A Force Field Simulation Approach to Analyze the Molecular Structure Stability of Cyanidin-3-Glucoside Using Avogadro: A Preliminary Study

Penulis

  • Permono Adi Putro Department of Physics, Faculty of Science, Universitas Mandiri, Subang, Indonesia
  • Desi Wulandari Department of Physics, Faculty of Science, Universitas Mandiri, Subang, Indonesia
  • Devia Putri Wulandari Department of Physics, Faculty of Science, Universitas Mandiri, Subang, Indonesia
  • Fitriah Nurfaidah Department of Physics, Faculty of Science, Universitas Mandiri, Subang, Indonesia
  • M. Farid Ahdan Department of Physics, Faculty of Science, Universitas Mandiri, Subang, Indonesia
  • Seviana Chaerunnisa Department of Physics, Faculty of Science, Universitas Mandiri, Subang, Indonesia
  • Vina Umaya Octaviani Department of Physics, Faculty of Science, Universitas Mandiri, Subang, Indonesia

Kata Kunci:

Cyanidin-3-Glucoside, Computer Simulation, Force Field Theory, Avogadro, Molecular Stability

Abstrak

Cyanidin-3-glucoside (C3G) is a flavonoid compound that is an antioxidant and natural colorant widely found in berries and vegetables such as red cabbage. This study aims to explore the structural stability of C3G using computer simulations based on force field theory through Avogadro software. In this study, the Universal Force Field (UFF), Merck Molecular Force Field (MMFF94), and General Amber Force Field (GAFF) methods were used to analyze the stability of C3G. The energy optimization results showed that the Ghemical method produced a more stable structure than other methods, although there was a discrepancy with GAFF. The GAFF method was more stable than UFF, but required more energy to achieve stability. Overall, the difference in force field methods affected the molecule's stability through optimization energy and structure parameterization variations, which affected the distance and angle of atomic bonds. These findings provide an efficient picture of the stable conformation of C3G, which can be applied in the food, health, and cosmetic industries.

Referensi

Sandoval-Ramírez, B. A., Catalán, Ú., Fernández-Castillejo, S., Pedret, A., Llauradó, E., & Solà, R. (2020). Cyanidin-3-glucoside as a possible biomarker of anthocyanin-rich berry intake in body fluids of healthy humans: a systematic review of clinical trials. Nutrition Reviews, 78(7), 597–610. https://doi.org/10.1093/nutrit/nuz083

Tan, J., Li, Y., Hou, D. X., & Wu, S. (2019). The effects and mechanisms of cyanidin-3-glucoside and its phenolic metabolites in maintaining intestinal integrity. Antioxidants, 8(10), 1–16. https://doi.org/10.3390/antiox8100479

Utami, Y. P., Farmasi, B. B., Tinggi, S., & Farmasi, I. (2021). Pharmacy Medical. 4(1), 20–23.

Lin, Y., Li, C., Shao, P., Jiang, L., Chen, B., & Farag, M. A. (2022). Enzymatic acylation of cyanidin-3-O-glucoside in raspberry anthocyanins for intelligent packaging: Improvement of stability, lipophilicity and functional properties. Current Research in Food Science, 5(November), 2219–2227. https://doi.org/10.1016/j.crfs.2022.11.008

Makkar, P., & Ghosh, N. N. (2021). A review on the use of DFT for the prediction of the properties of nanomaterials. RSC Advances, 11(45), 27897–27924. https://doi.org/10.1039/d1ra04876g

O’Carroll, D., & English, N. J. (2023). Multi-Theory Comparisons of Molecular Simulation Approaches to TiO2/H2O Interfacial Systems. Crystals, 13(7). https://doi.org/10.3390/cryst13071122

Mannold, E. R., Kubinyi, H., & Folkers, G. (2006). Related Titles Methods and Principles in Medicinal Chemistry Previous Volumes of this Series : BioNMR in Drug Research Chemogenomics in Drug Discovery Chemoinformatics in Drug Discovery Drug Bioavailability G Protein-Coupled Receptors as Drug Discovery Pr.

Wang, J., Wolf, R. M., Caldwell, J. W., Kollman, P. A., & Case, D. A. (2004). Development and testing of a general amber force field. Journal of Computational Chemistry, 25(9), 1157–1174.

Henkelman, G., & Jónsson, H. (2000). Improved tangent estimate in the nudged elastic band method for finding minimum energy paths and saddle points. The Journal of Chemical Physics, 113(22), 9978–9985.

Halgren, T. A. (1996). Merck molecular force field. I. Basis, form, scope, parameterization, and performance of MMFF94. Journal of Computational Chemistry, 17(5–6), 490–519.

Pamungkas, E. B., Prasetya, A. T., & Alauhdin, M. (2013). Pengaruh Enkapsulasi Fe dan Cu pada BNNT terhadap Parameter NMR Menggunakan DFT. Indonesian Journal of Chemical Science, 2(1), 24–28.

Diterbitkan

2024-12-06

Cara Mengutip

Putro, P. A., Desi Wulandari, Devia Putri Wulandari, Fitriah Nurfaidah, M. Farid Ahdan, Seviana Chaerunnisa, & Vina Umaya Octaviani. (2024). A Force Field Simulation Approach to Analyze the Molecular Structure Stability of Cyanidin-3-Glucoside Using Avogadro: A Preliminary Study. TIME in Physics, 2(2), 66–76. Diambil dari http://ejournal.universitasmandiri.ac.id/index.php/timeinphys/article/view/142

Terbitan

Bagian

Articles