Blood-Glucose Levels of Rats Given High-Fat Diets after Administration of Neem Leaf Ethanolic Extract

Sri Isdadiyanto(1), Siti Muflichatun Mardiati(2), Agung Janika Sitasiwi(3),


(1) Departement of Biology, Faculty of Science and Mathematics, Diponegoro University
(2) Departement of Biology, Faculty of Science and Mathematics, Diponegoro University, Indonesia
(3) Departement of Biology, Faculty of Science and Mathematics, Diponegoro University, Indonesia

Abstract

Azadirachta indica A. Juss (Neem) is a medicinal plant that contains antioxidants, antihyperlipidemia, and has antidiabetic activity. This research aimed to examine the effect of neem leaf ethanolic extract on blood glucose levels of white rats given high-fat rations. The male white rats (Rattus norvegicus L.) with two months of age were used. The treatment of test animals consisted of six treatment groups and four replications, namely: the control group (P0); given high fat rations + duck egg yolk 2.5 ml/200gBW (P1); given high-fat rations + 8 mg/200gBW simvastatin (P2); and P1+ the dose of neem leaf ethanolic extract of 75; 100; and 125 mg/200gBW (P3; P4; and P5). Blood-glucose levels were analyzed by colorimetric enzymatic method using Roche Diagnostics Cobas C reagents kits. Blood-glucose level was determined using Roche / Hitachi cobas c systems automatically. Homogeneous and normally distributed data of blood-glucose levels, body weight and feed consumption were analyzed statistically using ANOVA followed by Duncan's test with a significance level of 5% using SPSS 16.0 software. The results indicated that giving the neem leaf ethanolic extract of could reduce the blood glucose levels. In this study, it was concluded that the neem leaf ethanolic extract of could potentially be used as an alternative to cure diabetes mellitus.

Keywords

Hyperlipidemia; Diabetes mellitus; Used cooking oil; Blood-glucose; Medicinal plant

Full Text:

PDF

References

Ahima, R. S.M.D. & Antwi, D. A. (2008). Brain regulation of appetite and satiety. Endocrinol

Metab. Clin. North Am., 37(4), 811- 823.

Alzohairy, M. A. (2016). Therapeutics Role of Azadirachta indica (Neem) and Their Active

Constituents in Diseases Prevention and Treatment. Evidence-Based Complementary

and Alternative Medicine. 1–11.

Andican, G. Gelisgen, R. Unal, E. Tortum, O.B. Dervisoglu, S. Karahasasoglu, T. & Burcak, G.

(2005). Oxidative stress and nitric oxide in rats with alcohol-induced acute pancreatitis.

World J. Gastroenterol, 1(11), 2340-2345.

Chattopadhyay, R.R. (1999). Possible mechanism of antihyperglycemic effect of Azadirachta

indica leaf extract. J of Ethnopharmacol, 67, 373-376.

Chattopadhyay, R.R. & Bandyopadhyay, M. (2005). Effect of azadiractha indica leaf extract on serum lipid profil changes in normal and streptozotocin induced diuretic rats.African J. of Biomedical Research, 8, 101-104.

Collins, S. C., Hoppa, M. B. Walker, J. N. Amisten, S. Abdulkhader, F. & Bengtsson, M. (2010). Progression of diet-induced diabetes in C57Bl6J mice involves functional dissociation of Ca2+ channels from secretory vesicles. J. Diabetes, 1(59), 1192–1201.

Choy, K. W. Murugan, D., Leong, X. Abas, R. Alias, A. & Mustafa, M. R. (2019). Flavonoids as Natural Anti- Inflammatory Agents Targeting Nuclear Factor-Kappa B (NFκB) Signaling in Cardiovascular Diseases: A Mini Review. Fronti Pharmacol, 10, 1295.

Debashri, M. & Mondal, T. (2012). A Review on efficacy of Azadirachta indica A. Juss based biopesticides: An Indian perspective. Research Journal of Recent Sciences, 1(3), 94-99.

Dusaulcy, R. Handgraaf, S. Visentin, F. Howald, C. Dermitzakis, E. T. Philippe, J. & Gosmain, Y. (2019). High-fat diet impacts more changes in beta-cell compared to alpha-cell transcriptome. PLoS ONE, 14(3), 1-16.

Foley, E. Akhavan, N. George, K. Siebert, S. & Munoz, J. (2019). Body Composition in Subjects with Prediabetes and Type 2 Diabetes. Current Developments in Nutrition, 3(1), 8-29.

Hanung, A. Fanti S. & Ainun, R. (2019). Pengaruh Frekuensi Penggorengan Minyak Jelantah Terhadap Diameter dan Gambaran Histopatologi Lumen Aorta Tikus Wistar (Rattus novergicus). Jurnal Kedokteran Diponegoro, 8(1), 26-37.

Hasana, A. Sitasiwi, A. & Isdadiyanto, S. (2019). Hepatosomatik Indeks dan Diameter Hepatosit Mencit (Mus musculus L.) Betina Setelah Paparan Ekstrak Etanol Daun Mimba (Azadirachta indica Juss.). Jurnal Pro-Life, 6(1), 1-12.

Hao, M. Head, W. S. Gunawardana, S. C. Hasty, A. H. & Pitson, D. W. (2007). Direct Effect of Cholesterol on Insulin Secretion. Diabetes, 56(9), 2328-2338.

Hill, R. W. Wyse, G. A. & Anderson, M. (2012). Animal Physiology Third Edition. Sinauer Associates Inc: Massachusetts.

Hoppa, M. B. Collins, S. Ramracheya, R. Hodson, L. Amisten, S. & Zhang, Q. (2009). Chronic palmitate exposure inhibits insulin secretion by dissociation of Ca (2+) channels from secretory granules. Cell Metab, 1(10), 455–465.

Isdadiyanto, S. Sitasiwi, A.J. & Mardiati, S.M. (2020). The Lipid Profile of Rats (Rattus norvegicus L.) Induced by High Fat Ration after Exposed to Ethanolic Neem (Azadirachta indica) Leaf Extract. J. Phys: Conf. Ser., 1524, 012126.

Jannah, B. M. Isdadiyanto, S. & Sitasiwi, A. J. (2020). Histopathological of White Rats Aorta Induced by High-Fat Feed After Administered by Neem Leaf Ethanolic Extract. Biosaintifika: Journal of Biology & Biology Education, 12(3), 370-378.

Kahn, S. E., Hull, R. L. & Utzschneider, K. M. (2006). Mechanisms Linking Obesity to Insulin Resistance and Type 2 Diabetes. Nature, 444(7121), 840–846.

Martin, C. A. Milinsk, M. C. Visentainer, J. V. Matsushita, M. & De-Souza, N. D. (2007). Trans fatty acidforming processes in foods: a review. An Acad Bras Cienc, 1(79), 343-350.

McCance, K. L. & Huether, S. E. (2014). Pathophysiology: The Biologic Basis for Disease in Adults and Children. Edisi ke-7. St. Louis, Mosby.

McMichael, M. A. (2007). Oxidative stress, antioxidants, and assessment of oxidative stress in dogs and cats. J. Am Vet Med Assoc, 231(5), 714-20.

Muhartono, P, M. A. Y. Putri, N. T. Sari, T. N. & Oktafany (2018). Minyak Jelantah

Menyebabkan Kerusakan pada Arteri Koronaria, Miokardium, dan Hepar Tikus Putih

(Rattus norvegicus) Jantan Galur Sprague dawley. Jurnal Kedokteran Universitas

Lampung, 2(2), 129–135.

Munshi, R. P. Joshi, S. G. & Rane, B. N. (2014). Development of an experimental diet model in rats to study hyperlipidemia and insulin resistance and markers for coronary heart disease. Indian Journal of Pharmacology, 46(3), 271-276.

Ningrum, E.W.C. Isdadiyanto, S. & Mardiati, S. M. (2020). Histopathology of Pancreas in

White Rats (Rattus norvegicus L.) that Given with High-Fat Diet and Neem Leaf Ethanol

Extract (Azadirachta indica A. Juss). Buletin Anatomi dan Fisiologi, 5(2), 23-28

Noeman, S. A. Hamooda, H. E. & Baalash, A. A. (2011). Biochemical study of oxidative stress

markers in the liver, kidney and heart of high fat diet induced obesity in rats. Diabetol

Metabol Synd., 3(17), 1-8.

Ozougwu, J.C. Obimba, K.C. Belonwu, C.D. & Unakalamba, C.B. (2013). The Pathogenesis and Pathophysiology of Type 1 and Type 2 Diabetes Mellitus. Academic journal:Journal of Physiology and Pathophysiology, 4(4), 46-57.

Pinnick, K. E. Collins, S. C. Londos, C. Gauguier, D. Clark, A. & Fielding, B. A. (2008). Pancreatic ectopic fat is characterized by adipocyte infiltration and altered lipid composition. Obesity (Silver Spring), 1(6), 522–530.

Russo, B. Picconi, F. Malandrucco, I. & Frontoni, S. (2019). Flavonoids and Insulin-Resistance: From Molecular Evidences to Clinical Trials. International Journal of Molecular Sciences, 2061

Sartika, R. T. A. D. Achmad, K. Triyanti, & Rustika. (2016). Effect of Trans Fatty Acid on Glucose Level and Pancreatic β Cell in Rats. Pakistan Journal of Nutrition, 15(8), 760-762.

Satyanarayana, K. Sravanthi, K. Shaker, I. A. & Ponnulakshmi, R. (2015). Molecular Approach to Identify Antidiabetic Potential of Azadirachta indica. J. Ayurveda Integrative Med, 6(3), 165–174.

Supriyanto, Simon, B. Rifa’i, M. & Yunianta. (2017). Uji Fitokimia dan Aktivitas Antioksidan Ekstrak Daun Mimba (Azaradiracta indica Juss). Prosiding SNATIF ke-4. Fakultas Teknik, Universitas Muria Kudus.

Tandi, J. Muthi'ah H Z. & Yuliet. Y. (2016a). Efektivitas Ekstrak Daun Gedi Merah Terhadap Glukosa Darah, Malondialdehid, 8-Hdroksi-Deoksiguanosin, Insulin Tikus Diabetes,” Trop. Pharm. Chem, 3(4), 264–276.

Tandi, J. As’ad, S. Natzir, R. & Bukhari, A. (2016b). Test Of Ethanolextract Red Gedi Leaves (Albelmoschus Manihot. (L.) Medik) In White Rat (Rattus Norvegicus) Type 2 Diabetes Mellitus. International Journal Of Sciences, 30(4), 84–94.

Tandi, J. Rakanita, Y. Hastuti & Mulyani, S. (2017). Efektivitas Anthihiperurisemia Ekstrak Etanol Daun Seledri (EEDS) Pada Tikus Induksi Oksalat. Journal Of Tropical Pharmacy And Chemistry, 4(1), 1–6.

Tembe-Fokunang, E. A. Charles, F. Kaba, N. Donatien, G. Michael, A. & Bonaventure, N. (2019). The Potential Pharmacological and Medicinal Properties of Neem (Azadirachta indica A. Juss) in the Drug Development of Phytomedicine. Journal of Complementary and Alternative Medical Research, 7(1), 1–18.

Tjahjono, K., Santoso, & Ngestiningsih, D. (2013). Trans fatty acids increase nitric oxide levels and pancreatic beta-cell necrosis in rats. Univ Med., 32(1), 51-59.

Tuminah, S. (2009). Efek Asam Lemak Jenuh dan Asam Lemak Tak Jenuh “Trans” terhadap Kesehatan. Media Peneliti dan Pengembang Kesehatan, 1(19), 13-20.

Verlaan, M. Roelofs, H. M. J. Van Schaik, A. Wanten, G. J. A. Jansen, J. B. M. J. Peters, W. H. M. & Drenth, J. P. H. (2006). Assessment of oxidative stress in chronic pancreatitis patients. World J. Gastroenterol, 12(35), 5705-5710.

Refbacks

  • There are currently no refbacks.




Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 International License.