Selective Adsorption of Plant Metabolite on Encapsulated Adsorbent : Local Thermodynamic Equilibrium Model
スポンサーリンク
概要
- 論文の詳細を見る
Selective separation of plant metabolite by encapsulated XAD-7 with poly-L-lysine membrane was analyzed in order to evaluate the design parameters in the in situ bioproduct separatioin. Encapsulated XAD-7 could selectively concentrate the berberine from dilute aqueous mixtures of berberine and dopamine which are target secondary metabolites and undesired intermediate metabolites of Thalictrum rugosum plant cell culture, respectively, though competitive adsorption of berberine and dopamine was observed. The selectivity of berberine adsorption on encapsulated XAD-7 was controlled by pH variation of medium based on pKa value of metabolites. A mathematical model using local thermodynamic equilibrium isotherm for competitive adsorption of berberine and depamine on evncapsulated XAD-7 was proposed to quantify the adsorption and to evaluate design parameters. The predicted concentration by the proposed model agreed reasonably well with the experimental measurement in competitive adsorption of berberine and dopamine on encapsulated XAD-7. The effects of various design parameters on selective adsorption in the in situ product separation process were evaluated based on the proposed model and thus the volume ratio of single capsule to total capsules was the most effective parameter to increase the selectivity of berberine on encapsulated XAD-7.
- 社団法人日本生物工学会の論文
- 1996-01-25
著者
-
Yoo Dong-il
Department Of Chemica Engineering Sogang University
-
Choi Jeong-woo
Department Of Chemical Engineering Sogang University
-
LEE WON-HONG
Department of Chemical Engineering, Sogang University
-
PEDERSEN HENRIK
Department of Chemical and Biochemical Engineering, Rutgers University
-
Lee Won-hong
Department Of Chemical Engineering Sogang University
-
Pedersen Henrik
Department Of Chemical And Biochemical Engineering Rutgers University
-
Pedersen Henrik
Department Of Chem. & Biochem. Eng. Rutgers Univ.
-
Choi Jeong-Woo
Department of Chemical and Biomolecular Engineering, Sogang University, #1 Shinsu-dong, Mapo-gu, Seoul 121-742, Korea
-
PEDERSEN Henrik
Department of Chem. & Biochem. Eng. , Rutgers Univ.
関連論文
- Efficient Red Electrophosphorescent Devices Based on Iridium Complexes of Fluorinated 1-phenylisoquinoline
- Selective Adsorption of Plant Metabolite on Encapsulated Adsorbent : Local Thermodynamic Equilibrium Model
- Stability of Luciferase Gene Expression in a Long Term Period in Transgenic Eggplant, Solanum melongena
- Elicitation of Sanguinarine Production in Two-Phase Cultures of Eschscholtzia californica
- ハナビシソウ (Eschscholtzia californica) 懸濁培養細胞によるアルカロイドの生産
- Biomolecular Memory Device Composed of Cytochrome c on a Self-Assembled 11-Mercaptoundecanoic Acid Layer