Effectiveness Test of Tome-tome Fruit Ethanol Extract (Flacourtia inermis,Roxb) against Antidiabetes in White Rats (Rattus norvegicus) Induced by Alloxan
DOI:
https://doi.org/10.53682/ibj.v2i2.3259Keywords:
Flacourtia inermis, antidiabetic, Rattus norvegicus, dose, blood glucoseAbstract
Diabetes mellitus is a chronic metabolic syndrome disorder of carbohydrates, lipids, and fats caused by insulin deficiency in the body causing blood glucose above the normal threshold (hyperglycemia). Tome-tome (Flacourtia inermis, Roxb) contains anthocyanins which have the ability to lower blood sugar levels. This study aimed to determine the effectiveness of the ethanolic extract of tome-tome fruit (Flacourtia inermis, Roxb) and to see what dose and day treatment was most effective against diabetes in white rats (Rattus norvegicus) induced by alloxan. The place of research was carried out at the Pharmacy Laboratory of Trinita University, Manado with a research time of 3 months. The test animals used were 25 white rats (Rattus norvegicus) divided into 5 treatment groups, namely normal control, negative control, positive control (glibenclamide) and ethanol extract of tome-tome fruit with doses of 150 mg/kgBW and 300 mg/kgBW. Blood glucose measurements were carried out on day 1, day 7, and day 14. The results showed that the effectiveness of tome-tome fruit ethanol extract against alloxan-induced diabetic rats decreased blood glucose levels. A dose of 150 mg/kgBW ethanol extract of tome-tome fruit was more effective in reducing blood glucose levels compared to a dose of 300 mg/kgBW rats.
References
Artanti P, Masdar H, Rosdiana D. (2015). Angka Kejadian Diabetes Melitus Tidak Terdiagnosis pada Masyarakat Kota Pekanbaru. Jom FK, 2(2).
Bahruddin SS, Hamid FA, Amini R. (2017). Fisikokimia dan kandungan Vitamin C pada Buah Tome tome (Flacourtia inermis) Kota Ternate. Jurnal LINK, 13(1), 2017, 58-60.
Bahruddin, SS. (2018). Fitokimia dan Antioksidan pada Buah Tome-Tome (Flacourtia inermis). Jurnal Hospital Majapahit, 10 (1), 43-50.
Husna NE, Novita M, Rohaya S. (2013). Kandungan antosianin dan aktivitas antioksidan ubi jalar ungu segar dan produk olahannya. Agritech 33, 296-302.
International Diabetes Federation (IDF). (2013). IDF Diabetes Atlas. 6th ed. p. 11- 3.
Kurniawaty, EE. (2015). Uji Efektivitas Daun Belimbing Wuluh (Averrhoa Bilimbi L.) Sebagai Pengobatan Diabetes Melitus. Jurnal Majority, 5(2), 33.
Lenzen, S. (2008). The Mechanism of Alloxan and Streptozotocin Induced Diabetes. Diabetologia , 51, 216-226.
Maharani, L. (2014). Potensi Regenerasi Sel Leydig Dan Sel Spermatogenik Pada Testis Mencit (Mus Musculus) Hiperglikemik Yang Diinduksi Dengan Ekstrak Ikan Gabus (Channa Striata). Skripsi : Fakultas Matematika Dan Ilmu Pengetahuan Alam Institut Teknologi Sepuluh Nopember, 12.
Makalalag IW, Wullur A, Wiyono W. (2013). Uji ekstrak daun binahong (Anredera cordifolia Steen) tehadap kadar gula darah pada tikus putih jantan galur wistar (Rattus novergicus) yang diinduksi sukrosa. Jurnal Ilmiah Farmasi, 1, 28-34.
Maliangkay, D. M. (2016). Uji Efektifitas Antidiabetes Ekstrak Etanol Kulit Buah Manggis (Gracinia mangostana L.) pada Tikus Putih (Rattus norvegicus) yang Diinduksi Aloksan. [Tesis]. Program Pascasarjana Prodi Biologi, Universitas Negeri Manado.
Maliangkay, H. P. & Rumondor, R. (2018). Uji Efektivitas Antidiabetes Ekstrak Etanol Kulit Buah Manggis (Garcinia mangostana L) pada Tikus Putih (Rattus Norvegicus) yang di Induksi Aloksan. Chemistry Progress, 11(1), 15.
Mukhriani. (2014). Ekstraksi, Pemisahan Senyawa, dan Identifikasi Senyawa Aktif. Jurnal Kesehatan 12(2), 361-367.
Nawang W. T. N. (2018). Efektivitas Antara Umbi Dan Daun Tanaman Yakon (Smallanthus sonchifolius) Terhadap Penurunan Kadar Gula Darah Tikus Putih (Rattus norvegicus) Yang Terinduksi Streptozotocin. Strada Jurnal Ilmiah Kesehatan, 7(1), 64.
Otari, A. (2013). Uji Efek Antihiperglikemia Ekstrak n-heksan dari Lumut Hati (Mastighora dicladus) dengan Metode Induksi Aloksan. Skripsi. Fakultas Kedokteran dan Ilmu Kesehatan Universitas Islam Negeri Syarif Hidayatullah. Jakarta
Ozougwu JC, Obimba KC, Belonwu CD, Unakalamba CB. (2013). The Pathogenesis and pathophysiology of type 1 and type 2 diabetes mellitus. 4(4), 46-57.
Pelima, J.N. (2016). Kajian Pengembangan Tanaman Flacourtia inermis Roxb. Jurnal Envira 1 (1), 2528-6439.
Prameswari, O.M. & Widjanarko, S.B. (2014). Uji efek air daun pandan wangi terhadap penurunan kadar glukosa darah dan histopatologi tikus diabetes melitus. FTP Universitas Brawijaya, Malang.
Reis JF, Monteiro VVS, Gomes RDS, Carmo MM, Costa GV, Ribera PC, Monteiro MC. (2016). Action mechanism and cardiovascular effect of anthocyanins: a systematic review of animal and human studies. J Transl Med 14, 315. DOI: 10.1186/s12967-016-1076-5.
Syed, M.A., Vrushabendra, B.M., Gopkumar, R.D., Chandrashekara, V.M. (2005). Anti-Diabetic Activity of Terminalia catappa L. Leaf Extracts in Alloxan-induced Diabetic Rats. Iranian Journal Of Pharmacology & Therapeutics, 4, 36- 39.
Wahyuni R., Arsunan Arsin A., Zulkifli Abdullah A. (2013). Factor Releted to Anciety levels in Patients with Diabetes Melitus Type II Bhayangkara Andi Mappa Oudang Hospital. Universitas Hasanuddin, Makasar.
Yuliantika NMR, Gelgel KTP, Kardena IM. (2013). Efek Toksisitas Ekstrak Daun Sirih Merah Terhadap Gambaran Mikroskopis Ginjal Tikus Putih Diabetik Yang Diinduksi Aloksan. Buletin Veteriner Udayana, 5, 2084-2495.