Menthol based hydrophobic deep eutectic solvent for extraction and purification of ergosterol using response surface methodology

被引:0
|
作者
Khare, Lalit [1 ]
Karve, Tanvi [1 ]
Jain, Ratnesh [2 ]
Dandekar, Prajakta [1 ]
机构
[1] Department of Pharmaceutical Sciences & Technology, Institute of Chemical Technology, N.P. Marg, Matunga, Mumbai,Maharashtra,400019, India
[2] Department of Chemical Engineering, Institute of Chemical Technology, N.P. Marg, Matunga, Mumbai,Maharashtra,400019, India
关键词
Hydrophobicity;
D O I
暂无
中图分类号
学科分类号
摘要
Vitamin D deficiency has been linked to various diseases, but could be rectified via fortified food stuffs or supplementation. In this study 39 different hydrophobic deep eutectic solvents were evaluated for green extraction of ergosterol from mushroom. Extraction parameters (e.g. time, solvent volume) were optimized using response surface methodology (RSM) and a maximum extraction yield of 6995.00 µg ergosterol/g dry weight mushroom was attained with menthol: pyruvic acid. The extracted ergosterol was purified using a novel methodology and the extraction solvent was reused for six cycles, while retaining extraction efficiency (up to 28%). The ergosterol was exposed to ultra-violet radiation for conversion to ergocalciferol (vitamin D2) resulting in a yield of ergocalciferol that was equivalent to 2142.01 µg/g dry weight mushroom. © 2020 Elsevier Ltd
引用
收藏
相关论文
共 50 条
  • [1] Menthol based hydrophobic deep eutectic solvent for extraction and purification of ergosterol using response surface methodology
    Khare, Lalit
    Karve, Tanvi
    Jain, Ratnesh
    Dandekar, Prajakta
    FOOD CHEMISTRY, 2021, 340
  • [2] Investigation of reactive extraction of monocarboxylic acids with menthol-based hydrophobic deep eutectic solvent by response surface methodology
    Yildiz, Esra
    Lalikoglu, Melisa
    Asci, Yavuz Selim
    Sirma Tarim, Burcu
    SEPARATION SCIENCE AND TECHNOLOGY, 2023, 58 (08) : 1450 - 1459
  • [3] Application of Response Surface Methodology for Selective Extraction of Lithium Using a Hydrophobic Deep Eutectic Solvent
    Rezaee, Mehran
    Feyzi, Farzaneh
    Javanshir, Shahrzad
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2025, 64 (04) : 2294 - 2308
  • [4] Separation of butyric acid from aqueous media using menthol-based hydrophobic deep eutectic solvent and modeling by response surface methodology
    Lalikoglu, Melisa
    BIOMASS CONVERSION AND BIOREFINERY, 2022, 12 (04) : 1331 - 1341
  • [5] Separation of butyric acid from aqueous media using menthol-based hydrophobic deep eutectic solvent and modeling by response surface methodology
    Melisa Lalikoglu
    Biomass Conversion and Biorefinery, 2022, 12 : 1331 - 1341
  • [6] Hydrophobic deep eutectic solvent effect on acrylic acid separation from aqueous media by using reactive extraction and modeling with response surface methodology
    Lalikoglu, Melisa
    Asci, Yavuz Selim
    Tarim, Burcu Sirma
    Yildiz, Mahmut
    Arat, Refik
    SEPARATION SCIENCE AND TECHNOLOGY, 2022, 57 (10) : 1563 - 1574
  • [7] Evaluation of alcohol-based deep eutectic solvent in extraction and determination of flavonoids with response surface methodology optimization
    Bi, Wentao
    Tian, Minglei
    Row, Kyung Ho
    JOURNAL OF CHROMATOGRAPHY A, 2013, 1285 : 22 - 30
  • [8] Optimization of Extraction Process of Methyl Eugenol and Asarinin in Asarum with Deep Eutectic Solvent Based on the Response Surface Methodology
    Bao, Huiwei
    Xu, Yang
    Wang, Yuejie
    Zhang, Tao
    Wang, Enpeng
    Huang, Xin
    Chen, Changbao
    Liu, Fangxin
    JOURNAL OF CHEMISTRY, 2021, 2021
  • [9] Enhanced fluorescence detection of ergosterol by hydrophobic fluorescent natural deep eutectic solvent
    Dazat, Ricardo Elia
    Mammana, Sabrina B.
    Canizo, Brenda, V
    Silva, Maria Fernanda
    Gomez, Federico J. V.
    GREEN ANALYTICAL CHEMISTRY, 2022, 3
  • [10] Extraction of Ti(IV) Ions from Chloride Solutions with the Aliquat 336–Menthol Hydrophobic Deep Eutectic Solvent
    A. V. Kozhevnikova
    E. S. Uvarova
    D. V. Lobovich
    N. A. Milevskii
    Yu. A. Zakhodyaeva
    A. A. Voshkin
    Theoretical Foundations of Chemical Engineering, 2023, 57 : 1261 - 1267