Pengaruh Ekstrak Etanol Daun Kenikir (Cosmos caudatus) terhadap Kadar Glutathion Dan Interleukin 6 Serum Tikus Wistar Jantan yang Diberi Pakan Tinggi Kolesterol

Authors

  • I Gusti Agung Dewi Sarihati Poltekkes Denpasar
  • I Gusti Ayu Sri Dhyanaputri Poltekkes Denpasar

DOI:

https://doi.org/10.26630/jk.v11i1.1836

Keywords:

GSH, High cholesterol, IL-6, Kenikir leaves.

Abstract

Chronic dyslipidemia, especially in hypercholesterolemia, can directly disrupt endothelial cell function through increased formation of oxidized LDL which will stimulate an inflammatory response including interleukin 6 (IL-6) release. For this reason, it is necessary to have anti-inflammation that can reduce the effects of hypercholesterolemia on blood vessels. Polyphenols have anti-inflammatory effects and kenikir leaves are vegetables that are rich in polyphenols. This study aims to prove the effect of kenikir leaf (Cosmos caudatus) ethanol extract on IL-6 levels of serum of male Wistar rats fed high cholesterol. The method used is a true experimental study with a Post-test Only Control Group Design. Samples using 24 male rats were divided into 4 groups DS, DTK, Ss, and Cc. DTK, Ss and Cc groups were given high cholesterol feed for 20 weeks. In the 17th to 20th weeks the Ss group was given additional simvastatin and the Cc group was given an additional extract of Cosmos caudatus leaf. Whereas the DS group was only given standard feed for 20 weeks. After 20 weeks all rats in all four groups were examined serum GSH and IL-6 levels. The results showed the highest GSH serum levels average in Cc with p-value=0,016 but not different from Ss. IL-6 serum levels in DTK were higher than those of the other three groups and were significantly different with p-value=0,035. The difference occurs between DTK and DS, Ss and Cc, not different between DS, Ss and Cc. The ethanol extract of kenikir leaf influences the serum IL-6 levels of male Wistar rats fed high cholesterol.

References

Andarwulan, N., Batari, R., Sandrasari, D. A., Bolling, B., & Wijaya, H. (2010). Flavonoid content and antioxidant activity of vegetables from Indonesia. Food chemistry, 121(4), 1231–1235. doi:10.1016/j.foodchem. 2010.01.033.

Angeloni, C and Hrelia, S (2012). Quercetin reduces inflammatory responses in LPS-stimulated cardiomyoblasts. Oxidative Medicine and Cellular Longevity.

Bahia, P.K., Rattray, M., Williams, R.J., (2008). Dietary Flavonoid Epicatochin Stimulates Phosphatidylinositol 3-kinase-dependent Antioxidant Response Element Activity and Up regulates Glutathine in Cortical Astrocytes. Journal of Neurochemistry, 106 (5), pp: 2194-2204.

Bahorun T., Soobrattee, M.A.,Luximon-Ramma,V.,Arouma, O. (2006). Free Radicals and Antioxidants in Cardiovascular Health and Disease. Internet Journal of Medical Update, 1 (2), July-Des 2006. http://www. geocities.com.

Cesari, M., Penninx B.W., Newman, A.B., Kritchevsky, S.B., Nicklas, B.J., Sutton-Tyrrell, K., Rubin, S.M., Ding, J., Simonsick, E.M., Harris, T.B., Pahor, M. (2003). Inflammatory markers and onset of cardiovascular events: results from the Health ABC study. Circulation 108(19): 2317-22.

Chiva-Blanch G1, Urpi-Sarda M, Llorach R, Rotches-Ribalta M, Guillén M, Casas R, Arranz S, Valderas-Martinez P, Portoles O, Corella D, Tinahones F, Lamuela-Raventos RM, Andres-Lacuev. (2012). Differential effects of polyphenols and alcohol of red wine on the expression of adhesion molecules and inflammatory cytokines related to atherosclerosis: a randomized clinical trial. C, Estruch R. J Clin Nutr Am, 95(2):326-34.

Comalada M., Ballester I., Bailón E., Sierra S., Xaus J., Gálvez J., de Medina F.S., Zarzuelo A. (2006). Inhibition of pro-inflammatory markers in primary bone marrow-derived mouse macrophages by naturally occurring flavonoids: Analysis of the structure–activity relationship. Biochem. Pharmacol. 72(8):1010–1021. https://doi.org/10.1016/j.bcp.2006.07.016

Egert, S., Bosy-Westphal, A., Seiberl, J., Kürbitz, C., Settler, U., Plachta-Danielzik, S., . . . Müller, M. (2009). Quercetin reduces systolic blood pressure and plasma oxidised low-density lipoprotein concentrations in overweight subjects with a high-cardiovascular disease risk phenotype: A double-blinded, placebo-controlled cross-over study. British Journal of Nutrition, 102(7), 1065-1074. doi:10.1017/S0007114509359127.

Fouad,T. (2010). Antioxidant Nature and Chemistry. http://www.doctorslounge.com.

Fujioka S., Niu J., Schmidt C., Sclabas G.M., Peng B., Uwagawa T., Li Z., Evans D.B., Abbruzzese J.L., Chiao P.J. (2004). NF-κB and AP-1 connection: Mechanism of NF-κB-dependent regulation of AP-1 activity. Mol. Cell. Biol. ;24(17):7806–7819. https://doi.org/10.1128/MCB.24.17.7806-7819.2004.

Goliomytis, M., Tsoureki, D., Simitzis, P. E., Charismiadou, M. A., Hager-Theodorides, A. L. Deligeorgis, S. G. (2014). The effects of kuersetin dietary supplementation on broiler growth performance, meat quality, and oxidative stability, Poultry Science, Volume 93, Issue 8, August 2014, Pages 1957–1962, https://doi.org/10.3382/ps.2013-03585

Hatma, R.D. (2012). Sosial Determinan Dan Faktor Risiko Kardiovaskuler (Analisa data sekunder Riskesdas 2007). Buletin Jendela Data dan Informasi Kesehatan, Smt II, 2012, : 13 – 21.

Hošek J., Šmejkal K. (2015). Flavonoids as Anti-inflammatory Agents. In: Parnham M. (eds) Encyclopedia of Inflammatory Diseases. Birkhäuser, Basel.

Iskender, H, Yenice, G, Dokumacioglu, E, Kaynar, O, Hayirli, A, & Kaya, A. (2016). The Effects of Dietary Flavonoid Supplementation on the Antioxidant Status of Laying Hens. Brazilian Journal of Poultry Science, 18(4), 663-668. https://dx.doi.org/10.1590/1806-9061-2016-0356

Islam, B., Sharma, C., Adem, A., Aburawi, E., & Ojha, S. (2015). Insight into the mechanism of polyphenols on the activity of HMGR by molecular docking. Drug design, development and therapy, 9, 4943–4951. doi:10.2147/DDDT.S86705.

Izza, N, Dewi,S.R., Putranto, A.W., Yuneri, D.R., Dachi, MYS. (2016). Ekstraksi Senyawa Fenol Daun Kenikir (Cosmos Caudatus) Dengan Pulse Electric Field (Pef). Jurnal Teknologi Pertanian, Vol. 17 No. 2, 91-96.

http://jtp.ub.ac.id/index.php/jtp/article/download/533/895.

Jeong G.S., Lee S.H., Jeong S.N., Kim Y.C., Kim E.C.(2009). Anti-inflammatory effects of apigenin on nicotine- and lipopolysaccharide-stimulated human periodontal ligament cells via heme oxygenase-1. Int. Immunopharmacol. 9 (12):1374-1380. https://doi.org/10.1016/j.intimp.2009.08.015

Karnen, G.B., Rengganis, I. (2009). Imunologi Dasar. Jakarta: Fakultas Kedokteran Universitas Indonesia. p. 217-287.

Kidd, P.M. (1997). Glutathione: Systemic Protectant Against Oxidative and Free Radical Damage. Alternative Medicine Review. 2 (3).pp 155-176.

Kobori M., Takahashi Y., Akimoto Y., Sakurai M., Matsunaga I., Nishimuro H., Ippoushi K., Oike H., O.-K. M. (2015). Chronic high intake of kuersetin reduces oxidative stress and induces expression of the antioxidant enzymes in the liver and visceral adipose tissues in miceNo Title. J. Funct. Foods, 15, pp. 551–560. doi: doi: 10.1016/j.jff.2015.04.006.

Koli, R., Erlund, I., Jula, A., Marniemi, J., Mattila, P., & Alfthan, G. 2010. Bioavailability of various polyphenols from a diet containing moderate amounts of berries. Journal of agricultural and food chemistry, 58(7), 3927-3932.

Lee Y.S., Kim M.S., Lee D.H., Kwon T.H., Song H.-H., Oh S.-R., Yoon D.Y.(2015). Luteolin 8-C-β-fucopyranoside downregulates IL-6 expression by inhibiting mapks and the NF-κB signaling pathway in human monocytic cells. Pharmacol. Rep. 67 (3):581–587. https://doi.org/10.1016/j.pharep.2014.12.016

Li, C., Zhang, W. J., Choi, J., & Frei, B. (2016). Kuersetin affects glutathione levels and redox ratio in human aortic endothelial cells not through oxidation but formation and cellular export of kuersetin-glutathione conjugates and upregulation of glutamate-cysteine ligase. Redox biology, 9, 220–228. doi:10.1016/j.redox.2016.08.012.

Liu, L., Wu, X., Zhang, B., Yang, W., Li, D., Dong, Y., … Chen, Q. (2017). Protective effects of tea polyphenols on exhaustive exercise-induced fatigue, inflammation and tissue damage. Food & nutrition research, 61(1), 1333390. doi:10.1080/16546628.2017.1333390.

Moskaug,J., Carlsen,H., Myhrstad, M.C.W., Blomhoff, R. (2005). Polyphenols and glutathione synthesis regulation, The American Journal of Clinical Nutrition, Vol 81, Issue 1, January 2005, Pages 277S-283S, https://doi.org/10.1093/ajcn/81.1.277S.

Mueller M., Hobiger S., Jungbauer A.(2010) Anti-inflammatory activity of extracts from fruits, herbs and spices. Food Chem. ;122(4):987–996. https://doi.org/10.1016/j.foodchem.2010.03.041

Murwani,S., Ali, M., Muliartha, K. (2006). Diet Aterogenik Pada Tikus Putih (Rattus Novergicus Strain Wistar) Sebagai Model Hewan. Jurnal Kedokteran Brawijaya, XXII(1): 6-9

Pandey, K. B., & Rizvi, S. I. 2009. Plant polyphenols as dietary antioxidants in human health and disease. Oxidative medicine and cellular longevity, 2(5), 270–278. doi:10.4161/oxim.2.5.9498.

Omoigui, S. (2007). The Interleukin-6 Inflammation Pathway from Cholesterol to Aging-Role of Status, Bisphosphorates and plant polyphenols in Aging and Age-related Diseases. Division of Inflamation and Pain Medicine, L.A. Pain Clinic, Los Angeles, USA. p. 31-33.

Panicker,S.R., Sreenivas,P., Babu, M. S., Karunagaran, D. and Kartha, C. C. (2010) Quercetin attenuates monocyte chemoattractant protein-1 gene expression in glucose primed aortic endothelial cells through NF-κB and AP-1. Pharmacological Research, 62(4), 328–336. https://doi.org/10.1016/j.phrs.2010.06.003

Perumal, V., Hamid, A., Ismail, A., Saari, K., Abas, F., Ismail, I., ., M., Lajis, N., & Khatib, A. (2014). Effect Of Cosmos Caudatus Kunth Leaves On The Lipid Profile Of A Hyperlipidemia-Induced Animal Model. Journal of Food Chemistry and Nutrition, 2(1), 43-51. Retrieved from http://escijournals.net/index.php/JFCN/article/view/450/290.

Qiao Y., He H., Jonsson P., Sinha I., Zhao C., Dahlman-Wright K. (2016) AP-1 is a key regulator of proinflammatory cytokine tnfα-mediated triple-negative breast cancer progression. J. Biol. Chem. 291(10):5068-79. https://doi.org/10.1074/jbc.M115.702571

Ramyaa,P., Krishnaswamy, R. and Padma, V. V. (2014). Quercetin modulates OTA-induced oxidative stress and redox signalling in HepG2 cells-up regulation of Nrf2 expression and down regulation of NF-κB and COX-2. Biochimica et Biophysica Acta (BBA)-General Subjects, 1840(1) 681-692. https://doi.org/10.1016/j.bbagen.2013.10.024.

Ribeiro D., Freitas M., Tomé S.M., Silva A.M.S., Laufer S., Lima J.L.F.C., Fernandes E. (2015). Flavonoids inhibit COX-1 and COX-2 enzymes and cytokine/chemokine production in human whole blood. Inflammation; 38(2):858–870. https://doi.org/10.1007/s10753-014-9995-x

Richmond A.,and Yang J. (2016) The role of NF-κB in modulating antitumor immunity. OncoImmunology. 5 (1):921. https://doi.org/10.1080/2162402X.2015.1005522.

Sakoda, K., Yamamoto, M., Negishi, Y., Liao, J. K., Node, K., & Izumi, Y. (2006). Simvastatin decreases IL-6 and IL-8 production in epithelial cells. Journal of dental research, 85(6), 520–523. doi:10.1177/154405910608500608.

Salvayre, A.N., Dousset, N., Ferretti, G., Bacchetti, T., Curalola, G., Salvayre, R. (2006). Antioxidant and Cytoprotective Properties of High- Density Lipoproteins in Vascular Cells. Free Radical Biology and Medicine Vol. 41 (7): 1031 – 1040.

Wahyuni, W.T., Darusman, L.K., Rahmat, A. P. (2018). Analisis Kadar Flavonoid Dan Antioksidan Ekstrak Daun Kenikir (Cosmos caudatus), Rumput Mutiara (Oldenlandia Corymbosa), Dan Sirsak (Annona Muricata) Dengan Teknik Spektrometri. Analit: Analytical and Environmental Chemistry, Volume 3, No. 01.

Weber, C and Noels, H. (2011). Atherosclerosis: Current Pathogenesis and Theraupetic Options. Nature Medicine. Nov; 17 (11).1410-1422.

Xu, D., Hu, M. J., Wang, Y. Q., & Cui, Y. L. (2019). Antioxidant Activities of Kuersetin and Its Complexes for Medicinal Application. Molecules (Basel, Switzerland), 24(6), 1123. doi:10.3390/molecules24061123.

Zheng, J., Wu, J., Chen, J. et al. (2016). Therapeutic effects of quercetin on early inflammation in hypertriglyceridemia-related acute pancreatitis and its mechanism. Pancreatology, 16 (2), 200–210. https://doi.org/10.1016/j.pan.2016.01.005

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Published

27-05-2020