Analisis Aktivitas Imunomodulator dan Antiinflamasi Senyawa Bioaktif Fraksi Daun Sungkai (Peronema canescens Jack) Secara In Silico

Analysis of Immunomodulatory and Anti-inflammatory Activities of Bioactive Compounds of Sungkai Leaf Fractions (Peronema canescens Jack) In Silico

Authors

  • Viola Giary Rizkillah Maharani Program Studi Kimia, Fakultas Sains dan Teknologi, Universitas Jambi, Jambi, Indonesia
  • Delviani Delviani Program Studi Kimia, Fakultas Sains dan Teknologi, Universitas Jambi, Jambi, Indonesia
  • Madyawati Latief Program Studi Kimia, Fakultas Sains dan Teknologi, Universitas Jambi, Jambi, Indonesia
  • Indra Lasmana Tarigan Program Studi Kimia, Fakultas Sains dan Teknologi, Universitas Jambi, Jambi, Indonesia

DOI:

https://doi.org/10.25026/jsk.v7i4.2481

Abstract

The immune system recognizes and responds to various pathogens to protect the body. An imbalance in the immune system can lead to uncontrolled inflammation that causes inflammation. The discovery of new agents as immunomodulators and anti-inflammatories is very important in the search for effective drugs for long-term use. Sungkai is a plant with immunomodulatory and anti-inflammatory effects. The purpose of this study is to predict the potential of compounds in sungkai that act as immunomodulators and anti-inflammatory through an in silico approach with molecular docking method. Based on the results of molecular docking of test ligands with COX 1 anti-inflammatory receptor in the form of prostaglandin H2 synthase-1, the best ligands were obtained in the form of 3?-acetoxy-6-nitrocholest-5-ene, Squalen, Quercetin and Apigenin with binding free energy (?G) values of -12.48; -8.26; -8.09; and -7.95 kcal/mol, respectively. Meanwhile, between the test ligands and the IL-6 immunomodulatory receptor in the form of Human Interleukin-6, the best ligands were obtained in the form of 3?-acetoxy-6-nitrocholest-5-ene, Apigenin, Quartzetin and Squalen with binding free energy values (?G) of -5.80; -5.05; -4.70; and -2.81 kcal/mol.

Keywords:          Immunomodulator, Anti-inflammatory, In Silico, Sungkai

 

Abstrak

Sistem kekebalan tubuh merupakan bentuk pengenalan dan respons berbagai patogen dalam melindungi tubuh. Ketidakseimbangan sistem kekebalan dapat menyebabkan inflamasi tidak terkontrol yang menimbulkan peradangan. Penemuan agen baru sebagai imunomodulator dan antiinflamasi sangat penting dalam pencarian obat  efektif untuk penggunaan jangka panjang. Sungkai merupakan tumbuhan dengan efek imunomodulator dan antiinflamasi. Tujuan penelitian ini adalah untuk memprediksi potensi senyawa dalam sungkai yang berperan sebagai imunomodulator dan antiinflamasi melalui pendekatan secara in silico dengan metode molecular docking. Berdasarkan hasil molecular docking ligan uji dengan reseptor antiinflamasi COX 1 berupa prostaglandin H2 synthase-1 diperoleh ligan terbaik berupa 3?-acetoxy-6-nitrocholest-5-ene, Squalen, Kuarsetin dan Apigenin dengan nilai energi bebas pengikatan (?G) masing- masing -12.48; -8.26; -8.09; dan -7,95 kkal/mol. Sedangkan antara ligan uji dengan reseptor imunomodulator IL-6 berupa Human Interleukin-6 diperoleh ligan terbaik berupa 3?-acetoxy-6-nitrocholest-5-ene, Apigenin, Kuarsetin dan Squalen nilai energi bebas pengikatan (?G) yaitu  -5.80; -5.05; -4.70; dan -2.81 kkal/mol.

Kata Kunci:         Imunomodulator, Antiinflamasi, In Silico, Sungkai

References

[1] P. Sharma, P. Kumar, R. Sharma, G. Gupta, and A. Chaudhary, ‘Immunomodulators: Role of medicinal plants in immune system’, National Journal of Physiology, Pharmacy and Pharmacology, vol. 7, no. 6. Mr Bhawani Singh, pp. 552–556, 2017. doi: 10.5455/njppp.2017.7.0203808032017.

[2] B. Ahmad, M. Shah, and S. Choi, ‘Oceans as a source of immunotherapy’, Marine Drugs, vol. 17, no. 5. MDPI AG, 2019. doi: 10.3390/md17050282.

[3] D. Tinesya, N. Andhita, R. Vidmar, and S. PGRI Tulungagung, ‘Eksplorasi Potensi Ekstrak Biji Alpukat (Persea Americana) Sebagai Agen Antiinflamasi’, 2019.

[4] D. I. Dinata, H. Suryatno, I. Musfiroh, and S. E. Suherman, ‘Simulasi Docking Molekuler Senyawa Xanthorrhizol sebagai Antiinflamasi terhadap Enzim COX-1 dan COX-2’, 2014. [Online]. Available: www.pdb.com.

[5] T. Tanaka, M. Narazaki, and T. Kishimoto, ‘IL-6 in Inflammation, Immunity, and Disease’, Cold Spring Harb Perspect Biol, vol. 6, no. 10, pp. a016295–a016295, Oct. 2014, doi: 10.1101/cshperspect.a016295.

[6] W. Wahyuni, M. I. Yusuf, F. Malik, A. F. Lubis, A. Indalifiany, and I. Sahidin, ‘Efek Imunomodulator Ekstrak Etanol Spons Melophlus sarasinorum Terhadap Aktivitas Fagositosis Sel Makrofag Pada Mencit Jantan Balb/C’, Jurnal Farmasi Galenika (Galenika Journal of Pharmacy) (e-Journal), vol. 5, no. 2, pp. 147–157, Oct. 2019, doi: 10.22487/j24428744.2019.v5.i2.13611.

[7] N. Karim et al., ‘Anti-nociceptive and Anti-inflammatory Activities of Asparacosin A Involve Selective Cyclooxygenase 2 and Inflammatory Cytokines Inhibition: An in-vitro, in-vivo, and in-silico Approach’, Front Immunol, vol. 10, Mar. 2019, doi: 10.3389/fimmu.2019.00581.

[8] K. Idacahyati, T. Nofianti, G. A. Aswa, and M. Nurfatwa, ‘Hubungan Tingkat Kejadian Efek Samping Antiinflamasi Non Steroid dengan Usia dan Jenis Kelamin’, Jurnal Farmasi Dan Ilmu Kefarmasian Indonesia, vol. 6, no. 2, p. 56, 2019.

[9] A. Fristiohady et al., ‘Immunomodulatory Activity of Xestospongia sp. Ethanolic Extract Towards Interferon-gamma (IFN- ?) and Tumor Necrosis Factor-alpha (TNF-?) Levels in Wistar Male Rats’, Jurnal Farmasi Galenika (Galenika Journal of Pharmacy) (e-Journal), vol. 6, no. 2, Sep. 2020, doi: 10.22487/j24428744.2020.v6.i2.15231.

[10] M. Latief et al., ‘Jurnal Farmasi Sains dan Praktis Aktivitas Antiinflamasi Ekstrak Etanol Daun Sungkai (Peronema Canescens Jack) Pada Mencit Terinduksi Karagenan Anti-Inflammatory Activity Of Sungkai Leaves (Peronema Canescens Jack) Ethanol Extract In Carrageenan Induced Mice’, 2021. [Online]. Available: http://journal.ummgl.ac.id/index.php/pharmacy

[11] T. Behl et al., ‘Exploring the multifocal role of phytochemicals as immunomodulators’, Biomedicine and Pharmacotherapy, vol. 133. Elsevier Masson s.r.l., Jan. 01, 2021. doi: 10.1016/j.biopha.2020.110959.

[12] I. L. Tarigan, Sutrisno, Rumaida, I. P. S. Aini, and M. Latief, ‘Isolation of a Flavone Apigenin and a Steroids Squalene from Peronema canescens Jack Leaves with Anti-Inflammatory Activities’, Pharmacognosy Journal, vol. 14, no. 6, pp. 744–752, Nov. 2022, doi: 10.5530/pj.2022.14.162.

[13] D. Dillasamola, Y. Aldi, H. Kurniawan, and I. M. Jalius, ‘ Immunomodulator Effect Test of Sungkai Leaves ( Peronema canescsens Jack.) Ethanol Extract Using Carbon Clearance Method’, in Proceedings of the 2nd International Conference on Contemporary Science and Clinical Pharmacy 2021 (ICCSCP 2021), Atlantis Press, Nov. 2022. doi: 10.2991/ahsr.k.211105.001.

[14] N. K. D. P. Dewi, K. D. Suryadewi, D. M. Fitriari, K. L. Andini, and N. P. L. Laksmiani, ‘Molecular docking of gallic acid as anti-photoaging in silico’, Pharmacy Reports, vol. 1, no. 2, p. 18, Dec. 2021, doi: 10.51511/pr.18.

[15] F. Az-Zahra et al., ‘Indonesian Journal of Biological Pharmacy In Silico Study of Betel Leaves Compound (Piper betle L.) as Acetylcholinesterase (AChE) Enzyme Inhibitor in Alzheimer Disease’.

[16] P. Rapat et al., ‘Prediksi Mekanisme Kerja Obat Terhadap Reseptornya Secara in Silico(Studi pada Antibiotika Sefotaksim)’. [Online]. Available: http://sg.pdb.org

[17] V. Vitadella, C. P. Bulan, J. A. N. Sinurat, M. Latief, Y. Yusnaidar, and I. L. Tarigan, ‘Studi In Silico Senyawa Bioaktif Daun Miana (Coleus scutellariodes (L). Benth) sebagai Inhibitor Enzim Asetikolineterase (Ache) pada Alzheimer’, Jurnal Sains dan Kesehatan, vol. 6, no. 2, pp. 282–291, Apr. 2024, doi: 10.25026/jsk.v6i2.2198.

[18] S. Manandhar et al., ‘Molecular dynamics and structure-based virtual screening and identification of natural compounds as Wnt signaling modulators: possible therapeutics for Alzheimer’s disease’, Mol Divers, vol. 26, no. 5, pp. 2793–2811, Oct. 2022, doi: 10.1007/s11030-022-10395-8.

[19] M. R. Fadhil Pratama, H. Poerwono, and S. Siswodihardjo, ‘Introducing a two?dimensional graph of docking score difference vs. similarity of ligand?receptor interactions’, Indones J Biotechnol, vol. 26, no. 1, pp. 54–60, Mar. 2021, doi: 10.22146/IJBIOTECH.62194.

[20] R. G. Putri, M. Safithri, H. Husnawati, and R. Kurniasih, ‘Penambatan Molekuler Senyawa Aktif Sirih Merah (Piper crocatum) pada Butirilkolinesterase sebagai Kandidat Antialzheimer’, ALCHEMY Jurnal Penelitian Kimia, vol. 19, no. 1, p. 68, Mar. 2023, doi: 10.20961/alchemy.19.1.59676.68-85.

[21] N. Aprillah Akbar, S. Amin, and W. T. Wulandari, ‘Prosiding Seminar Nasional Diseminasi Hasil Penelitian Program Studi S1 Farmasi Studi In Silico Senyawa yang Terkandung dalam Tanaman Daun Sirih Merah (Piper crocatum RUIZ & PAV) sebagai Kandidat Anti SARS CoV-2’. [Online]. Available: https://www.rcsb.org/

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Published

2025-08-28

How to Cite

1.
Maharani VGR, Delviani D, Latief M, Tarigan IL. Analisis Aktivitas Imunomodulator dan Antiinflamasi Senyawa Bioaktif Fraksi Daun Sungkai (Peronema canescens Jack) Secara In Silico: Analysis of Immunomodulatory and Anti-inflammatory Activities of Bioactive Compounds of Sungkai Leaf Fractions (Peronema canescens Jack) In Silico. J. Sains Kes. [Internet]. 2025 Aug. 28 [cited 2025 Oct. 26];7(4):271-9. Available from: https://jsk.jurnalfamul.com/index.php/jsk/article/view/2481