Journal of Multidisciplinary Applied Natural Science
Vol. 5 No. 1 (2025): Journal of Multidisciplinary Applied Natural Science

Integrating The Network Pharmacology and Molecular Docking Confirmed with In Vitro Toxicity to Reveal Potential Mechanism of Non–Polar Fraction of Cyperus rotundus Linn as Anti-Cancer Candidate

Susianti Susianti (Department of Histology, Universitas Lampung, Bandar Lampung-35145 (Indonesia))
Syaiful Bahri (Department of Chemistry, Universitas Lampung, Bandar Lampung-31415 (Indonesia))
Sutopo Hadi (Department of Chemistry, Universitas Lampung, Bandar Lampung-31415 (Indonesia))
Arif Setiawansyah (Center of Natural Product Extract Laboratory, Akademi Farmasi Cendikia Farma Husada, Bandar Lampung-35134 (Indonesia))
Lanang Rachmadi (Department of Chemistry, Universitas Lampung, Bandar Lampung-31415 (Indonesia))
Ibnu Fadilah (Department of Chemistry, Universitas Lampung, Bandar Lampung-31415 (Indonesia))
Maya Ganda Ratna (Department of Pharmacology, Universitas Lampung, Bandar Lampung-35145 (Indonesia))



Article Info

Publish Date
09 Oct 2024

Abstract

Cyperus rotundus Linn is a plant that is historically used in traditional medicine with anti-cancer potential. Despite the evidence of C. rotundus anti-cancer effect on various human carcinoma cell lines, its pharmacological mechanism remains unclear, particularly its non-polar fraction. This study was employed to provide mechanistic insight regarding the anti-cancer properties of C. rotundus non-polar fraction by integrating in silico and in vitro approach. The network pharmacology study was used to observe the molecular targets of n-hexane fraction of C. rotundus, confirmed by molecular docking simulation using Autodock 4.2. The in vitro toxicity using BSLT method was used to strengthen the in silico result. The network pharmacology investigation revealed several core targets including PI3K, MAPK1, mTOR, RAF1, and NF-κB in the potential anti-cancer mechanism of C. rotundus. The molecular docking study illustrated that compound 3 (Isopetasol) and compound 9 (alpha-cyperone) as the most promising compound in n-hexane fraction of C. rotundus, with free binding energies consistently less than -7 kcal/mol in all targets. The in vitro BSLT signified the in silico results, highlighting the highest toxicity of fraction 3 exhibited among others. Integrating the network pharmacology and molecular docking simulation along with in vitro toxicity have provided evidence of the anti-cancer potential of n-hexane fraction of C. rotundus. Specific compounds and the molecular targets responsible for its anti-cancer properties have been identified, warranting further investigations.

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Journal Info

Abbrev

jmans

Publisher

Subject

Agriculture, Biological Sciences & Forestry Biochemistry, Genetics & Molecular Biology Chemical Engineering, Chemistry & Bioengineering Chemistry Energy Environmental Science Immunology & microbiology Materials Science & Nanotechnology Mathematics Physics

Description

Journal of Multidisciplinary Applied Natural Science (abbreviated as J. Multidiscip. Appl. Nat. Sci.) is a double-blind peer-reviewed journal for multidisciplinary research activity on natural sciences and their application on daily life. This journal aims to make significant contributions to ...