Indian Journal of Animal Research
SCOPUSWeb of Science
  • Year: 2016
  • Volume: 50
  • Issue: 3

Promising inhibition of krait snake's venom acetylcholinesterase by Salixnigra and its role as anticancer, antioxidant agent

  • Author:
  • Wasim Ahmed1, Mushtaq Ahmad1,, Rahmat A Khan1, Nadia Mustaq
  • Total Page Count: 7
  • Page Number: 317 to 323

1Department of Biotechnology, Faculty of Biological Sciences, University of Science & Technology, Bannu, 28100, KPK-Pakistan

Department of Botany, Faculty of Biological Sciences, University of Science & Technology, Bannu, 28100, KPK-Pakistan

*Corresponding author's e-mail: mushtaq213@yahoo.com

Online published on 6 June, 2016.

Abstract

Snakebites are considered a neglected tropical disease that affects thousands of people worldwide. The available anti-venoms are associated with numerous side effects. As an alternative, researchers have extensively studied the plants in order to obtain some unusual treatment. The current study was conceded to evaluate the effects of salix nigra (Black willow) against krait snake venom acetylcholinesterase and its role as anti-cancer, anti-oxidant agent. Standard protocols of Ellman, Meyer, Gyamfi and Ruch were used for enzyme inhibition, anti-cancer and free radicals scavenging assays respectively. The methanolic extract of Salix nigra proved to possess neutralization properties against krait snake (Bungarus Sindanus) venom acetylcholinesterase. Statistical data of the results showed that Salix nigra extract inhibited the krait venom acetylcholinesterase through concentration dependent manner. Kinetic analysis using Lineweaver Burk plot revealed that Salix nigra caused competitive type of inhibition i.e. km value increased while Vmax remain constant with an increase of extract's concentration. The calculated IC50 value of Salix nigra was found to be 177μg/ml. In DPPH free radical scavenging assay, extract showed good scavenging potential with IC50 value of 317μg/ml. Similarly, using H2O2 free radicals, the % scavenging of the extract at 100, 250, 500 and 1000μg/ml was 41, 54, 69 and 74% in comparison with ascorbic acid. Moreover, the extract exhibited good cytotoxic activity against brine shrimps in a dose dependent manner. The present work suggests, for the first time, that Salix nigra extract can be used not only as a potent inhibitor of snake venom acetylcholinesterase but also for the eradication of free radicals along with significant anticancer activity.

Keywords

Acetylcholinesterase, Anticancer, Antioxidant, Bungarus sindarus, Salix nigra