Protective effect of anacardic acids from cashew (Anacardium occidentale) on ethanol-induced gastric damage in mice

Chem Biol Interact. 2010 Jan 5;183(1):264-9. doi: 10.1016/j.cbi.2009.10.008.

Abstract

Cashew nut-shell liquid and the contained anacardic acids (AAs) have been shown to possess antioxidant, lipoxygenase inhibitory, anti-Helicobacter pylori and antitumor properties. Despite these known effects, hitherto there were no published reports on their likely gastroprotective effects. The present study was designed to verify whether AAs afford gastroprotection against the ethanol-induced gastric damage and to examine the underlying mechanism(s). Gastric damage was induced by intragastric administration of 0.2mL of ethanol (96%). Mice in groups were pretreated orally with AAs (10, 30 and 100mg/kg), misoprostol (50 microg/kg), or vehicle (2% Tween 80 in saline, 10mL/kg), 45min before ethanol administration. They were sacrificed 30min later, the stomachs excised, and the mucosal lesion area (mm(2)) measured by planimetry. Gastroprotection was assessed in relation to inhibition of gastric lesion area. To study the gastroprotective mechanism(s), its relations to capsaicin-sensitive fibers, endogenous prostaglandins, nitric oxide and ATP-sensitive potassium channels were analysed. Treatments effects on ethanol-associated oxidative stress markers GSH, MDA, catalase, SOD, and total nitrate/nitrite levels as an index of NO were measured in gastric tissue. Besides, the effects of AAs on gastric secretory volume and total acidity were analysed in 4-h pylorus-ligated rat. AAs afforded a dose-related gastroprotection against the ethanol damage and further prevented the ethanol-induced changes in the levels of GSH, MDA, catalase, SOD and nitrate/nitrite. However, they failed to modify the gastric secretion or the total acidity. It was observed that the gastroprotection by AAs was greatly reduced in animals pretreated with capsazepine, indomethacin, l-NAME or glibenclamide. These results suggest that AAs afford gastroprotection principally through an antioxidant mechanism. Other complementary mechanisms include the activation of capsaicin-sensitive gastric afferents, stimulation of endogenous prostaglandins and nitric oxide, and opening of K(+)(ATP) channels. These combined effects are likely to be accompanied by an increase in gastric microcirculation.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Anacardic Acids / therapeutic use*
  • Anacardium / chemistry*
  • Animals
  • Anti-Ulcer Agents / therapeutic use*
  • Antioxidants / therapeutic use*
  • Capsaicin / analogs & derivatives
  • Capsaicin / pharmacology
  • Catalase / metabolism
  • Ethanol
  • Gastric Mucosa / drug effects*
  • Gastric Mucosa / metabolism
  • KATP Channels / metabolism
  • Male
  • Malondialdehyde / metabolism
  • Mice
  • Nitric Oxide / metabolism
  • Prostaglandins / metabolism
  • Rats
  • Rats, Wistar
  • Stomach Ulcer / chemically induced
  • Stomach Ulcer / metabolism
  • Stomach Ulcer / prevention & control*
  • Superoxide Dismutase / metabolism

Substances

  • Anacardic Acids
  • Anti-Ulcer Agents
  • Antioxidants
  • KATP Channels
  • Prostaglandins
  • Nitric Oxide
  • Ethanol
  • Malondialdehyde
  • Catalase
  • Superoxide Dismutase
  • capsazepine
  • Capsaicin