UJI AKTIVITAS ANTIOKSIDAN Syzygium polyanthum DAN Terminalia catappa L. SECARA IN VITRO DAN IN SILICO

Luthfi Hidayat Maulana, Rizki Noor Prastyono, Syaiful Prayogi, Erni Murniningsih, M. Zidan Alfarikhi

Abstract


Reactive Oxygen Species (ROS) is a radical which is a by-product of metabolic processes. An imbalance between the number of free radicals and the amount of endogenous antioxidants can cause oxidative stress and cause problems for body cells that can cause various metabolic diseases or other degenerative diseases. Exogenous antioxidants can be chemical compounds resulting from synthesis or materials derived from nature that can inhibit the oxidation process. Phenol group compounds can be used as antioxidants. Salam plants (Syzygium polyanthum) and ketapang (Terminalia catappa L.) are rich in phenols. In vitro antioxidant testing using other methods such as DPPH (2,2-Diphenyl-1-Pikrylhidrazyl), in silico, molecular docking was carried out by targeting the heme oxygenase-1 (HO-1) protein to test antioxidant activity with analysis showing binding and strengthening evidence of impending chemical interactions. Based on in vitro testing, ketapang leaf extract has better antioxidant activity compared to bay leaf extract, with an IC50 value of 6.631 and the in silico results of the constituent compounds of ketapang leaves have the best docking value, namely compound 14 with a value of -88.18. Both of these test results reinforce each other


Keywords


ROS, heme oxygenase-1, antioxidant, DPPH

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References


Simanjuntak E, Setia Budi Pasar Tanjung Sari JI. SUPEROKSIDA DISMUTASE (SOD) DAN RADIKAL BEBAS. JURNAL KEPERAWATAN DAN FISIOTERAPI (JKF) 2020;2(2):124–9.

Risfianty DK, Sanuriza I il. Uji Antioksidan Ekstrak Etanol Buah Asam Jawa (Tamarindus Indica L.) Tua Dan Muda Dengan Metode DPPH. Jurnal Inovasi Pendidikan dan Sains [Internet] 2021 [cited 2022 Nov 25];2(2):55–7. Available from: http://ejournal.unwmataram.ac.id/JIPS/issue/view/103

Bengal W. Free Radicals and Their Role in Different Clinical Conditions : An Overview. 2010;1(3):185–92.

Sayuti K dan, Rina Y. ALAMI dan SINTETIK. Padang: Andalas University Press; 2015.

Martemucci G, Costagliola C, Mariano M, D’andrea L, Napolitano P, D’Alessandro AG. Free Radical Properties, Source and Targets, Antioxidant Consumption and Health. Oxygen [Internet] 2022 [cited 2022 Nov 25];2(2):48–78. Available from: https://www.mdpi.com/2673-9801/2/2/6

Hidayati MD, Ersam T, Shimizu K, Fatmawati S. Antioxidant activity of Syzygium polynthum extracts. Indonesian Journal of Chemistry 2017;17(1):49–53.

Kusuma IW, Kuspradini H, Arung ET, Aryani F, Min YH, Kim JS, et al. Biological Activity and Phytochemical Analysis of Three Indonesian Medicinal Plants, Murraya koenigii, Syzygium polyanthum and Zingiber purpurea. JAMS Journal of Acupuncture and Meridian Studies 2011;4(1):75–9.

Wilapangga A, Sari LP. Analisis Fitokimia Dan Antioksidan Metode Dpph Ekstrak. Ijobb 2018;2.

Tampemawa P v, Pelealu JJ, Kandou FEF. UJI EFEKTIVITAS EKSTRAK DAUN KETAPANG (Terminalia catappa L.) TERHADAP BAKTERI Bacillus amyloliquefaciens. PHARMACONJurnal Ilmiah Farmasi-UNSRAT 2016;5(1):308–20.

Wijaya S, Maureen S, Yonas K, Hartanti L, Setiawan HK, Soegianto L, et al. Studi pendahuluan : Korelasi Aktivitas Antikolesterol dengan Aktivitas Antioksidan Ekstrak Etanol Daun Salam ( Syzygium polyanthum ) Preliminary Study : Correlation of Anti-cholesterol Activity with Antioxidant Activity of Ethanol Extract of Bay leaf Leav. Journal of Pharmacy Sciene and Practice 2018;5(1):100–11.

Islamiyati R, Ika NS. Uji Perbedaan Aktivitas Antioksidan Dengan Variasi Konsentrasi Pelarut Etanol 70% dan 96% Pada Ekstrak Etanol Daun Salam Menggunakan Metode Peredaman Radikal Bebas DPPH. Cendekia Journal of Pharmacy 2018;2:134–42.

Raphaël B, Akué Rony M, Loumpangou Célestine N, Engonga Louis-Clément O, Jacques L, Bikanga Raphaël C, et al. Phytochemical study and antioxidant activities of Terminalia catappa L. and Mitragyna ciliata Aubrev and Pellegr medicinal plants of Gabon. ~ 33 ~ Journal of Medicinal Plants Studies 2019;7(1):33–8.

Pisoschi AM, Negulescu GP. Biochemistry and Analytical Biochemistry Methods for Total Antioxidant Activity Determination : A Review. 2011;1(1):1–10.

Gulcin İ. Antioxidants and antioxidant methods: an updated overview. 2020.

Molyneux P. The use of the stable free radical diphenylpicrylhydrazyl (DPPH) for estimating antioxidant. Songklanakarin Journal of Science and Technology (SJST) 2004;26(2):211–9.

McGovern SL, Shoichet BK. Information decay in molecular docking screens against holo, apo, and modeled conformations of enzymes. J Med Chem 2003;46(14):2895–907.

Da Silva Costa J, Da Silva Ramos R, Da Silva Lopes Costa K, Do Socorro Barros Brasil D, De Paula Da Silva CHT, Ferreira EFB, et al. An In Silico Study of the Antioxidant Ability for Two Caffeine Analogs Using Molecular Docking and Quantum Chemical Methods. Molecules 2018;23(11).

Gabr SK, Bakr RO, Mostafa ES, El-Fishawy AM, El-Alfy TS. Antioxidant activity and molecular docking study of Erythrina × neillii polyphenolics. South African Journal of Botany 2019;121:470–7.

Pandey R, Karmakar M, Pant A. Computational Prediction of Molecular Targets responsible for Antioxidant Activity of D-pinitol in Caenorhabditis elegans. International Journal of Computer Applications® (IJCA) 2013;1(NSAAILS):19–23.

Hasanah M, Maharani B, Munarsih E. DAYA ANTIOKSIDAN EKSTRAK DAN FRAKSI DAUN KOPI ROBUSTA (Coffea robusta) TERHADAP PEREAKSI DPPH (2,2-difenil-1 pikrilhidrazil). IJPST 2017;4(2):42–9.

Istyastono EP. Rancangan Obat dan Penapisan Virtual Berbasis Struktur. yogyakarta: Sanata Dharma University Press; 2018.

Khalil M, Amin M, Lukiati B. Analisis Potensi Senyawa Repensol Sebagai Kandidat Inhibitor Replikasi Virus Hepatitis B Secara In Silico. 2020;1–6.

Sari IW, Junaidin J, Pratiwi D. STUDI MOLECULAR DOCKING SENYAWA FLAVONOID HERBA KUMIS KUCING (Orthosiphon stamineus B.) PADA RESEPTOR α-GLUKOSIDASE SEBAGAI ANTIDIABETES TIPE 2. Jurnal Farmagazine 2020;7(2):54.

Manna A, Laksitorini MD, Hudiyanti D, Siahaan P. Molecular Docking of Interaction between ECadherin Protein and Conformational Structure of Cyclic Peptide ADTC3 (Ac-CADTPC-NH2) Simulated on 20 ns. Journal of scientific and applied chemistry 2017;20(1):30–6.

Agustini NWS, Winarni AH. KARAKTERISTIK DAN AKTIVITAS ANTIOKSIDAN SABUN PADAT TRANSPARAN YANG DIPERKAYA DENGAN EKSTRAK KASAR KAROTENOID Chlorella pyrenoidosa. Jurnal Pascapanen dan Bioteknologi Kelautan dan Perikanan 2017;12(1):1–12.

Lestari IW, Isnaeni I, Nurhasanah WD, Imran A. Analisis Spektrum Absorbansi dan Fotoluminensi untuk Mempelajari Kandungan Nutrisi Buah Manggis (Analysis of Absorbance and Photoluminence Spectra to Study the Nutrition Content of Mangosteen Fruit). Median : Jurnal Ilmu Ilmu Eksakta 2019;11:34–42.

Kiromah NZW, Husein S, Rahayu TP. Uji Aktivitas Antioksidan Ekstrak Etanol Daun Ganitri (Elaeocarpus Ganitrus Roxb.) dengan Metode DPPH (2,2 Difenil-1-Pikrilhidazil). Jurnal Farmasi Indonesia [Internet] 2021;18(1):60–7. Available from: http://journals.ums.ac.id/index.php/pharmacon

Hamad A, Mahardika MGP, Yuliani I, Hartanti D. Chemical constituents and antimicrobial activities of essential oils of Syzygium polyanthum and Syzygium aromaticum. Rasayan Journal of Chemistry 2017;10(2):564–9.

Abdulrahman MD. Review of Ethnopharmacology , Morpho - Anatomy , Biological Evaluation and Chemical Composition of Syzygium polyanthum (Walp) Wight. 2021;9(1):167–77.

Tukiran T, Wardhana AP, Hidajati N, Shimizu K. Two Phenolic Compounds from Chloroform Fraction of Syzygium Polycephalum MIQ. Stem Bark (Myrtaceae). Molekul 2018;13(1):23.

Terças AG, Monteiro A de S, Moffa EB, dos Santos JRA, de Sousa EM, Pinto ARB, et al. Phytochemical characterization of Terminalia catappa Linn. extracts and their antifungal activities against Candida spp. Front Microbiol 2017;8(APR):595.

Pace CN, Fu H, Fryar KL, Landua J, Trevino SR, Shirley BA, et al. Contribution of Hydrophobic Interactions to Protein Stability. J Mol Biol [Internet] 2011 [cited 2022 Jul 24];408(3):514. Available from: /pmc/articles/PMC3086625/

Patrick GL. An Introduction to Medicinal Chemistry Fifth Edition. 5th Ed. New York: 2013.

Siswandono. Medicinal Chemistry. 2nd ed. Surabaya: Airlangga University Press; 2016.

Klebe G. Protein–Ligand Interactions as the Basis for Drug Action. Drug Design 2013;61–88.

Böhm H-Joachim, Schneider G. Protein-ligand interactions from molecular recognition to drug design. Wiley-VCH; 2003.

N Baker BE. 22.2. Hydrogen bonding in biological macromolecules. 2006.

Panigrahi SK, Desiraju GR. Strong and weak hydrogen bonds in the protein–ligand interface. Proteins: Structure, Function, and Bioinformatics [Internet] 2007 [cited 2022 Aug 4];67(1):128–41. Available from: https://onlinelibrary.wiley.com/doi/full/10.1002/prot.21253

Itoh Y, Nakashima Y, Tsukamoto S, Kurohara T, Suzuki M, Sakae Y, et al. N+-C-H···O Hydrogen bonds in protein-ligand complexes. Sci Rep [Internet] 2019 [cited 2022 Aug 4];9(1). Available from: /pmc/articles/PMC6347603/




DOI: https://doi.org/10.30591/pjif.v12i3.5163

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