4.7 Article

Green extraction optimization of triterpenoid glycoside-enriched extract from Centella asiatica (L.) Urban using response surface methodology (RSM)

Journal

SCIENTIFIC REPORTS
Volume 11, Issue 1, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/s41598-021-01602-x

Keywords

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Funding

  1. [PHD/0064/2560]

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In this study, optimal conditions for extracting triterpenoid glycoside-enriched extracts from Centella asiatica were investigated using microwave-assisted extraction and ultrasound-assisted extraction. The percentage of ethanol was found to have a significant impact on the extract yield and content during the extraction processes. The optimized green conditions could be recommended for producing triterpenoid glycoside-enriched extracts from C. asiatica for pharmaceutical or cosmeceutical industries.
Centella asiatica (L.) Urban extracts are widely used as food, drugs and cosmetics, and the main active compounds are glycosides (madecassoside and asiaticoside) and aglycones (madecassic acid and asiatic acid). Green extraction is an interesting concept that can produce safe and high-quality extracts that use less solvent, time and energy with the environmental friendly. This study investigated the optimum conditions for extracting a triterpenoid glycoside-enriched C. asiatica extract using microwave-assisted extraction (MAE) and ultrasound-assisted extraction (UAE). Central composite design and response surface methodology (RSM) were used for the experimental design and data analysis. Four-month-old C. asiatica tetraploid plants were selected as the elite raw material containing high amount of triterpenoid glycosides for the extraction experiments, and the triterpenoid content was determined by a validated HPLC method. The results demonstrated that the RSM models and equations were reliable and could predict the optimal conditions to enhance C. asiatica extract yield, glycoside and aglycone amounts. The percent of ethanol was the major factor that had a significant effect on C. asiatica yield and glycoside and aglycone content during MAE and UAE. The maximum triterpenoids content in extract; 7.332 +/- 0.386% w/w madecassoside and 4.560 +/- 0.153% w/w asiaticoside 0.357 +/- 0.013% w/w madecassic acid and 0.209 +/- 0.025% w/w asiatic acid were obtained by MAE with 80% ethanol at 100 watts for 7.5 min, whereas the optimal conditions for highest total triterpenoids extraction from dry plant was UAE with 80% ethanol, temperature 48 degrees C, 50 min enhanced 2.262 +/- 0.046% w/w madecassoside, 1.325 +/- 0.062% w/w asiaticoside, 0.082 +/- 0.009% w/w madecassic acid and 0.052 +/- 0.007% w/w asiatic acid as secondary outcome. Moreover, it was found that MAE and UAE consumed energy 59 and 54%, respectively, lower than that of the conventional method, maceration, in term of kilowatt-hour per gram of total triterpenoids. These optimized green conditions could be recommended for C. asiatica extraction for triterpenoid glycoside-enriched extracts production for the pharmaceutical or cosmeceutical industries and triterpenoids quantitative analysis in raw materials.

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