Anti-inflammatory and Analgesic Activities of Crotalaria pallida Aiton
in CDCl3.[18]1★★ Corresponding author
- 1Fast‑atom bombardment mass spectrometry (FAB‑MS) (Joel SX 102/DA‑6000 mass spectrometer) was used to obtain the exact mass of turbiconol. Sterol sample (0.1 mg) in 100 μL HPLC grade methanol was used for the analysis. The quasimolecular ions (M + H) + spectrum were recorded at room temperature. The spectrum is obtained at resolution of 1000 amu. Mass spectra patterns were obtained with gas chromatography‑MS (GC‑MS) (Perkin Elmer, Clarus 680‑Clarus.
- 2T) system. Sterol 1 mg was dissolved in 1 mL ethyl acetate and 1 µL was injected to GCMS equipped with nonpolar HP ultra‑double fused silica capillary column.[18] Novelty of the identified sterol was confirmed with the aid of SciFinder® . Cell culture Liver hepatocellular cells (HepG2) and human lung adenocarcinoma (A549) cell lines were purchased from the National Centre for Cell Science, Pune, India. Dulbecco’s modified Eagles media (DMEM/F2) was used and culture conditions were maintained at humidified 5% CO2 and 37°C of optimum temperature until a 70%– 80% confluence was reached. 10% Foetal Bovine Serum and antibiotics such as penicillin G (100 µL/mL), streptomycin (100 mg/mL), and amphotericin (250 ng/mL) were supplemented in culturing media. Trypsinization was performed with 0.5% (W/V) trypsin (0.25%, Invitrogen, USA) and ethylenediaminetetraacetic acid for 3 min at 37°C, only after attaining appropriate confluence. Appropriate cell suspensions obtained were used for further experimental procedures. Procedure To access the cytotoxic potential of turbiconol against lung and liver cancer, A549 and HepG2 human cell lines at a density of 2 × 105 cell/ mL seeded in a 96‑well microtiter plate was used. These cells were further incubated for 24 h at 37°C in a 5% CO2 atmosphere to ensure the complete cell adhesion. Cell adhesion to substrate was further verified using microscope. The plates were further used to access the antiproliferates mechanism and cell cytostatic activities. Cytotoxicity of turbiconol The changes in the cell viability were evaluated by thiazolyl blue tetrazolium bromide (3‑(4,5‑Dimethylthiazol‑2‑yl)‑2,5‑Diphenyltetrazolium Bromide [MTT] assay). Prior to turbiconol exposure to access cell viability well plates were seeded with 1000 trypsinized A549 and Hep G2 cell lines. After 24 h, these cells were treated with different concentration of turbiconol (6.5, 12.5, 25, 50, and 100 µg/mL) followed by 24 h incubation at 37°C in a 5% CO2 atmosphere. Negative controls (untreated cells) were included in all experimental runs. After turbiconol exposure for 24 h, media were carefully decanted from the plate and formazan product formed was dissolved in 200 µL dimethyl sulfoxide to evaluate the absorbance at 570 nm using microplate reader.[19] The data are reported as mean ± standard error (n test = 3). Morphological changes of cells after.
CORRESPONDENCE
in CDCl3.[18]
Fast‑atom bombardment mass spectrometry (FAB‑MS) (Joel SX 102/DA‑6000 mass spectrometer) was used to obtain the exact mass of turbiconol. Sterol sample (0.1 mg) in 100 μL HPLC grade methanol was used for the analysis. The quasimolecular ions (M + H) + spectrum were recorded at room temperature. The spectrum is obtained at resolution of 1000 amu. Mass spectra patterns were obtained with gas chromatography‑MS (GC‑MS) (Perkin Elmer, Clarus 680‑Clarus.
Received: 19-12-2018; Revised: 31-01-2019; Accepted: 20-11-2018.
Volume 15, Issue 64s · pp. S189–S196 · PUBLISHED 26 August 2019 · DOI: 10.4103/pm.pm_643_18
View on Pharmacogn. Mag. original site ↗
ABSTRACT
Background: Turbinaria conoides, a brown seaweed, is a rich source of oxygenated fucosterols which are capable of suppressing the proliferation of cancer cells. Their specific therapeutically significant biological activity is directly related to the unique structural features of the molecule. This study specifically focuses on extracting unconventional sterol molecules (side chain extension) from this seaweed which can be used as a lead molecule to evolve therapeutical agents. Materials and Methods: To isolate unconventional sterol molecule, for structural elucidation and bioactivity study, sufficient amount of T. conoides was collected from Mandapam, an unique biodiverse environment along the Southeast coast of India. State‑of‑the‑art methods available for the purification and characterization of molecule (High‑resolution fast‑atom bombardment mass spectrometry, ultraviolet‑visible spectroscopy, attenuated total reflection–fourier transform infra‑red, One‑dimensional nuclear magnetic resonance, and two‑dimensional nuclear magnetic resonance) were put in. In vitro bioassays (3‑(4,5‑Dimethylthiazol‑2‑yl)‑2,5‑Diphenyltetrazolium bromide, double staining, and flowcytometry) were carried out against A549 and human liver cancer cell line (HepG2) malignant cells to assess the cytostatic potential. Data were statistically validated. Results: A unique unconventional sterol molecule (Turbiconol) with ethyl and methyl group at C‑27 was isolated. This molecule induced apoptosis in A549 and HepG2. However, cell cycle assessment revealed G0/G1 cell cycle arrest in Hep G2 and G2/M checkpoint was responsible for the suppression of A549 cell line. Conclusion: A novel unconventional compound, turbiconol, is reported in this study. In vitro results highlight the potential of this molecule in developing therapeutical combination which can be used for novel treatment methods.
KEYWORDS
REFERENCES
As publishedShowing references and in-text citations exactly as published.
Cite this article
SELECT FORMAT
CDCl3.[18], I. (2019). Anti-inflammatory and Analgesic Activities of Crotalaria pallida Aiton. Pharmacognosy Magazine, 15(64s), S189–S196. https://doi.org/10.4103/pm.pm_643_18
