The Lipid Profile and Aorta Histopathology On Hyperlipidemic Rat by Saurauia vulcani Korth. Leaves Extract
DOI:
https://doi.org/10.32734/idjpcr.v6i1.6521Keywords:
Saurauia vulcani Korth, extract, dose, cholesterol, . Dyslipidemia, Saurauia vulcani Korth., Lipid profile, Proliferation, AortaAbstract
Abstract. Dyslipidemia is a pathological condition characterized by increased levels of total cholesterol, triglycerides and LDL and decreased levels of HDL. Dyslipidemia causes cardiovascular disease risk factors by increasing cholesterol levels, increasing triglyceride levels, lowering HDL levels, and increasing LDL levels, as well as decreasing the proliferation of cardiac aortic cells in dyslipidemic rats. The pirdot plant (Saurauia vulcani Korth.) has long been known by the Simalungun, Toba and Karo communities to have the potential to treat various diseases caused by disruption of lipid processes in the body. Pirdot leaves contain bioactive compounds of flavonoids, tannins and saponins that have the potential to improve lipid profiles and prevent cardiovascular disease. This study aims to determine the activity of EEDP on the lipid profile of dyslipidemic rats. Pirdot leaf simplicia powder was extracted by maceration with 96% ethanol solvent and the extract was used on 30 dyslipidemic rats which were divided into 6 groups. Group 1 (Na-CMC), group 2 (Atorvastatin), group 3, 4, 5, 6 EEDP doses of 50, 100, 200, 400 mg/kg BW were administered orally for 21 days. At the end of the treatment, the levels of total cholesterol (TC) and aortic cell proliferation were measured. The results showed that Saurauia vulcani Korth had water content (6.23%), water soluble extract (10.50%), simplicia content soluble in ethanol (14.77%), total ash content (7.05%) and acid insoluble ash content (0.48%). From the antidyslipidemic study it was shown that EEDP 400 mg/kg BW improved blood lipand to increase aortic cell proliferation dyslipidemic rats was 69.84±0.27. Based on the explanation above, it is concluded that EEDP has an antidyslipidemic effect.
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References
Mulyono dan Mulyanti. Khasiat dan Manfaat Daun Sirih Obat Mujarab Dari Masa ke Masa, Edisi ke-1.
Jakarta:Agromedia Pustaka. 2004: 1-11.
Ali RA dan Hariadi. Hubungan Obesitas dengan Beberapa Faktor Resiko Penyakit Jntung Koroner (PJK) di
Laboratorium Klinik Prodia Makassar. Jurnal obesitas dan jantung coroner. 2005: 5-9.
Sarvesh CN, Jennifer F, Suresh J, Yogesh HS, Shivakumar S. Antihyperlipidemic activity
of Achyranthes aspera Linn leaves on cholesterol induced hyperlipidemia in rats. Research Journal of Pharmacy
and Technology, 2017; 10(1): 201 – 204
Adib M. Memahami dan mencegah kolesterol. Yogyakarta: Kota Buku Indonesia. 2010: 11-15.
Olaiya CO, Omolekan TO. Antihypercholesterolemic activity of ethanolic extract of Buchholzia coriacea in rats.
International Journal of Environmental Research and Public Health, 2015; 11549 0 115599.
Indonesian Journal of Pharmaceutical and Clinical Research Vol.06, No.01 (2023) 025–030 36
Sitorus P. Characterization Simplisia and Ethanolic Extract of Pirdot (Saurauia Vulcani, Korth) Leaves and
Study of Antidiabetic Effect in Alloxan Induced Diabetic Mice. Int.J. ChemTech Res, 2015; 8(6): 789-794.
Sitorus P, Rosidah, dan Satria D. Hypoglycemic activity of ethanolic extract of Saurauia vulcani Korth. Leaves.
Asian J Pharm Clin Res, 2018; 11(1): 35-36.
Hutahaean S, Tanjung M, Sari DP and Ningsih VE. Antihyperglycemic and Antihyperlipidemic Effects of Pirdot
(Saurauia vulcani Korth.) Leaves Extract in Mice. IOP Conf. Series: Earth and Environmental Science, 2018;
: 1-7.
Satria, D, Silalahi J, Haro G, Ilyas S, Hasibuan PAZ. Asian Pacific Journal of Cancer Prevention, 2017; 18(2).
Margata, L, Sialahi, J, Harahap, U, Satria, D. The Effect of Hydrolyzed Virgin Coconut Oil on Lipid Profile and
Liver Enzymes in Dyslipidemic Rats. Asian J Pharm Clin Res, 2018; Vol 11, Issue 10.
Hassan S, El-Twab SA, Hetta M, Mahmoud B. Improvement of lipid profile and antioxidant of
hypercholesterolemic albino rats by polysaccharides extracted from the green alga Ulva lactuca linnaeus. Saudi
J Biol Sci, 2011; 18:333-40.
Hall IH. In: Paoletti R, Kritchevsky D, Holmes WL, editors. Drugs Affecting Lipid Metabolism. Berlin:
Springer. 1987: p. 451.
Reddy NV, Raj P, Raju G, Anarthe SJ. Antihyperlipidemic activity of Cassia fistula bark using high fat diet
induced hyperlipidemia. Int J Pharm Pharm Sci, 2015; 7:61-4.
Peng IW, and Kuo SM. Flavonoid Structure Affects the Inhibition of Lipid Peroxidation in Caco-2 Intestinal
Cells at Physiological Concentrations. The Journal of Nutrition, 2003; Issue 7: 2184 – 2187.
Joni T, Rama D, Purwaningsih, Hadi K. Effect of Ethanol Extract from Purple Eggplant Skin (Solanum
melongena L) On Blood Glucose Levels and Pancreatic Β Cells Regeneration on White Rats Male
Hypercholesterolemia-Diabetic. Research Journal of Pharmacy and Technology, 2019; 12(6): 2936 – 2942.
Puttaswamy NY, and Urooj. In Vivo Antihypercholesterolemic Potential of Swietenia mahagoni Leaf Extract.
HindawI, 2016; p. 6.
Muflikhatur SR, dan Murwani HR. Perbedaan Pengaruh Antara Ekstrak dan Rebusan Daun Salam (Eugenia
polyantha) Dalam Pencegahan Peningkatan Kadar Kolesterol Total Pada Tikus Spraque Dawley. Journal of
Nutrion College, 2014; 3(1): 148.
Thilakavathu A, Arjun P, Samiraj R. Hypocholesterolemic Effect of Dietary Fish Oil in Albino Wistar Rats.
Research Journal of Pharmacy and Technology, 2019; 12(9): 4161 – 4164.
Amany MM, Tawfik MF, Hikal MS, Tag ED. Hypocholesterolemic Effect of Saponin Extracts in Experimental
Animals. Arab Universities Journal of Agricultural Sciences, 2019; 26(6): 2463 – 2478.
Silalahi J. Makanan Fungsional. Yogyakarta: Kanisius. 2006: Hal. 85-98.
Salvamani S, Gunasekaran B, Shaharuddin NA, Ahmad SA, Shukor MY. Antiartherosclerotic Effects of Plant
Flavonoids. BioMed Research International, 2014; (11): 1 – 3.
Morakinyo AO, Iranloye BO, Oyelowo OT, Nnaji J. The mechanism of increasing the enzymes SGOT and SGPT
are caused by the inclusion of excess toxic substances into the body that will be metabolized by the enzyme
cytochrome P450 in the liver into free radicals. Biology and Medicine, 2012; 4 (3): 134 – 140.
Perdana, F., W.S. Deden, dan R.D. Rahmi. 2016. Penapisan Fitokimia Dan Uji Aktivitas Antioksidan Ekstrak
Metanol Daun Jambu Bol (Syzygium malaccense (L.) Merr. & Perry), Daun Salam (Syzygium polyanthum
(Wight.) Walpers), Serta Daun Jamblang (Syzygium cumini (L.) Skeels) Asal Arboretum Garut. Jurnal Farmako
Bahari. Vol. 7, No. 2.
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