| Literature DB >> 27004048 |
Pauzi Nur Aimi Syarina1, Govindarajan Karthivashan1, Faridah Abas2, Palanisamy Arulselvan1, Sharida Fakurazi3.
Abstract
Blue-green alga (Spirulina platensis) is a well renowned nutri-supplement due to its high nutritional and medicinal properties. The aim of this study was to examine the wound healing efficiency of Spirulina platensis at various solvent extracts using in vitro scratch assay on human dermal fibroblast cells (HDF). Various gradient solvent extracts (50 μg/ml of methanolic, ethanolic and aqueous extracts) from Spirulina platensis were treated on HDF cells to acquire its wound healing properties through scratch assay and in this investigation we have used allantoin, as a positive control to compare efficacy among the phytoextracts. Interestingly, aqueous extract were found to stimulate proliferation and migration of HDF cells at given concentrations and enhanced closure rate of wound area within 24 hours after treatment. Methanolic and ethanolic extracts have shown proliferative effect, however these extracts did not aid in the migration and closure of wound area when compared to aqueous extract. Based on phytochemical profile of the plant extracts analyzed by LC-MS/MS, it was shown that compounds supposedly involved in accelerating wound healing are cinnamic acid, narigenin, kaempferol, temsirolimus, phosphatidylserine isomeric derivatives and sulphoquinovosyl diacylglycerol. Our findings concluded that blue-green algae may pose potential biomedical application to treat various chronic wounds especially in diabetes mellitus patients.Entities:
Keywords: LC-MS/MS; Spirulina platensis; aqueous extract; wound healing activity; wound scratch assay
Year: 2015 PMID: 27004048 PMCID: PMC4800779 DOI: 10.17179/excli2014-697
Source DB: PubMed Journal: EXCLI J ISSN: 1611-2156 Impact factor: 4.068
Figure 1Effects of methanolic, ethanolic and aqueous extracts of Spirulina platensis on the viability of HDF cells. The cells were incubated for 24 h before being assessed for their viability. Data presented as mean ± SD.
Figure 2In vitro scratch assay (x4 magnification). HDF cells were injured and cell migration assay with and without treatment was performed. Aqueous extract treated fibroblasts showed faster cell proliferation and migration as compared with those untreated cells as well as those cells treated with methanolic and ethanolic extract.
Figure 3This figure represents peaks extracted from the aqueous extract from 0.0 to 11.0 min. Further analysis of LCMS/MS QTrap with an adaptive data dependent gradient program, it was revealed to be phenolic compounds and fatty acid derivatives.
Table 1Retention times, MS and MS2values of the major bioactive constituents present in S. platensis aqueous extract by HPLC-DAD-ESI-MS/MS.