics. Functional Food Product Development, Blackwell Publishing Ltd, [chap. 8].
  • 72. Speroni E., Cervellati R., Govoni P., Guizzardi S., Renzulli C., Guerra M.C., 2003. Efficacy of different Cynara scolymus preparations on liver complaints. J. Ethnopharm., 86, 203–211.
  • 73. Tang Z.R., Yin Y.L., Nyachoti C.M., Huang R.L., Li T.J., Yang C., Yang X.J., Gong J., Peng J., Qi D.S., Xing J.J., Sun Z.H., Fan M.Z., 2005. Effect of dietary supplementation of chitosan and galacto-mannan-oligosaccharide on serum parameters and the insulin-like growth factor-I mRNA expression in early-weaned piglets. Domest. Anim. Endocrinol., 28, 430–441.
  • 74. Thompson L., Morris J., Peffley E., Green C., Pare P., Tissue D. et al., 2005. Flavonol content and composition of spring onions grown hydroponically or in potting soil. J. Food. Comp. Anal., 18, 635–645.
  • 75. Tomson M., Alnaqeeb M.A., Bordia T., Al-Hassan J.M., Afzal M., Ali M., 1998. Effects of aqueous extract of onion on the liver and lung of rats. J. Ethnopharm., 61, 91–99.
  • 76. Trinder P. 1969. Determination of blood glucose using an oxidase-peroxidase systemwith a non-carcinogenic chromogen. J. Clin. Pathol., 22, 158–161.
  • 77. Van Loo J., Coussement P., De Leenheer L., Hoebregs H., Smits G., 1995. On the presence of inulin and oligofructose as natural ingredients in the Western diet. Cri. Rev. Food Sci. Nutr., 35, 525–552.
  • 78. Vidyavati H.G., Manjunatha H., Hemavathy J., Srinivasan K., 2011. Hypolipidemic and antioxidant efficacy of dehydrated onion in experimental rats. J. Food Sci. Technol., 47, 55–60.
  • 79. Wall A.D., Wall M.M., Corgan J.N. 1999. Dehydrator onion bulb weight and watersoluble carbohydrates before and after maturity. J. Am. Soc. Hort. Sci., 124, 581–586.
  • 80. Williams C.M., Jackson K.G. 2002. Inulin and oligofructose: Effects on lipid metabolism from human studies. Br. J. Nutr., 87, 261–264.
  • 81. Wu T., Yang Y., Zhang L., Han J., 2010. Systematic review of the effects of inulin-type fructans on blood lipid profiles: a meta-analysis. Wei Sheng Yan Jiu, 39, 172–176.
  • 82. Yildiz S., Kincal S.N., 2007. HPLC analysis for determination of characteristics of fructooligosaccharide syrups extracted from Jerusalem artichoke. Sud Edeb Faku Der (E-DERGI), 2, 92–103.
  • 83. Zhang F., Ye C., Li G., Ding W., Zhou W., Zhu H., Chen G., Luo T., Guang M., Liu Y., Zhang D., Zheng S., Yang J., Gu Y., Xie X., Luo M., 2003. The rat model of type 2 diabetic mellitus and its glycometabolism characters. Exp. Anim., 52, 401–407.
  • 84. Zhang W., Zheng L., Zhang Z., Hai C., 2012. Protective effect of a water-soluble polysaccharide from Salvia miltiorrhiza Bunge on insulin resistance in rats. Carb. Poly., 89, 90–98.
  • 85. Zollner N., Kirsch K., 1962. Microdetermination of lipids by the sulphophosphovanillin reaction. Z. Ges. Exp. Med., 135, 545–561.

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