Skip to Content
MilliporeSigma
  • Multivariate analysis of PRISMA optimized TLC image for predicting antioxidant activity and identification of contributing compounds from Pereskia bleo.

Multivariate analysis of PRISMA optimized TLC image for predicting antioxidant activity and identification of contributing compounds from Pereskia bleo.

Biomedical chromatography : BMC (2015-06-03)
K M Sharif, M M Rahman, J Azmir, A Khatib, E Sabina, S H Shamsudin, I S M Zaidul
ABSTRACT

Multivariate analysis of thin-layer chromatography (TLC) images was modeled to predict antioxidant activity of Pereskia bleo leaves and to identify the contributing compounds of the activity. TLC was developed in optimized mobile phase using the 'PRISMA' optimization method and the image was then converted to wavelet signals and imported for multivariate analysis. An orthogonal partial least square (OPLS) model was developed consisting of a wavelet-converted TLC image and 2,2-diphynyl-picrylhydrazyl free radical scavenging activity of 24 different preparations of P. bleo as the x- and y-variables, respectively. The quality of the constructed OPLS model (1 + 1 + 0) with one predictive and one orthogonal component was evaluated by internal and external validity tests. The validated model was then used to identify the contributing spot from the TLC plate that was then analyzed by GC-MS after trimethylsilyl derivatization. Glycerol and amine compounds were mainly found to contribute to the antioxidant activity of the sample. An alternative method to predict the antioxidant activity of a new sample of P. bleo leaves has been developed.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Hexane, suitable for residue analysis, JIS 5000
Sigma-Aldrich
Hexane, suitable for HPLC
Sigma-Aldrich
Ethyl acetate, suitable for HPLC
Sigma-Aldrich
Ethyl acetate, SAJ first grade, ≥99.0%
Sigma-Aldrich
Toluene, JIS 300, suitable for residue analysis, ≥99.8%
Sigma-Aldrich
Ethanol, ≥99.5%, SAJ super special grade
Sigma-Aldrich
Hexane, SAJ first grade, ≥95.0%
Sigma-Aldrich
Ethanol, ≥99.5%
Sigma-Aldrich
Ethyl acetate, JIS 300, ≥99.5%, suitable for residue analysis
Sigma-Aldrich
Ethyl acetate, JIS special grade, ≥99.5%
Sigma-Aldrich
Toluene, SAJ first grade, ≥99.0%
Sigma-Aldrich
Ethanol, ≥99.5%, suitable for HPLC
Sigma-Aldrich
Dichloromethane, JIS special grade, ≥99.0%
Sigma-Aldrich
Ethanol, ≥99.5%, suitable for fluorescence
Sigma-Aldrich
Dichloromethane, SAJ first grade, ≥99.0%
Sigma-Aldrich
Pyridine, JIS special grade, ≥99.5%
Sigma-Aldrich
Pyridine, suitable for hydroxyl value determination, ≥99.5%
Sigma-Aldrich
Hexane, ≥96.0%, suitable for residual phthalate analysis
Sigma-Aldrich
Ethanol, JIS 1000, ≥99.5%, suitable for residue analysis
Sigma-Aldrich
Hexane, JIS 1000, ≥96.0%, suitable for residue analysis
Sigma-Aldrich
Ethanol, ≥99.5%, suitable for absorption spectrum analysis
Sigma-Aldrich
Ethyl acetate, JIS 1000, ≥99.5%, suitable for residue analysis
Sigma-Aldrich
Hexane, JIS 300, ≥96.0%, suitable for residue analysis
Sigma-Aldrich
Toluene, JIS 1000, suitable for residue analysis, ≥99.8%
Supelco
Dichloromethane solution, contains 10 % (v/v) methanol
Sigma-Aldrich
Dichloromethane, anhydrous, ≥99.8%, contains 40-150 ppm amylene as stabilizer
Sigma-Aldrich
Ethyl acetate, ReagentPlus®, ≥99.8%
Sigma-Aldrich
Ethyl acetate, anhydrous, 99.8%
Sigma-Aldrich
Pyridine, anhydrous, 99.8%
Supelco
Toluene, HPLC grade, 99.8%