Abstract
Objective: The present study aimed to investigate the cytotoxic effect of various extracts derived from Abrus
precatorius Linn. leaves on rat L6 and human SK-N-MC neuroblastoma cell lines and determine the secondary metabolites
responsible for the cytotoxicity of Abrus precatorius.
Methods: Successive solvent extraction of A. precatorius leaves was carried out using the Soxhlet apparatus with solvents
such as petroleum ether, chloroform, ethyl acetate, and ethanol. HPTLC fingerprinting and LC-MS studies were
performed to assess the presence of secondary metabolites, such as flavonoids and phenols, in the ethyl acetate extract.
Furthermore, the cytotoxic effect of extracts was tested on rat skeletal muscle cell line L6 and human neuroblastoma
cell line SK-N-MC using MTT assay.
Results: The total phenolic content of ethyl acetate and ethanol extracts of A. precatorius were 72.67 and 60.73 mg,
respectively, of GAE/g dry weight of the extract. The total flavonoid content of ethyl acetate and ethanol extract of A. precatorius were 107.33 and 40.66 mg of Quercetin equivalents/g dry weight of the extract. LCMS analysis demonstrated
that the flavonoids in specific Naringenin, Diosmetin, Glycitin, and Genistein might play a prominent role in the
cytotoxicity of A. precatorius. The cytotoxicity study revealed that the extracts of A. precatorius were non-toxic to rat L6
myotubes, and the IC50 values of the various extracts, such as APPE, APCH, APEA, and APET, were >100 μg/ml. The
extracts exhibited cytotoxic activity against human neuroblastoma SK-N-MC cells, and the IC50 values of APPE, APCH,
APEA, APET, and the standard drug “Cisplatin” were >100, >100, 64.88, >100, and 3.72 μg/ml, respectively.
Conclusion: It was concluded from the study that the extracts of Abrus precatorius were cytotoxic to neuroblastoma
cell lines but non-toxic to normal cell lines. HPTLC and LC-MS studies confirmed that flavonoids in the ethyl acetate
extract could be responsible for the biological activity.
Keywords:
Abrus precatorius, cytotoxicity, flavonoids, HPTLC-densitometry, LC-MS, L6 myotubes, SK-N-MC.
Graphical Abstract
[1]
Manoharan, S.; Balaji, R.; Aruna, A.; Niraimathi, V.; Manikandan, G.; Babu, M.B.V.; Vijayan, P. Preliminary phytochemical and cytotoxic property of leaves of Abrus precatorius Linn. J. Herb. Med. Toxicol., 2010, 4, 21-24.
[2]
Meena, P.P.; Chendraya, P.P.; Praveen, K.M.; Soundarrajan, S.; Srinivasan, M.; Sampathkumar, R. Pharmacological activities of Abrus precatorius (L.) seeds. Int. J. Pharm. Med. Res, 2015, 3(2), 195-200.
[3]
Acharya, D.; Sancheti, G.; Shrivastava, A. Medicinal plants for curing common ailments in India. Posit Health, 2004, 102, 28-30.
[4]
Wagstaff, D.J. International poisonous plants check list: An evidence-based reference. 1sted; CRC Press: Boca Raton, 2008.
[5]
Raamachandran, J. Herbs of Siddha medicines: The first 3D book on Herbs, 1sted; Murugan Patthipagam: India, 2008.
[7]
Menash, A.Y.; Bonsu, A.S.; Fleischer, T.C. Investigation of the bronchodilator activity of Abrus precatorius. Int. J. Pharm. Sci. Rev. Res., 2011, 6(2), 9-13.
[8]
Sathish, M.; Balaji, R.; Aruna, A.; Niraimahi, V.; Manikandan, G.; Bose, M. Preliminary phytochemical and cytotoxic property on leaves of Abrus precatorius Linn. J Her Medi Toxicol., 2010, 4(1), 21-24.
[21]
Verma, D.; Tiwari, S.S.; Srivastava, S.; Rawat, A.K.S. Pharmacognostical evaluation and phytochemical standardization of Abrus precatorius L. Seeds. Nat. Prod. Sci., 2011, 17(1), 51-57.
[25]
Duke, J.A. Handbook of phytochemical constituents of GRAS herbs and other economic plants; CRC Press: Boca Raton, 1992.
[26]
Gupta, R.C. Placental toxicity. In: Veterinary toxicology-Basic and clinical principles; Gupta, R.C., Ed.; Elsevier: USA, 2012; pp. 319-336.
[32]
Saraf, A. Chromatographic fingerprint profile of alkaloids of Abrus precatorius Linn. by HPTLC. European J. Acad. Essays, 2015, 2(2), 65-69.
[33]
Gul, M.Z.; Chandrasekaran, S.; Manulatha, K.; Bhat, M.Y.; Maurya, R.; Qureshi, I.A.; Ghazi, I.A. Antiproliferative and apoptosis inducing effects of Abrus precatorius against human monocytic leukaemia (THP-1) cell line. Indian J Pharm Sci., 2018, 80(2), 307-317.
[38]
Lébri, M.; Tilaoui, M.; Bahi, C.; Achibat, H.; Akhramez, S.; Fofié, Y.B.N.; Gnahoué, G.; Lagou, S.M.; Zirihi, G.N.; Coulibaly, A.; Zyad, A.; Hafid, A.; Khouili, M. Phytochemical analysis and in vitro anticancer effect of aqueous extract of Abrus precatorius Linn. Pharma Chem., 2015, 7(8), 112-117.
[44]
Chae, K-h.; Song, Y-k.; Lim, H-H. The protective effect of paeoniae radix extract against 1-methyl-4-phenylpyridium-induced apoptosis on SK-N-MC neuroblastoma cells. Korean J. Orient. Med., 2005, 26(4), 74-86.