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dc.contributor.authorChahyono, Tri Bowo
dc.contributor.authorMaulani, Afni
dc.contributor.authorRidwan, Muhammad
dc.contributor.authorSyarifah, Andiri Niza
dc.contributor.authorAdekayanti, Arizeta
dc.contributor.authorWidada, Hari
dc.date.accessioned2013-08-20T03:35:22Z
dc.date.available2013-08-20T03:35:22Z
dc.date.issued2012-06
dc.identifier.citationAmerican Diabetic Association. 2008. Dystipidemia Management in Adults with Diabetes. Diabetes Care: 27 (SuplI). S568-71. Dikutip dari: www.care.diabetesjournals.org. Anoja, Yun-Pin Zhow, Jing-Tian xie et.al. 2002. Antidiabetic effect of panax ginseng, berry extract and the identification of an effective component. Diabetes. 51:1851-58. Anonim. 2004, Standard of ASEAN Herbal Medicines, Volume II, ASEAN Countries, Jakarta, 142-150. Depkes RI. 2008. Profil Kesehatan Indonesia. Jakarta. Edem DO. 2009. Hypoglycemic Effects of Ethanolic Extracts of Alligator Pear Seed (Persea Americana Mill) in Rats, European Journal of Scientific Research, 33(4), 669-678. Gems, D., and L. Partridge. 2008. StressResponse Hormesis and Aging: “That Which Does Not Kill Us Makes Us Stronger”. Institute of Healthy Ageing and Department of Genetics, Environment and Evolution, University Collage, London WC1E 6BT, UK. Jelodar G, Mohsen M, Shahram S. 2003. Effect of walnut leaf, coriander and pomegranate on blood glucose and histopathology of pancreas of alloxan – induced diabetic rats, African J. Traditional, Complementaryand Alternative Medicines, 3, 299 – 305. Kumar SV, Kumar S., Jayantibhai HP, and Hugar S. 2010. Hypoglycemic activity of ficus glomerata in alloxan induced diabetic rats: Volume 1, Issue 2, March – April; Article 004 Lenzen S, Panten U. 1998. Alloxan: History and mechanisms of action, Deabetologica, 31, 337-342. Lenzen S. 2008. The mechanisms of alloxan and streptozotocin induced diabetes, Diabetologica 51, 216-226. Mabry TJ, Marhakham KR, Thomas MB. 1970. The Systematic Identification of Flavonoids. New York:Springer – Verlag Inc. Maulana HDJ. 2009. Promosi Kesehatan. Jakarta: EGC.5. Nurhasanah, F dan Syamsudin. 2005. Efek Antioksidan dari Ekstrak Biji Petai Cina (Leucaena leucocephala) pada Tikus Putih, Jurnal Ilmu Kefarmasian Indonesia, Vol.3.1, hal 13-15. Pari L, Latha M. 2002. Effect of Cassia auriculata Flowers on blood sugar level, serum and tissue lipids in eptozotocib diabetic rats. Singapore Med Journal. 43(12):620. Prince SM, Menon VP. 2000. Hypoglycemic and other related actions of Tinospora cardifolia roots in alloxan induced diabetic rats, J. Ethnopharmacol., 70, 9-15. Syamsudinhidayat S, S. Hutapea, JR. 1991. Inventaris tanaman obat Indonesia. Jakarta: Balai Penelitian dan Pengembangan Departemen Kesehatan RI; hal.46-347.en_US
dc.identifier.isbn978-602-18711-0-2
dc.identifier.urihttp://hdl.handle.net/11617/3414
dc.description.abstractDiabetes mellitus (DM) is a disease with high prevalence in Indonesia. According to data of Republic Indonesia Healthy Ministry Department in 2008, the prevalence of DM in Indonesia is 5.7 % and WHO also predicts in 2025 Indonesia will be the fifth biggest country for diabetics in the world. Leucaena leucocephala is used empirically as antidiabetes, anticholesterol and intestinal worms. Flavonoid compounds in the seed were thought to reduce insulin production. The aim of this research was to determine the effect of ethyl acetate fraction from Leucaena leucocephala extract to reduce blood sugar levels in alloxanmonohydrate-induced hyperglycaemic wistar rats. The extract was prepared by maceration of dried and powdered seeds of L. leucocephala using ethanol 70 % and it was then fractionated with ethyl acetate. The experiment was carried out by controlled group post-test method using 24 male wistar rats, divided into 6 groups, i.e. A = normal control, B = negative control (alloxan), C = positive control (alloxan+glibenclamide), D = (alloxan+ethyl acetate fraction of L. leucocephala extract 100mg/kgBW), E = (alloxan+ethyl acetate fraction of L. leucocephala extract 250mg/kgBW) and F = (alloxan+ethyl acetate fraction of L. leucocephala extract 500mg/kgBW). The results were analyzed with ANOVA and post hoc test statistical assay. The results of the research showed that the ethyl acetate fraction of Leucaena leucocephala seed extract had an effect to decrease the rats glucose blood level in the 100 mg/kg BW dosage and 500 mg/kg BW can decrease the glucose blood level (P<0,05) more than the negative control is (235.00 ± 54.903) and (240.28 ± 34.794) mg/dL.en_US
dc.publisherMuhammadiyah University Pressen_US
dc.subjectAlloxanen_US
dc.subjectLeucaena leucocephalaen_US
dc.subjectAntidiabeticen_US
dc.subjectin vivo assayen_US
dc.titleAntidiabetic Drug Ethyl Acetate Fraction of Leucaena leucocephala Seed Extract in Wistar Aloxan Induceden_US
dc.typeArticleen_US


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