The Effect of Black Cumin Seed (Nigella sativa l.) Extract to Alloxan Induces Pancreatic Tissue Catalase Enzyme Activity of Male Wistar Rats (Rattus norvegicus)
Abstract
Keywords
Full Text:
PDFReferences
Badary, OA and Gamal El-Din, 2003. Inhibitory Effect of Thymoquinone Againts 20-Methylchlolanthrene-induced Fibrosarcoma Tumorrigenesis. Cancer Detection and Prevention Journal, 25:362-368.
Bambang Setiawan dan Eko Suhartono, 2005. Stres Oksidatif dan Peran Antioksidan pada Diabetes Melitus. Majalah Kedokteran Indonesia, Vol 55, No 2, hal 87-90.
Burist M dan F Bucar, 2000. Antioxidant Activity of Nigella sativa Essential Oil. Abstract of Phytotherapy, 14(5): 323-328.
Kemkes, 2014. Waspada Diabetes. http://www.kemkes.go.id/resources/download/pusdatin/infodatin/infodatin-diabetes
Meral IN, Donmez B, Baydas F, Belge M, Kanter, 2004. Effect of Nigella sativa L. on heart rate and some haematological value of alloxan-induced diabetic rabbits. Scand. J. Lah. Anim. Sci. 1 (31). http://biomedicum.ut.ee/sjlas/31_1_49-53.pdf
Nagi MN and Almakki HA, 2009. Thymoquinone supplementation induced quinone reductase and glutathione transferase in mice liver: possible role in protection against chemical carcinogenesis and toxicity. Phytother. Res., 23: 1295-1298.
Nugroho A E, 2006. Hewan Percobaan Diabetes Mellitus: Patologi dan Mekanisme Aksi Diabetogenik, Biodiversitas, 7,4,378-382.
Purnomo Suryohandono, 2000. Oksidan, Antioksidan, dan Radikal Bebas. Buku Naskah Lengkap Simposium Pengaruh Radikal Bebas Terhadap Penuaan dalam Rangka Lustrum IX FKUA 7 September 1955-2000.
Robert KM, Daryl K, Granner & Victor W, Rodwell, 2009, Biokimia Harper ed 27,EGC, Jakarta.
Rowland NE and Bellush LL, 1989. Diabetes Mellitus: Stress. Neurochemistry and Behavior, Neuroscience and Biobehavioral Reviews, 13 (4): 199-206
Szkudelski T, 2001, The Mechanism of Alloxan and Streptozotocin Action In Beta Cells of The Rat Pancreas, Physiology Research, 50: 536 – 540.
Truscott TG, 1990. The photophysics and photochemistry of the carotenoids. J. Photochem. Photobiol. B Biol. 6: 359-371.
Walde SS, Dohle C, Schott-Ohly P, Gleichmann H, 2002. Molecular target structure in alloxan-induced diabetes in mice, Life Sciences, 71, 1681 – 1694
WHO. 2003. Traditional Medicine. http://www.who.int/mediacentre/factsheets/fs134/en/.
Wilson GL and LeDoux SP,1989. The Role of Chemical in The Etiology of Diabetes Mellitus, Toxicologic Pathology, 17: 357 – 362.
Wilson GL, Patton NJ, McCord JM, Mullins DW, Mossman BT, 1984, Mechanism of streptozotocin and alloxan-induced damage in rat beta-cells, Diabetologia., 27(6): 587 – 591.
Winarsih., 2007, Antioksidan Alami dan Radikal Bebas, Potensi dan Aplikasinya dalam Kesehatan, Kansius.
Young AJ & Lowe GM, 2001. Antioxidant and prooxidant properties of carotenoids. Arch. Biochem. Biophys. 385 : 20-27
Yuriska F, Anindhita (2009) Efek Aloksan terhadap Kadar Glukosa Darah Tikus Wistar. Undergraduate thesis, Semarang: Universitas Diponegoro.
DOI: http://dx.doi.org/10.30742/jikw.v7i1.314
Refbacks
- There are currently no refbacks.
Copyright (c) 2018 Qonita Achmad, Irmawati Dikman, Sulistiana Prabowo
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
Jurnal Ilmiah Kedokteran Wijaya Kusuma is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License