In Vitro Cytotoxic Potential of Selected Jordanian Flora and Their Associated Phytochemical Analysis.
Manal I AlruwadManal M SabryAbdallah M Said AhmedRiham Salah El-DineHala Mohamed El HefnawyPublished in: Plants (Basel, Switzerland) (2023)
Traditional medicines are a significant source of phytochemicals with potential anticancer effects. Ten Jordanian plants were chosen to be tested for cytotoxicity on human colorectal (HT-29) and breast adenocarcinoma (MCF-7) cell lines. The ethanol extracts were screened for their potential cytotoxic effects using a Sulforhodamine B (SRB) colorimetric assay, using doxorubicin as positive control. Plants extracts exhibiting marked cytotoxic activity were further investigated by qualitative and quantitative phytochemical methods. Total phenolics were quantified using the Folin-Ciocalteu reagent, while flavonoids were quantified using aluminum chloride. The total saponins of the n -butanol fraction were estimated using diosgenin as a standard. The total alkaloids and total terpenoids were also evaluated using the gravimetric method. As results, Senecio leucanthemifolius (IC 50 : 13.84 μg/mL) and Clematis cirrhosa (IC 50 : 13.28 μg/mL) exhibited marked cytotoxic effects on human colorectal adenocarcinoma (HT-29) cell lines. Total phenolics, flavonoids, saponins, alkaloids, and terpenoids found in Senecio leucanthemifolius were (91.82, 14.90, 14.27, 101, and 135.4 mg/g of dry extract), respectively. They were revealed to be (68.18, 7.16, 31.25, 73.6, and 180 mg/g of dry extract) in Clematis cirrhosa , respectively. Senecio leucanthemifolius and Clematis cirrhosa have been found to possess cytotoxicity against colorectal (HT-29). In conclusion, the findings of this study offer a new perspective on Jordanian plant extracts anticancer activity research.
Keyphrases
- endothelial cells
- squamous cell carcinoma
- oxidative stress
- radiation therapy
- systematic review
- pluripotent stem cells
- locally advanced
- high throughput
- high resolution
- drug delivery
- single cell
- nitric oxide
- hydrogen peroxide
- mass spectrometry
- rectal cancer
- sensitive detection
- atomic force microscopy
- anti inflammatory
- quantum dots
- high speed
- label free