Studi In Silico Prediksi Potensi Senyawa Bahan Alam sebagai Anti-Inflamasi dalam Menghambat COX-2

  • Velieana Laurent Sanjaya Universitas Singaperbangsa Karawang
  • Munir Alinu Mulki Universitas Singaperbangsa Karawang
Keywords: in silico, inflammation, secondary metabolite

Abstract

Infection or tissue injury induces inflammation, which causes pain. Non-Steroidal Anti-Inflammatory Drugs (NSAIDs) are commonly used anti-inflammatory agents but can cause adverse effects on the stomach, kidneys, and liver when used long-term. As a result, efforts have been made to discover new drugs from natural sources to minimize these risks. With advances in technology, the search for new drug candidates using computational modeling, such as molecular docking, has become increasingly common. The aim of this systematic literature review is to predict and evaluate the potential of natural compounds as anti-inflammatory agents through in silico analysis. A systematic literature review of 10 recent articles, selected from an initial 376 articles on the topic of natural plant compounds' anti-inflammatory potential in silico, published between 2020 and 2023, was conducted using the PubMed and Springer databases. The conclusion from the review of the structural analysis of secondary plant metabolites shows that all 45 compounds tested demonstrated the ability to interact with the COX-2 enzyme, which plays a key role in inflammation and pain. Among these compounds, catechin, a member of the flavonoid group, was identified as the best candidate based on in silico analysis.

Downloads

Download data is not yet available.

References

Singh N, Baby D, Rajguru JP, Patil PB, Thakkannavar SS, Pujari VB. Inflammation and cancer. Ann Afr Med. 2019;18(3):121–6.

Yang H, Zeng Q, Silverman HA, Gunasekaran M, George SJ, Devarajan A, et al. HMGB1 released from nociceptors mediates inflammation. Proc Natl Acad Sci U S A. 2021 Aug 17;118(33).

Ju Z, Li M, Xu J, Howell DC, Li Z, Chen FE. Recent development on COX-2 inhibitors as promising anti-inflammatory agents: The past 10 years. Acta Pharm Sin B. 2022 Jun;12(6):2790–807.

Fathul Qorib M, Khairul Rizki Purba A. Dinamika Ekspresi Cox1 dan Cox2 Sebagai Landasan Tatalaksana Nyeri dan Inflamasi. Jurnal Kedokteran Unram. 2022;2022(4):1233–9.

Do TTH, Nguyen TU, Nguyen TTH, Ho TY, Pham TLH, Le TS, et al. Essential Oils from the Leaves, Stem, and Roots of Blumea lanceolaria (Roxb.) Druce in Vietnam: Determination of Chemical Composition, and In Vitro, In Vivo, and In Silico Studies on Anti-Inflammatory Activity. Molecules. 2022 Nov 1;27(22).

Cuzzolin A, Sturlese M, Malvacio I, Ciancetta A, Moro S. DockBench: An Integrated Informatic Platform Bridging the Gap between the Robust Validation of Docking Protocols and Virtual Screening Simulations. Molecules. 2015 May 29;20(6):9977–93.

Allo VL, Rahmah S, Gunawan R. STUDI MOLECULAR DOCKING SENYAWA TURUNAN AURON SEBAGAI INHIBITOR GLIKOPROTEIN SPIKE SARS-COV-2. Akta Kimia Indonesia. 2023 Dec 28;8(2):126.

Gabriell Makisake R, Montolalu RI, Mewengkang HW, Sanger G, Harikedua SD, Makapedua DM, et al. Media Teknologi Hasil Perikanan Agustus 2022, 10(2): 122-126 Media Teknologi Hasil Perikanan Terakreditasi Nasional (Sinta 4)(2): 122-126 SK Ditjen Risbang Kemristekdikti STUDI IN SILICO SENYAWA AKTIF DAUN TAGALOLO (Ficus septica Burm F) SEBAGAI LIGAN UJI PADA ENZIM L-HISTIDIN DECARBOXILASE. 2022; Available from: https://doi.org/10.35800/mthp.10.2.2022.40390

Setiawan H, Irawan Mohammad Isa. Kajian Pendekatan Penempatan Ligan pada Protein Menggunakan Algoritma Genetika. JURNAL SAINS DAN SENI ITS. 2017;6(2):2337–3520.

Allagui I, Horchani M, Zammel N, Jalouli M, Elfeki A, Kallel C, et al. Phytochemical Characterization, Antioxidant and Anti-Inflammatory Effects of Cleome arabica L. Fruits Extract against Formalin Induced Chronic Inflammation in Female Wistar Rat: Biochemical, Histological, and In Silico Studies. Molecules. 2023 Jan 1;28(1).

Baek SH, Hwang S, Park T, Kwon YJ, Cho M, Park D. Evaluation of Selective COX-2 Inhibition and In Silico Study of Kuwanon Derivatives Isolated from Morus alba. Int J Mol Sci. 2021 Apr 1;22(7):3659.

Uddin Z, Paul A, Rakib A, Sami SA, Mahmud S, Rana S, et al. Chemical profiles and pharmacological properties with in silico studies on elatostema papillosum wedd. Molecules. 2021 Feb 2;26(4).

Mohammed HA, Abouzied AS, Mohammed SAA, Khan RA. In Vivo and In Silico Analgesic Activity of Ficus populifolia Extract Containing 2-O-β-D-(3′,4′,6′-Tri-acetyl)-glucopyranosyl-3-methyl Pentanoic Acid. Int J Mol Sci. 2023 Feb 1;24(3).

Tabassum S, Ahmad S, Khan KUR, Tabassum F, Khursheed A, Zaman QU, et al. Phytochemical Profiling, Antioxidant, Anti-Inflammatory, Thrombolytic, Hemolytic Activity In Vitro and In Silico Potential of Portulacaria afra. Molecules. 2022 Apr 1;27(8).

Silva RHM, Lima N de FM, Lopes AJO, Vasconcelos CC, de Mesquita JWC, de Mesquita LSS, et al. Antinociceptive activity of Borreria verticillata: In vivo and in silico studies. Front Pharmacol. 2017 May 22;8(MAY).

Ali DE, Gedaily RAE, Ezzat SM, Sawy MAE, Meselhy MR, Abdel-Sattar E. In silico and in vitro anti-inflammatory study of phenolic compounds isolated from Eucalyptus maculata resin. Sci Rep. 2023 Dec 1;13(1).

Sary HG, Khedr MA, Orabi KY. Novel Vulgarin Derivatives: Chemical Transformation, In Silico and In Vitro Studies. Molecules. 2023 Apr 1;28(8).

Naiemur Rahman M, Shahin Ahmed K, Ahmed S, Hossain H, Shahid Ud Daula AFM. Integrating in vivo and in silico approaches to investigate the potential of Zingiber roseum rhizome extract against pyrexia, inflammation and pain. Saudi J Biol Sci. 2023 Apr 1;30(4).

Meyer BR, White HM, McCormack JD, Niemeyer ED. Catechin Composition, Phenolic Content, and Antioxidant Properties of Commercially-Available Bagged, Gunpowder, and Matcha Green Teas. Plant Foods Hum Nutr. 2023 Dec;78(4):662–9.
Published
2024-12-31
How to Cite
Sanjaya, V., & Mulki, M. (2024). Studi In Silico Prediksi Potensi Senyawa Bahan Alam sebagai Anti-Inflamasi dalam Menghambat COX-2. Jurnal Sehat Mandiri, 19(2), 228-237. https://doi.org/https://doi.org/10.33761/jsm.v19i2.1712