eprintid: 21173 rev_number: 8 eprint_status: archive userid: 3858 dir: disk0/00/02/11/73 datestamp: 2023-02-14 08:23:37 lastmod: 2023-02-14 08:23:37 status_changed: 2023-02-14 08:23:37 type: thesis metadata_visibility: show creators_name: Izzati, Hani Nur creators_name: Rahmi, Hanifah creators_name: Dwita, Lusi Putri title: UJI AKTIVITAS ANTIOKSIDAN PADA HATI TIKUS DIABETES MELITUS TIPE 2 DENGAN PEMBERIAN XILOOLIGOSAKARIDA BERDASARKAN KADAR MALONDIALDEHID DAN AKTIVITAS KATALASE ispublished: pub subjects: R subjects: RS divisions: 48201 abstract: Diabetes melitus tipe 2 terjadi karena adanya resistensi insulin. Suplemen diet dengan xilooligosakarida dapat menurunkan gula darah pada penderita diabetes melitus. Penelitian ini bertujuan untuk mengetahui aktivitas antioksidan xilooligosakarida berdasarkan aktivitas katalase dan kadar MDA pada hati tikus diabetes melitus tipe 2. Penelitian menggunakan 20 ekor tikus putih jantan yang dibagi menjadi 5 kelompok, yaitu kelompok normal diberi pakan standar, kelompok negatif diinduksi streptozotosin dan pakan hiperlipid, 3 kelompok perlakuan diberi xilooligosakarida bonggol jagung dosis 200 mg/200gBB, 300 mg/200gBB, 400 mg/200gBB selama 67 hari. Perlakuan dilakukan dengan pembedahan organ hati pada hari ke-67. Pengukuran aktivitas katalase dan kadar MDA menggunakan spektrofotometer UV-Vis. Data analisis dengan ANOVA satu arah dan dilanjutkan dengan uji Tukey. Hasil penelitian menunjukkan kadar MDA dan aktivitas katalase pada ketiga dosis xilooligosakarida menunjukkan adanya pengaruh berbeda bermakna dengan kelompok negatif, sedangkan untuk dosis yang paling efektif dalam peningkatan aktivitas katalase dan mencegah peningkatan kadar MDA yaitu pada kelompok dosis 3 (400 mg/200 gBB). Penelitian ini menunjukkan bahwa xilooligosakarida mampu sebagai antioksidan bagi penderita diabetes melitus tipe 2. Kata Kunci: Xilooligosakarida, Malondialdehyde, Aktivitas Katalase, Diabetes Melitus. date: 2020 date_type: completed full_text_status: public institution: Universitas Muhammadiyah Prof. DR. HAMKA department: Fakultas Farmasi dan Sains thesis_type: bachelor thesis_name: bphil referencetext: Alex EA, Tanko Y, Muhammed K, Dubo AB, Yahuza FM, Ejiogu DC, Aisha ND, Olubiyi M, Ikeogu PO, Ayegbusi OO. 2019. Modulatory Role Of Lauric Acid Supplement On Lipid Peroxidation And Some Antioxidant Enzymes Activity In High Fat Diet , Streptozotocin-Induced Type 2 Diabetic Male Wistar Rats. 7(1):23–29. http://www.jaaps.aapsnet.org Asry RNP. 2019. Aplikasi Kromatografi Filtrasi Gel Sebagai Metode Pemisahan Enzim Amilase Dari Saluran Pencernaan Udang Vannamei (Litopenaeus Vannamei). Skripsi. UHAMKA. Jakarta. Boonchuay P, Techapun C, Seesuriyachan P, Chaiyaso T. 2014. Production Of Xylooligosaccharides From Corncob Using A Crude Thermostable EndoXylanase From Streptomyces Thermovulgaris TISTR1948 And Prebiotic Properties. Food Science and Biotechnology. 23(5):1515–1523. https://doi.org/10.1007/s10068-014-0207-0 Bintang M. 2010. Biokimia Teknik Penelitian. Penerbit: Erlangga. Bogor. Hlm. 10 Binarjo A, Kharis A. 2013. Performance Liquid Chromatography ( HPLC ) Serta Aplikasinya Pada Transpor Transdermal In Vitro The Study Of Losarton Cartent By Spectrofotometri And High Performance Liquid Chromatography ( HPLC ) Methods And Its In Vitro Transdermal Transport. Jurnal Ilmiah Kefarmasian. 3(1):31–48. Catala A. 2011. Lipid Peroxidation. (INIFTA-CCT La Plata-CONOCET), Faculted de Ciencias Exactas. Front Biosci. 3:52-60 Chen X, Tan F, Yi R, Mu J, Zhao X, Yang Z. 2018. Effects Of Lactobacillus On Mice With Diabetes Induced By High-Fat Diet With Streptozotocin (STZ). Applied Sciences (Switzerland). 8(8):1–14. https://doi.org/10.3390/app8081249 Colantonio AG, Werner SL, Brown M. 2019. The Effects of Prebiotics and Substances with Prebiotic Properties on Metabolic and Inflammatory Biomarkers in Individuals with Type 2 Diabetes Mellitus: A Systematic Review. Journal of the Academy of Nutrition and Dietetics. 19(1):1-23. https://doi.org/10.1016/j.jand.2018.12.013 Day U. 2002. Analisis Kimia Kuantitatif Edisi IV. Penerjemah: Erlangga. Jakarta. Hlm. 396 Dipiro JT, Barbara GW, Terry LS, Cecily VD. 2015. Pharmacotherapy Handbook Ninth Edition. The McGraw-Hill Companies. Hlm. 161 Dwita LP & Rahmi H. 2019. Efek Xilooligosakarida (XOS) dalam Mencegah Diabetes Mellitus Tipe 2. Pharmaceutical Sciences and Research. 6(3):179– 182. https://doi.org/10.7454/psr.v6i3.4467 Grotto D, Santa ML, Valentini J, Paniz C, Schmitt G, Garcia SC, Pomblum VJ, Rocha JBT, Farina M. 2009. Importance Of The Lipid Peroxidation Biomarkers And Methodological Aspects For Malondialdehyde Quantification. Quimica Nova. 32(1):169–174. https://doi.org/10.1590/S0100-40422009000100032 Hadwan MH. 2018. Simple Spectrophotometric Assay For Measuring Catalase Activity In Biological Tissues. Biomedcentral Biochemistry. 19(1):1–8. https://doi.org/10.1186/s12858-018-0097-5 In S, suprayogi A. 2013. Respon Stres Oksidatif dan Pemberian Isoflavon terhadap Aktivitas Enzim Superoksida Dismutase dan Peroksidasi Lipid pada Hati Tikus. Jurnal Ilmu Ternal dan Veteriner. 18(2):146–152. International Diabetes Federation (IDF). 2017. IDF Diabetes Atlas. Eight Edition. Guyton dan Hall. 2006. Text Book of Medical Phisiology. EGC. Jakarta. Jawaid T, Argal S, Kamal M. 2015. Antidiabetic And Antihyperlipidemic Effcets Of The Ethanolic Extract Of Alocasia Indica Rhizomes In High Fat Diet/Streptozotocin And Streptozotocin/Nicotinamide-Induced Type 2 Diabetic Rats. Asian Journal of Pharmaceutical and Clinical Research. 8(6): 58–62. Jusman SW. 2013. Biokimia Experimen Laboratorium. Widya Medika. Jakarta. Hlm. 153. Kaur J. 2019. Retracted: A Comprehensive Review on Metabolic Syndrome. (2019). Cardiology Research and Practice. 14(5):1-10. https://doi.org/10.1155/2019/4301528 Khan RA, Khan MR, Sahreen S. 2012. Ccl4-Induced Hepatotoxicity: Protective Effect Of Rutin On P53, CYP2E1 And The Antioxidative Status In Rat. Biomedcentral Complementary and Alternative Medicine. 12:2–7. https://doi.org/10.1186/1472-6882-12-178 Kristina H, Sartono N, Rusdi R. 2015. Kadar Peroksida Lipid Dan Aktivitas Superoksida Dismutase Serum Darah Pada Penderita Diabetes Melitus Tipe 2. Bioma. 11(1):1-11. https://doi.org/10.21009/bioma11(1).1 Kumar D, Jhariya AN. 2013. Nutritional, Medicinal and Economical importance of Corn: A Mini Review. Research Journal of Pharmaceutical Sciences. 3(7):7–8. Laitinen K, Poussa T, Isolauri E. 2009. Probiotics And Dietary Counselling Contribute To Glucose Regulation During And After Pregnancy: A Randomised Controlled Trial. British Journal of Nutrition. 101(11):1679– 1687. https://doi.org/10.1017/S0007114508111461 Lenzen S. 2008. The Mechanisms Of Alloxan- And Streptozotocin-Induced Diabetes. Diabetologia. 51(2):216–226. https://doi.org/10.1007/s00125-007- 0886-7 Lestari AP, Tri M, Rini P. 2014. Pengaruh Paparan Hipoksia terhadap Aktivitas Katalase dan Kadar Malondialdehid (MDA) pada Jaringan Hati Tikus. BIOMA. 10(2). Majd NE, Tabandeh MR, Shahriari A, Soleimani Z. 2018. Okra (Abelmoscus esculentus) Improved Islets Structure, and Down-Regulated PPARs Gene Expression in Pancreas of High-Fat Diet and Streptozotocin-Induced Diabetic Rats. Cell Journal. 20(1):31–40. https://doi.org/10.22074/cellj.2018.4819 Nurhidayah S. 2019. Pengaruh Pemberian Xilooligosakarida Bonggol Jagung (Zea Mays L) Terhadap Kadar Trigliserida Tikus Putih Diinduksi Streptozotosin Dan Pakan Hiperlipid. Skripsi. UHAMKA. Jakarta. Noeman SA, Hamooda HE, Baalash AA. 2011. Biochemical Study Of Oxidative Stress Markers In The Liver, Kidney And Heart Of High Fat Diet Induced Obesity In Rats. Diabetology and Metabolic Syndrome. 3(1):1–8. https://doi.org/10.1186/1758-5996-3-17 Onyeka CA, Aligwekwe AU, Nwakanma AA, Bakare A, Ofoego UC. 2012. Effects of Ethanolic Root Bark Extract of Chrysophyllum albidum on Serum Superoxide Dismutase, Catalase and Malondialdehyde in Rat. International Journa of Pharmaceutical Sciences and Research. 3(3):347–351. ISSN 0975-9492 Priyanto. 2008. Farmakoterapi & Terminologis Medis. Jakarta: Leskonfi. Hlm. 195 - 197. Priyanto S. 2009. Toksikologi, Mekanisme, Terapi Antidotum dan Penilaian Risiko. Editor Hadi Sunaryo, Leskonfi. Depok. Hlm. 87, 98 – 101. Rouf ST, Prasad K, Kumar P. 2016. Maize-A Potential Source Of Human Nutrition And Health: A Review. Cogent Food & Agriculture. 2(1):1–9. https://doi.org/10.1080/23311932.2016.1166995 Saputra NT, Suartha IN, Dharmayudha . 2018. Agen Diabetagonik Streptozotocin untuk Membuat Tikus Putih Jantan Diabetes Mellitus. Buletin Veteriner Udayana. 10(2):116-121. https://doi.org/10.24843/bulvet.2018.v10.i02.p02 Saxena M, Singh D, Gupta A. 2011. Phytochemistry of Medicinal Plants. Journal of Pharmacognosy And Phytochemistry. 1(6):168-182. https://doi.org/10.1007/978-1-4614-3912-7_4 Sayuti K, Rina Y. 2015. Antioksidan Alami dan Sintetik. Andalas University Press. Padang. Hlm. 10-13. Sen CK, Khanna S, Roy S. 2006. Tocotrienols: Vitamin E Beyond Tocopherols. Life Sciences. 78(18):2088–2098. https://doi.org/10.1016/j.lfs.2005.12.001 Sheu WHH, Lee ITe, Chen W, Chan YC. 2008. Effects Of Xylooligosaccharides In Type 2 Diabetes Mellitus. Journal of Nutritional Science and Vitaminology. 54(5):396–401. https://doi.org/10.3177/jnsv.54.396 Singh RD, Banerjee J, Arora A. 2015. Prebiotic Potential Of Oligosaccharides: A Focus On Xylan Derived Oligosaccharides. Bioactive Carbohydrates and Dietary Fibre. 5(1):19–30. https://doi.org/10.1016/j.bcdf.2014.11.003 Slavin J. 2013. Fiber And Prebiotics: Mechanisms And Health Benefits. Nutrients. 5(4):1417–1435. https://doi.org/10.3390/nu5041417 Suarni, S Widowati. 2007. Struktur, Komposisi, Dan Nutrisi Jagung. Bagian Buku Jagung. Puslitbang Tanaman Pangan. Jakarta. Hlm. 410-426. Sunaryo H, Rahmania RA, Dwitiyanti, Siska. 2015. Aktivitas Antioksidan Kombinasi Ekstrak Jahe Gajah (Zingiber officinale Rosc.) dan Zink Berdasarkan Pengukuran MDA, SOD dan Katalase pada Mencit Hiperkolesterolemia dan Hiperglikemia dengan Penginduksi Streptozotosin Antioxidant Activity of Combination be. Jurnal Ilmu Kefarmasian Indonesia. 13(2):187–193. ISSN 1693-1831 Slavin J. 2013. Fiber And Prebiotics: Mechanisms And Health. Benefits. Nutrients. 5:1417-35. https://doi.org/10.3390/n4541417 Talwalkar A, Kailasapathy K. 2003. Metabolic And Biochemical Responses Of Probiotic Bacteria To Oxygen. Journal of Dairy Science. 86(8):2537–2546. https://doi.org/10.3168/jds.S0022-0302(03)73848-X Triplitt C, Reasner C, Isley W. 2008. Pharmacotherapy : A Pathophysiologic Approach, 7th edition. McGraw-Hill, New York. Hlm. 1205 - 1241. Widowati W. 2008. Potensi Antioksidan sebagai Antidiabetes. Jurnal Kimia Mulawarman. 7(2):1–11. Wang J, Cao Y, Wang C, Sun B. 2011. Wheat Bran Xylooligosaccharides Improve Blood Lipid Metabolism And Antioxidant Status In Rats Fed A High-Fat Diet. Carbohydrate Polymers. 86(3):1192–1197. https://doi.org/10.1016/j.carbpol.2011.06.014 Werdhasari, A. 2014. Peran Antioksidan Bagi Kesehatan. Jurnal Biomedik Medisiana Indonesia. 3(2):59–68. Wells AL, Saulnier DMA, Gibson GR. 2008. Gastrointestnalmicroflora and interactions with gutmucosa. In: Gibson GR, Roberfroid MB, editor. Handbook of Prebiotics. New York (US): CRC Press. Wibisono WG. 2011. Tanaman Obat Keluarga Berkhasiat Edisi Pertama. Vivo Publisher. Hlm. 62-63. Widiyaningsih EN. 2011. Peran Probiotik Untuk Kesehatan. Jurnal Kesehatan. 4(1):14–20. Winarsi H. 2011. Antioksidan Alami dan Radikal Bebas Potensi dan Aplikasinya dalam Kesehatan. Kasinus. Yogyakarta. Hlm. 11-23. Yu X, Yin J, Li L, Luan C, Zhang J, Zhao C, Li S. 2015. Prebiotic Potential Of Xylooligosaccharides Derived From Corn Cobs And Their In Vitro Antioxidant Activity When Combined With Lactobacillus. Journal of Microbiology and Biotechnology. 25(7):1084–1092. https://doi.org/10.4014/jmb.1501.01022 Yustika AR, Aulannia’am, Prasetyawan S. 2013. Kadar Malondialdehid (MDA) Dan Gambaran Histologi Pada Ginjal Tikus Putih. Kimia Student Journal. 1(2):222–228. Zhang Y, Du R, Wang L, Zhang H. 2010. The Antioxidative Effects Of Probiotic Lactobacillus Casei Zhang On The Hyperlipidemic Rats. European Food Research and Technology. 231(1):151–158. https://doi.org/10.1007/s00217- 010-1255-1 Zuraida, YE, Anas E. 2015. Pengaruh Pemberian Ekstrak Rosella (Hibiscus Sabdariffa Linn ) Terhadap Kadar Malondialdehid Dan Aktivitas Katalase Tikus Yang Terpapar Karbon Tetraklorida. Jurnal Kesehatan Andalas. 4(3):795–802. citation: Izzati, Hani Nur dan Rahmi, Hanifah dan Dwita, Lusi Putri (2020) UJI AKTIVITAS ANTIOKSIDAN PADA HATI TIKUS DIABETES MELITUS TIPE 2 DENGAN PEMBERIAN XILOOLIGOSAKARIDA BERDASARKAN KADAR MALONDIALDEHID DAN AKTIVITAS KATALASE. Bachelor thesis, Universitas Muhammadiyah Prof. DR. HAMKA. document_url: http://repository.uhamka.ac.id/id/eprint/21173/1/FS03-210109.pdf