GC-MS ANALYSIS, ADME TOXICITY and in silico STUDIES OF SOME ISOLATED COMPOUNDS FROM Melastoma malabathricum LEAVES AGAINST SPLA2 INHIBITION

Authors

  • P Sophiya Department of Studies in Biochemistry, Mangalore University, Jnana Kaveri Post Graduate Centre, Chikka Aluvara, Kodagu - 571 232, Karnataka (India)
  • B Kiran Kumar Department of Biotechnology, South East Asian College, Bangalore – 560 049, Karnataka (India)
  • N S Lohith Department of Studies in Biochemistry, Mangalore University, Jnana Kaveri Post Graduate Centre, Chikka Aluvara, Kodagu - 571 232, Karnataka (India)
  • Fasil Ali Department of Studies in Biochemistry, Mangalore University, Jnana Kaveri Post Graduate Centre, Chikka Aluvara, Kodagu - 571 232, Karnataka (India)
  • A D Sathisha Department of Medical Biochemistry & Molecular Biology, School of Medicine, College of Health Sciences, Ayder Comprehensive Specialized Hospital, Mekelle University, Mekelle (Ethiopia)
  • K K Dharmappa Department of Studies in Biochemistry, Mangalore University, Jnana Kaveri Post Graduate Centre, Chikka Aluvara, Kodagu - 571 232, Karnataka (India)

DOI:

https://doi.org/10.48165/

Keywords:

ADME toxicity, GC-MS, Melastoma malabathricum, molecular docking, phytocomponents, sPLA2 inhibition

Abstract

The bioactive components of Melastoma malabathricum leaves and the  chemical compositions of ethanol-based M. malabathricum leaf extract were  studied using gas chromatography-mass spectrometry (GC-MS) analysis.  Twelve compounds obtained were: phthalic acid hept-4-yl isobutyl ester,  oleic acid, n-hexadecanoic acid, melezitose, hexadecanoic acid methyl ester,  hexadecanoic acid ethyl ester, D-mannose, 9,10 secocholesta-5,7,10(19) triene-3,24,25, triol, (3β,5Z,7E), 2-myristynoyl pantetheine, propanamide,  3-[3,5di(tetra-butyl)-4hydroxyphenyl]-N-(2hydroxyethyl), cholesta 4,6- dien-3-ol and desulphosinigrin. These compounds were characterized and  analyzed for sPLA2 inhibition by molecular docking using the standard  inhibitors. Among these, 2-myristynoyl pantetheine showed better inter actions with sPLA2IIA enzyme with ‘e’ value of -8.62 (PubChem id:  535560), followed by desulphosinigrin (-7.19) and D-mannose (-4.96).  ADME toxicity studies proved that 2-myristynoyl pantetheine is better for  in vivo administration. The 2-myristynoyl pantetheine was found to exhibit  anti-inflammatory activity. 

Downloads

Download data is not yet available.

References

Abubakar, M.N. and Majinda, R.R. 2016. GC-MS analysis and preliminary antimicrobial activity of Albizia adianthifolia (Schumach) and Pterocarpus angolensis (DC). Medicines, 3: 3 (DOI: 10.3390/medicines3010003).

Aparna Vasudevan, Kalarickal V.D., Mandal, P.K., Karthe, P., Sadasivan, C. and Haridas, M. 2012 Anti‐inflammatory property of n‐hexadecanoic acid: Structural evidence and kinetic assessment. Chemical Biology and Drug Design, 80: 434-439.

Backman, Y., Cao, Y. and Girke, T. 2011. ChemMine tools: An online service for analyzing and clustering small molecules. Nucleic Acids Research, 39: W486-W491.

Chandrasekaran, A., Senthilkumar and Venkatesalu, V. 2011. Antibacterial and antifungal efficacy of fatty acid methyl esters from the leaves of Sesuvium portulacastrum L. European Review for Medical and Pharmacological Sciences, 15: 775-780.

De Gaetano, M.B., Donati, B. and Cerletti, C. 2003. Prevention of thrombosis and vascular inflammation: Benefits and limitations of selective or combined COX-1, COX-2 and 5-LOX inhibitors. Trends in Pharmacological Sciences, 24: 245-252.

Dharmappa, K.K., Kumar, R.V., Nataraju, A., Mohamed, R., Shivaprasad, H.V. and Vishwanath, B.S. 2009. Anti-inflammatory activity of oleanolic acid by inhibition of secretory phospholipase A2. Planta Medica, 75: 211-215.

Dulara, B.K., Godara, P. and Barwer, N. 2019. In vivo and in vitro phytochemical GC-MS analysis of volatile constituents of Andrographis paniculata (Burm. f.) Nees. The Pharma Innovation Journal, 8: 255-261.

Ferdous, S., Mirza, M.U. and Saeed, U. 2013. Docking studies reveal phytochemicals as the long searched anticancer drugs for breast cancer. International Journal of Computer Applications, 67: 1-5.

Guerrero, R.V., Vargas, R.A. and Petricevich, V.L. 2017. Chemical compounds and biological activity of an extract from bougainvillea x buttiana (var. rose) Holttum and Standl. International Journal of Pharmacy and Pharmaceutical Sciences, 9: 42-46.

GC-MS analysis of some bioactive compounds from Melastoma malabathricum leaves 35

Kadhim, M.J., Al-Rubaye, A.F. and Hameed, I.H. 2017. Determination of bioactive compounds of methanolic extract of Vitis vinifera using GC-MS. International Journal of Toxicological and Pharmacological Research, 9: 113-126.

Kamel, M.M., Ali, H.I., Anwar, M.M., Mohamed, N.A. and Soliman, A.M. 2010. Synthesis, antitumor activity and molecular docking study of novel sulfonamide‐Schiff's bases, thiazolidinones, benzothiazinones, and their C‐nucleoside derivatives. European Journal of Medicinal Chemistry, 45: 572-580.

Krug, H.F., Mattern, D., Bidault, J. and Ninio, E. 1994. Effects of organometals on cellular signaling. II. Inhibition of reincorporation of free arachidonic acid and influence on paf-acether synthesis by triethyl lead. Environmental Health Perspectives, 102: 331-334.

Landry, B.K., Moumita, S., Jayabalan, R. and François, Z.N. 2016. Honey, probiotics and prebiotics: Review. Research Journal of Pharmaceutical Biological and Chemical Sciences, 7: 2428-2438. (https://www.rjpbcs.com/2016_7.5.html).

Li, D., Tian, X., Wang, A., Guan, L., Zheng, J., Li, F., Li, S., Zhou, H., Wu J. and Tian, Y. 2016. Nucleic acid-selective light-up fluorescent biosensors for ratiometric two-photon imaging of the viscosity of live cells and tissues. Chemical Science, 7: 2257-2263.

Lin, K.W. 2005. Ethnobotanical study of medicinal plants used by the Jah Hut peoples in Malaysia. Indian Journal of Medical Sciences, 59: 156-161.

Liu, J., Yi, W., Hu,J., Wu, F., Zhao, L., Song, H. and Wang, Z. 2010. Design, synthesis and biological evaluation of 3-(4-halophenyl)-3-oxopropanal and their derivatives as novel antibacterial agents. Chemical and Pharmaceutical Bulletin, 58: 1127-1131.

Mintah, S.O., Asafo-Agyei, T., Archer, M.A., Junior, P.A.A., Boamah, D., Kumadoh, D., Appiah, A., Ocloo, A., Boakye, Y.D. and Agyare, C. 2019. Medicinal plants for treatment of prevalent diseases. Pharmacognosy-Medicinal Plants. IntechOpen. (DOI: 10.3772/intechopen.82049).

Nanda, B.L., Nataraju, A., Rajesh, R., Rangappa, K.S., Shekar, M.A. and Vishwanath, B.S. 2007. PLA2 mediated arachidonate free radicals: PLA2 inhibition and neutralization of free radicals by anti-oxidants - A new role as anti-inflammatory molecule. Current Topics in Medicinal Chemistry, 7: 765-777.

Nevalainen, T.J., Grönroos, J.M. and Kortesuo, P. 1993. Pancreatic and synovial type phospholipases A2 in serum samples from patients with severe acute pancreatitis. Gut, 34: 1133-1136. Nevalainen,T.J., Haapamäki, M.M. and Grönroos, J.M. 2000. Roles of secretory phospholipases A2 in inflammatory diseases and trauma. Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids, 1488: 83-90.

Osafo, N., Agyare, C., Obiri, D.D. and Antwi, A.O. 2017. Mechanism of action of nonsteroidal anti inflammatory drugs. Nonsteroidal Anti-Inflammatory Drugs, Intechopen: 1-15, (DOI:10.5772/68090).

Olgen, S., Altanlar, N., Karatayli, E. and Bozdayi, M. 2014. Antimicrobial and antiviral screening of novel indole carboxamide and propanamide derivatives. Zeitschrift für Naturforschung. 63: 3- 4.

Ponnamma, S.U. and Manjunath, K. 2012. GC-MS analysis of phytocomponents in the methanolic extract of Justicia wynaadensis (Nees) T. Anders. International Journal of Pharma and Bio Sciences, 3: 570-576.

Sadashiva, M.P., Nataraju, A., Mallesha, H., Rajesh, R., Vishwanath, B. and Rangappa, K. 2005. Synthesis and evaluation of trimethoxyphenyl isoxazolidines as inhibitors of secretory phospholipase A2 with anti-inflammatory activity. International Journal of Molecular Medicine, 16: 895-904.

Sanner, M.F. 1999. Python: A programming language for software integration and development. Journal of Molecular Graphics and Modelling, 17: 57-61.

Sheeja, K. and Kuttan, G. 2007. Activation of cytotoxic T lymphocyte responses and attenuation of tumor growth in vivo by Andrographis paniculata extract and andrographolide. Immunopharmacology and Immunotoxicology, 29: 81-93.

P. Sophiya et al.

Srivastava, R., Mukerjee, A. and Verma, A., 2015. GC-MS analysis of phytocomponents in pet ether fraction of Wrightia tinctoria seed. Pharmacognosy Journal, 7: 4. (DOI:10.5530/pj.2015.4.7). Sophiya, P., Lohith, N.S., Giresha, A.S., Narayanappa, M., Rajkumar S. Meti, Sathisha, A.D. and Dharmappa, K.K. 2019. Inhibitory effect of ethanol extract of Melastoma malabathricum leaves on inflammatory sPLA2 enzyme and its ability to reduce the cell viability of PC3 cell line. Interntional Journal of Pharmaceutical Sciences and Research, 10: 5041-5050. Stafforini, D.M. and Zimmerman. G.A. 2014. Unraveling the PAF-AH/lp-PLA2 controversy. Journal of Lipid Research, 55 : 1811-1814.

Tian, C., Chen, X., Lei, J. and Zhao, J.L. 2018. CASTp 3.0: Computed atlas of surface topography of proteins. Nucleic Acids Research, 46: W363-W367.

Zakaria, Z.A., Hisam, E.A.,Norhafizah, M., Rofiee, M., Othman, F., Hasiah, A. and Vasudevan, M. 2012. Methanol extract of Bauhinia purpurea leaf possesses anti-ulcer activity. Medical Principles and Practice, 21: 476-482.

Zheng, C.J., Yoo, J.S., Lee, T.G., Cho, H.Y., Kim, Y.H. and Kim, W.G. 2005. Fatty acid synthesis is a target for antibacterial activity of unsaturated fatty acids. FEBS Letters, 579: 5157-5162. Zhu, Y.Z., Liu, J.W., Wang, X., Jeong, I.H., Ahn, Y.J. and Zhang, C.J. 2018. Anti-BACE1 and antimicrobial activities of steroidal compounds isolated from marine Urechisuni cinctus. Marine Drugs, 16: 94.

Zmijewski, M.A., Li, W., Zjawiony, J.K., Sweatman, T.W., Chen, J., Miller, D.D. and Slominski, A.T. 2008. Synthesis and photoconversion of androsta-and pregna-5, 7-dienes to vitamin D3-like derivatives. Photochemical and Photobiological Sciences, 7: 1570-1576.

Published

2023-11-16

How to Cite

GC-MS ANALYSIS, ADME TOXICITY and in silico STUDIES OF SOME ISOLATED COMPOUNDS FROM Melastoma malabathricum LEAVES AGAINST SPLA2 INHIBITION . (2023). Applied Biological Research, 23(1), 26–36. https://doi.org/10.48165/