Ultrasound- and Negative Pressure-assisted Fractional Precipitation of Paclitaxel from Taxus chinensis

被引:0
作者
Eun-Ju Shin
Jin-Hyun Kim
机构
[1] Kongju National University,Center for Future Sustainable Technology, Department of Chemical Engineering
来源
Biotechnology and Bioprocess Engineering | 2023年 / 28卷
关键词
paclitaxel; fractional precipitation; ultrasound; negative pressure; synergistic effect;
D O I
暂无
中图分类号
学科分类号
摘要
The effect of ultrasound and negative pressure on the efficiency of fractional precipitation of paclitaxel derived from Taxus chinensis was investigated. Introducing both ultrasound and negative pressure during fractional precipitation resulted in a precipitation time that was 2 times faster than the conventional ultrasound-fractional precipitation and negative pressure-fractional precipitation. In particular, using an ultrasonic power of 250 W and a negative pressure of -200 mmHg simultaneously could recover up to 98.2% of the paclitaxel within 1 min. The ultrasound/negative pressure-fractional precipitation resulted in precipitates with mean particle sizes that were 9.3, 2.3, and 2.7 times smaller than those of the conventional fractional precipitation, the negative pressure-fractional precipitation, and the ultrasound-fractional precipitation, respectively. In addition, the diffusion coefficients increased by 11.4, 2.2, and 2.6 times, and the rate constants increased by 2.9–7.0, 1.3–3.0, and 2.3–5.5 times. As the ultrasonic power and negative pressure increased, the changes of activation energy decreased, promoting faster precipitation.
引用
收藏
页码:336 / 344
页数:8
相关论文
共 50 条
[41]   A large-scale purification of paclitaxel from cell cultures of Taxus chinensis [J].
Pyo, SH ;
Park, HB ;
Song, BK ;
Han, BH ;
Kim, JH .
PROCESS BIOCHEMISTRY, 2004, 39 (12) :1985-1991
[42]   Efficient purification and morphology characterization of paclitaxel from cell cultures of Taxus chinensis [J].
Pyo, SH ;
Kim, MS ;
Cho, JS ;
Song, BK ;
Han, BH ;
Choi, HJ .
JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2004, 79 (10) :1162-1168
[43]   Recovery of extracellular paclitaxel from suspension culture of Taxus chinensis by adding inorganic salts [J].
Son, JS ;
Choi, HK ;
Hong, SS .
BIOTECHNOLOGY LETTERS, 2001, 23 (09) :723-725
[44]   Recovery of extracellular paclitaxel from suspension culture of Taxus chinensis by adding inorganic salts [J].
Joo-Sun Son ;
Hyung-Kyoon Choi ;
Seung-Suh Hong .
Biotechnology Letters, 2001, 23 :723-725
[45]   Elucidation of the Mechanism and Kinetics of Ultrasonic Extraction of Paclitaxel from Plant Cell Cultures of Taxus chinensis [J].
Hak-Gyun Kim ;
Jin-Hyun Kim .
Biotechnology and Bioprocess Engineering, 2022, 27 :668-677
[46]   Optimization of Adsorbent Treatment Process for the Purification of Paclitaxel from Plant Cell Cultures of Taxus chinensis [J].
Lee, Chung-Gi ;
Kim, Jin-Hyun .
KOREAN CHEMICAL ENGINEERING RESEARCH, 2014, 52 (04) :497-502
[47]   Kinetics, Thermodynamics, and Solvent Polarity Effects of Ultrasound-Negative Pressure Cavitation Fractional Precipitation of (+)-Dihydromyricetin [J].
Kim, Chaeyeon ;
Kim, Jin-Hyun .
KOREAN JOURNAL OF CHEMICAL ENGINEERING, 2025, :2345-2354
[48]   Effective Diffusivity and Mass Transfer Coefficient during the Extraction of Paclitaxel from Taxus chinensis Using Methanol [J].
Ye-Ji Jo ;
Jin-Hyun Kim .
Biotechnology and Bioprocess Engineering, 2019, 24 :818-823
[49]   Effects of absorbent treatment on the purification of paclitaxel from cell cultures of Taxus chinensis and yew tree. [J].
Pyo, SH ;
Song, BK ;
Ju, CH ;
Han, BH ;
Choi, HJ .
PROCESS BIOCHEMISTRY, 2005, 40 (3-4) :1113-1117
[50]   Effective Diffusivity and Mass Transfer Coefficient during the Extraction of Paclitaxel from Taxus chinensis Using Methanol [J].
Jo, Ye-Ji ;
Kim, Jin-Hyun .
BIOTECHNOLOGY AND BIOPROCESS ENGINEERING, 2019, 24 (05) :818-823