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1.
M. H. L. Ribeiro D. M. F. Prazeres J. M. S. Cabral M. M. R. da Fonseca 《Bioprocess and biosystems engineering》1995,12(1-2):95-102
l-tryptophan was produced froml-serine and indole by immobilized Escherichia coli cells in organic-aqueous systems. Selective adsorption was the method chosen to enable both product separation andl-serine reutilization. Amongst various adsorbents tested activated carbons and neutral polymeric resins (XAD-4 and XAD-7) showed good performance. The neutral resins could selectively concentrate thel-tryptophan from dilute aqueous solutions and adsorbed only 5% of the unconvertedl-serine. High separation factors (l-tryptophan/l-serine and indole/l-tryptophan) were obtained with these adsorbents. Despite a lower capacity, the XAD-7 resin had the advantage of desorbingl-tryptophan with basic or acidic solutions, while organic solvents were required to desorb, at the same concentration levels, this compound from XAD-4.In a packed bed column filled with XAD-4 resin or activated carbon, totall-tryptophan adsorption and recovery were achieved at linear velocities up to 5.0 cm/min and 3.2 cm/min respectively. Successive sorbent reutilization, following continuous sorption and elution steps, was carried out in packed bed columns with the neutral resins and activated carbon.Thel-form of tryptophan, after crystallization, was identified by HPTLC.List of Symbols HPLC
High Performance Liquid Chromatography
- HPTLC
High Performance Thin Layer Chromatography
- Trp
tryptophan
- Ser
Serine
-
A
amount of sorbent(g)
-
c
equilibrium solute concentration in the aqueous phase (g/dm3)
-
c
i
initial (before adding the sorbent) liquid phase concentration (g/dm3)
-
C
T
tryptophan concentration in the inlet solution (g/dm3)
-
C
To
tryptophan concentration in the outlet solution (g/dm3)
-
E
z
axial dispersion coefficient (m2/s)
-
k
experimental constant (Eq. 1, 2 and 3)
-
K
1
rate constant of adsorption (min–1)
-
L
column length(m)
-
n
experimental constant (eq. 1, 2 and 3)
-
q
equilibrium solid phase concentration (g solute/g sorbent)
-
q
max
maximum capacity of sorbent (g solute/g sorbent)
-
t
time(s)
-
v
liquid velocity (m/s)
-
V
volume of liquid phase(dm3)
-
V
e
eluted volume(dm3)
-
V
r
volume needed to saturate the column (dm3) 相似文献
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Stephen A. Matlin M.Amelia Prazeres Magalis Bittner Mario Silva 《Phytochemistry》1984,23(12):2863-2866
Rimuene and nubigenol have been identified in Podocarpus saligna for the first time, and the structures of three new norditerpene dilactones, salignones K, L and M, isolated from this species have been elucidated. 相似文献
6.
Isabella V. Miller Graca Raposo Ulrich Welsch Olivia Prazeres da Costa Uwe Thiel Maria Lebar Martina Maurer Hans‐Ulrich Bender Irene von Luettichau Günther H. S. Richter Stefan Burdach Thomas G. P. Grunewald 《Biology of the cell / under the auspices of the European Cell Biology Organization》2013,105(7):289-303
7.
A. Rita Silva-Santos Cláudia P.A. AlvesDuarte Miguel F. Prazeres Ana M. Azevedo 《Analytical biochemistry》2016
The ability to analyze the distribution of topoisomers in a plasmid DNA sample is important when evaluating the quality of preparations intended for gene therapy and DNA vaccination or when performing biochemical studies on the action of topoisomerases and gyrases. Here, we describe the separation of supercoiled (sc) and open circular (oc) topoisomers by multimodal chromatography. A medium modified with the ligand N-benzyl-N-methyl ethanolamine and an elution scheme with increasing NaCl concentration are used to accomplish the baseline separation of sc and oc plasmid. The utility of the method is demonstrated by quantitating topoisomers in a purified plasmid sample. 相似文献
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