AI Article Synopsis

  • Azorella compacta, a rare resinous shrub from the Andes, produces unique biologically active compounds known as diterpenoids.
  • The study aimed to isolate and evaluate the gastroprotective effects of these secondary metabolites found in a Peruvian sample, focusing particularly on a new compound identified as mulinane 1.
  • The results indicated that while a new mulinane diterpene was isolated, it demonstrated lower gastroprotective activity in a mouse model compared to five known diterpenoids, suggesting that specific oxygenated groups enhance the compounds' effectiveness.

Article Abstract

Background: Azorella compacta is a rare yellow-green compact resinous cushion shrub growing from the high Andes of southern Perú to northwestern Argentina, and which is a producer of biologically active and unique diterpenoids.

Objective: This study investigated the secondary metabolites present in a Peruvian sample of Azorella compacta and the evaluation of gastroprotective activity of the isolated compounds in a gastric- induced ulcer model in mice.

Material And Methods: Six secondary metabolites (diterpenoids 1-6) present in the dichloromethane (DCM) extract of A. compacta growing in Perú were isolated by a combination of Sephadex LH-20 permeation and silica gel chromatography and their chemical structures were elucidated by spectroscopic methods (NMR) and molecular modeling. The gastroprotective activity of the new compound 1 was evaluated on the HCl/EtOH-induced gastric lesion model in mice and compared to the activity showed by the known compounds.

Results: A new mulinane diterpene along with five known diterpenoids have been isolated from a Peruvian sample of A. compacta and the gastroprotective results show that compound 1 is less active than the other known mulinane diterpenoids isolated.

Conclusions: A. compacta growing in Perú showed the presence of the new mulinane 1, which was poorly active in the HCl/EtOH-induced gastric lesion model in mice. Indeed, the activity was lower than other diterpenoids (2-6) showing an oxygenated function at C-16 or/and C-20, which confirm the role of an oxygenated group (OH or carboxylic acid) for the gastroprotective activity of mulinane compounds.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4189270PMC
http://dx.doi.org/10.4103/0973-1296.139807DOI Listing

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