Research Journal of Pharmacy and Technology
SCOPUS
  • Year: 2022
  • Volume: 15
  • Issue: 11

Impact of antioxidant rich fractions isolated from moss Fissidens grandiflora on alcohol-induced oxidative stress

  • Author:
  • Madhavi Meka1, Nalini Panatula1, Siva Kumar Nemala1, Srilakshmi Nallapaty2, Sree Teja Koneru2, Alekhya Ketha1,*
  • Total Page Count: 6
  • Page Number: 5289 to 5294

1Pharmaceutical Sciences, AU College of Pharmaceutical Sciences, Andhra University, Visakhapatnam, 530003, India

2Department of Pharmaceutical Sciences, K. L. College of Pharmacy, Koneru Lakshmaiah Education Foundation, Green Fields, Vaddeswaram, Guntur, Andhra Pradesh, 522 502, India

*Corresponding Author E-mail: alekhya.illa92@gmail.com

Online published on 3 March, 2023.

Abstract

The present study is aimed to evaluate the antioxidant and hepatoprotective properties of selected ethanolic fractions of Fissidens grandiflora in ethanol-induced oxidative stress in rats. Initially, ethanolic extract of F. grandiflora was fractionated using column chromatography. The preliminary antioxidant screening of these fractions identified two main bioactive fractions (F3 and F4), which were found to have significant radical scavenging and metal ion chelation properties compared with ascorbic acid. Based on the antioxidant profile, F3 and F4 were evaluated for hepatoprotective activity in ethanol-intoxicated rats. The Wistar rats were grouped (n = 6) and treated with F3 and F4 (100 and 200 mg/kg), ethanol (5 g/kg, 20%w/v) and silymarin (100 mg/kg) orally for 28 days. The outcomes of the study found that chronic administration of ethanol significantly (P < 0.0001) altered the liver parameters and oxidative stress markers (MDA, SOD, and CAT). The co-administration of F4 prominently ameliorated the oxidative stress induced by ethanol compared to F3. Histopathological studies further supported the significant protective action of F4. The present study demonstrates that the F. grandiflora possess significant antioxidant properties by augmenting the magnitude of the antioxidant enzymes SOD and CAT and further reducing MDA levels.

Keywords

Antioxidant, Ethanol-induced, Hepatoprotective, Oxidative stress, Fissidens grandiflora