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dc.contributor.authorSujono, Tanti Azizah
dc.contributor.authorNurhaini, Sartika
dc.contributor.authorEM Sutrisna
dc.contributor.authorSetiyani, Sri
dc.contributor.authorSusanti, Erwin
dc.date.accessioned2015-05-28T03:02:05Z
dc.date.available2015-05-28T03:02:05Z
dc.date.issued2015-01-10
dc.identifier.citationChougale, A.D., Panaskar, S.N., Gurao, P.M., and Arvindekar, A.U., 2007, Optimazation of Alloxan Dose Is Essential to Induce Stable Diabetes for Prolonged Period, Asian journal of Biochemistry, 2 (6) : 402-408 DepKes RI, 1986, Sediaan Galenik, Direktorat Jenderal Pengawasan Obat dan Makanan, Jakarta hal 5-17 Engida, A.M., Kasim, N.S., Tsigie, Y.A., Ismadji, S., & Yi-Hsu, J., 2012, Extraction, Identification and Quantitative HPLC Analysis of Flavon-oids from Sarang Semut (Myrmecodia penden), Departement of Chemical Engineering, Can Tho Uni-versity, Viet Nam. Vol. 41. Januari 2012. p. 392 Jeli, M.M., dan Makiyah, S.N.N., 2011, Pengaruh Pemberian Infusa Tumbuhan Sarang semut (Hydnophytum formicarum) terhadap Gambaran Histopatologi Pankreas pada Tikus (Rattus norvegicus) Diabetes Terinduksi Aloksan, Majalah Kesehatan Pharmamedika, Vol 3 No 1 Johnson and Delaney, C.,1996, Exotic Animal Companion Medicine Handbook for Veterinarians, Zoological Education Network. PERKENI, 2011, Konsensus DM tipe 2, Jakarta. Prachayasittikul, S., Buraparuangsang, P., Worachartcheewan, A., Ayudhya, C.I., Ruchirawat, S., Prachayasittikul, v., 2008. Antimicrobial and Antioxidative Activities of Bioactive Constituent from Hydnophytum formicarumJack. Molecules,13, 904-921 Sandhar, K. H., Kumar, B., Prasher, S., Tiwari, P., Salhan, M., & Sharma, P., 2011, A Review Of Phytochemistry and Pharmacology of Flavonoids, Internationale Pharmaceutica Sciencia, Jan-March 2011 Vol.1 Issue 1. Subekti, I., Soewondo, P., dan Soegondo, S., 2005, Diabetes Mellitus (Penatalaksanaan Terpadu), Jakarta : FK, hal 251 Subroto, M.A., dan Saputro, H., 2006, Gempur Penyakit dengan Sarang Semut Cetakan pertama, Penebar Swadaya Trubus no 438 edisi XXXVII (Mei 2006) Suharmiati, 2003, Pengujian Bioaktivitas Antidiabetes Mellitus Tumbuhan Obat, Majalah Cermin Dunia Kedokteran, No 140 Tadera, K., Minami, Y., Takamatsu, K., & Matsuoka, T., 2005. Inhibition of α-Glucosidase and α-Amylase by Flavonoids. Department of Biochemical Science and Technology, Faculty of Agriculture, Kagoshima University, Korimoto 1-21-24, Kagoshima 890-0065, Japan. Taebe, B., Randalinggi, A. E., Manggau, A.M., & Usmar, 2012. Uji Efek Hipoglikemik Kombinasi Ekstrak Etanol Propolis dan Ekstrak Etanol Sarang Semut (Myrmecodia pendans Merr & Perry) Pada Mencit (Mus musculus). Majalah Farmasi dan Farmakologi, Vol. 16, No.3 – November 2012, hlm. 151 – 158in_ID
dc.identifier.isbn978-602-70429-9-5
dc.identifier.urihttp://hdl.handle.net/11617/6026
dc.description.abstractSarang semut (Myrmecodia tuberosa (non Jack) BI.) contain active compounds such as flavonoids, tannins, polyphenols, tocopherols, and minerals Flavonoid in Sarang semut suspected can lower blood glucose levels by mechanism of stimulating insulin-secreting pancreatic β cells. The purpose of this study was to determine the effect of ethanolic extract of sarang semut to decrease blood glucose levels in rats induced by alloxan. This research used pretest and posttest with control design method. Before treatment, blood was taken from tail vein lateralis rats to measurement of glucose levels (baseline). Later, rats were induced by alloxan 160 mg/kgBW (intraperitoneal) to make diabetic in rats. Three days later after induced by alloxan, blood glucosa was measured. Twenty male of rats with glucose levels ≥ 200 mg/dL were used to research (as pretest) and divided into 5 groups. The first group (negative control) was treated with CMC Na 0,5%. Second group was treated with glibenclamide 0,5 mg/kgBW (positive control). The third to fifth groups were treated with ethanolic extract of sarang semut with dose 400 mg/kgBW, 800 mg/kgBW, and 1600 mg/kgBW. The blood were taken on days 0, 3, 5,10,14 and 21(since pretest). The serum added to reagen kit glucose GOD FS from Diasys and readable the glucose levels used a spectrophotometer visible (λ 500 nm). Blood glucose levels were tested by ANOVA followed by LSD Post Hoc test. The result showed that ethanolic extract of Sarang semut with dose 400; 800 and 1600 mg/kgBW respectively could reduce significant (p<0,05) the blood glucose level and they had similar effect compared with positive control.in_ID
dc.language.isoenin_ID
dc.publisherUniversitas Muhammadiyah Surakartain_ID
dc.subjectMyrmecodia tuberosa (non Jack) BI.in_ID
dc.subjectBlood glucosein_ID
dc.subjectethanolic extractin_ID
dc.subjectalloxanin_ID
dc.titleEffectiveness Of Ethanolic Extract Of Sarang Semut (Myrmecodia tuberosa (non Jack) BI.) to Decrease Blood Glucose Levels In Diabetic Rats Induced by Alloxanin_ID
dc.typeArticlein_ID


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