Related Experiment Video
Updated: Jan 9, 2026

Ultrasonic-Assisted Extraction of Cannabidiolic Acid from Cannabis Biomass
Published on: May 27, 2022
Optimization of Ultrasound-Assisted Methanolic Extraction of Terminalia arjuna Bark Using Response Surface
Hafsa Tahir1,2, Muhammad Nadeem Akhtar1, Hamid Saeed3
1University Institute of Diet and Nutritional Sciences The University of Lahore Lahore Pakistan.
Abstract:
Terminalia arjuna's bark is a renowned medicinal plant material within the Indian subcontinent. Ultrasound-assisted extraction (UAE) of Terminalia arjuna bark was optimized using response surface methodology (RSM) with methanol as the extraction solvent. Methanol was selected for its ability to efficiently solubilize phenolic and flavonoid compounds, which are major contributors to the bark's bioactivity. A Box-Behnken design was followed to model the effects of temperature, solvent-to-solid ratio, extraction time and sonication power on the yield. The optimized UAE conditions produced an extract with a yield of 12.09%, which was highly enriched in phenolic (442.2 ± 16.2 mg GAE/g) and flavonoid (294.6 ± 8.1 mg QE/g) compounds, demonstrating the method's efficiency for targeted phytochemical recovery. Proximate and mineral analysis revealed the bark's nutritional composition and its content of essential minerals like calcium (86.27 ± 1.43 mg/kg) and iron (16.03 ± 1.21 mg/kg). The extract exhibited significant in vitro antioxidant activity, with an IC₅₀ of 186.4 μg/mL in the DPPH assay and 24.4 μM Fe (II) equivalents in the FRAP assay. The study demonstrates that UAE is an efficient technique for obtaining a phytochemically rich extract from T. arjuna bark, which shows antioxidant potential.
More Related Videos
06:00Optimization of the Epimedii Folium Mutton-Oil Processing Technology and Testing Its Effect on Zebrafish Embryonic Development
Published on: March 17, 2023
07:05Author Spotlight: Eco-Friendly Extraction of Bioactive Compounds Using Polyol-Based Microwave-Assisted Techniques
Published on: August 23, 2024