International Journal of Histology and Cytology

ISSN 2756-3707

International Journal of Histology and Cytology ISSN 2447-9535 Vol. 5 (5), pp. 415-422, May, 2018. © International Scholars Journals

Full Length Research Paper

Cellular and molecular mechanism associated with anticancer activity of Commelina benghalensis

Vusi G. Mbazima1, Matlou P. Mokgotho1, Faghri February2, D Jasper G. Rees2 and Leseilane J. Mampuru1*

1Department of Biochemistry, Microbiology and Biotechnology, University of Limpopo (Turfloop campus), Private Bag X1106, Sovenga, 0727, Limpopo Province, Republic of South Africa. 2Department of Biotechnology, University of the Western Cape, Private Bag X17, Bellville, 7535, Cape Town, Republic of South Africa.

*Corresponding author. E-mail: [email protected]. Tel. +27-15-268-3018. Fax. +27-15-268-3234.

Accepted 09 February, 2017

Abstract

Stem extracts of Commelina benghalensis (Linn.), although not extensively documented, are frequently used in traditional medicine for the treatment of ailments such as skin malformations and outgrowths. Accordingly, the study was aimed to investigate possible molecular mechanisms that are associated with the potential anti-carcinogenic property of this agrofield weed. Jurkat T cells were exposed to different concentrations (0-600 µg/ml) of the crude methanolic extract of C. benghalensis to evaluate their growth inhibitory and apoptosis inducing effects. The extract elicited a dose- and time-dependent inhibition of cell proliferation, followed by a concomitant decrease in cell viability. The observed cytotoxicity was linked to the induction of apoptosis as determined by morphological and biochemical features known to be associated with the advent of apoptosis. Real time quantitative RT-PCR and Western blot analyses of Bax, Bcl-2 and p53 exhibited aberrant expression profiles of these genes under various treatment conditions. Taken together, the data suggest that the crude methanolic extract of C. benghalensis contains bioactive compounds that may be beneficial in the treatment of malignant growths, and that this apparent antineoplastic activity is a consequence of dysregulated expression of apoptosis-responsive genes. These observations could provide a credible scientific justification upon which the ethnopharmacological utilisation of C. benghalensis is founded.

Key words: Apoptosis, Bcl-2, Bax, p53, Commelina benghalensis; Jurkat T cells.