94
1
General Principles
⊡ Figure 10
Matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS) analysis of cyclomaltodextrins with 6 to 27 D-glucopyranose residues. The numbers in parentheses above the peaks are the
number of D-glucopyranose residues in the cyclomaltodextrins. From [166], reproduced by permission of the
publisher, Elsevier Press
B-1254, and B-1299 each gave two dextrans with different structures that were separated
from each other; dextran and alternan, produced by strain B-1355, were also separated in
this way [167].
15.5 Separation and Purification
of Water-Insoluble Polysaccharides, Starch and Cellulose
The separation and purification of starch granules from plant extracts (see > Sect. 2 in
> Chap. 6.2) and the fractionation of amylose and amylopectin is given in > Sect. 5 in
> Chap. 6.2. The separation of cellulose and hemicelluloses from plant materials and from
each other is given in > Sect. 3.2 in > Chap. 6.3.
1
General Principles
⊡ Figure 10
Matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS) analysis of cyclomaltodextrins with 6 to 27 D-glucopyranose residues. The numbers in parentheses above the peaks are the
number of D-glucopyranose residues in the cyclomaltodextrins. From [166], reproduced by permission of the
publisher, Elsevier Press
B-1254, and B-1299 each gave two dextrans with different structures that were separated
from each other; dextran and alternan, produced by strain B-1355, were also separated in
this way [167].
15.5 Separation and Purification
of Water-Insoluble Polysaccharides, Starch and Cellulose
The separation and purification of starch granules from plant extracts (see > Sect. 2 in
> Chap. 6.2) and the fractionation of amylose and amylopectin is given in > Sect. 5 in
> Chap. 6.2. The separation of cellulose and hemicelluloses from plant materials and from
each other is given in > Sect. 3.2 in > Chap. 6.3.
