| Literature DB >> 24083202 |
Anjum Gahlaut1, Amey Shirolkar, Vikas Hooda, Rajesh Dabur.
Abstract
β-sitosterol is an important component in food and herbal products and beneficial in hyperlipidemia. Its higher concentrations in serum may lead to coronary artery disease in case of sitosterolemia. Therefore, it is essential to determine the quantity of β-sitosterol in food and herbal drugs. Saraca asoca and its preparations have been widely used by traditional healers are also a source of β-sitosterol. In the present study, quantitative estimation of β-sitosterol present in hot and cold water extracts of bark, regenerated bark, leaves and flowers of the S. asoca and Ashokarista drugs were carried out first time using high performance liquid chromatography coupled (HPLC) with quadrupole time-of-flight mass spectrometry. Different concentrations of β-sitosterol and crude extracts were estimated by HPLC and targeted mass spectrometry. Standard curve for β-sitosterol was prepared from the intensities of transitions (397.50 → 147.0987 m/z) having regression coefficient (r (2)) 0.9952. Out of eight extracts and two drugs used in the study bark water, leaves water and leaves hot water extracts were found to have a considerable quantity of β-sitosterol, i.e. 170, 123.5 and 19.3 ng/mL, respectively. The results showed significant differences in the distribution of β-sitosterol among different organs of S. asoca and drugs prepared from its bark. HPLC/electrospray ionizationmass spectroscopy method is accurate, reproducible and requires less specimen, sample preparation and analysis time over HPLC assay. This type of approaches could be helpful for the quality control of herbal medicines and provides necessary information for the rational utilization of plant resources.Entities:
Keywords: Liquid chromatography-mass spectrometry; Saraca asoca; natural products; quantitative analysis; β-sitosterol
Year: 2013 PMID: 24083202 PMCID: PMC3777305 DOI: 10.4103/2231-4040.116783
Source DB: PubMed Journal: J Adv Pharm Technol Res ISSN: 0976-2094
Figure 1Total ion chromatograms of (a) bark water extract, bark hot water extract, regenerated bark water extract, regenerated bark hot water extract, (b) flower water extract, flower hot water extract, leaves water extract, leaves hot water extract and (c) Dabur and Baidyanath ashokarista showing the variation among the samples
Figure 2Abundance of β-sitosterol-6-O-glucoside in the sample and drugs
Figure 3(a) Total ion chromatogram of β-sitosterol with retention time, (b) standard curve for β-sitosterol (R2 = 0.9971) (c) product ion spectrum of β-sitosterol
Figure 4Concentration of β-sitosterol (ng/ml) in various samples