In-Line Derivatization Of Polyaminosaccharide Polymer For Analytical Determination
An analytic method for the determination of the concentration of polysaccharide polymer in solution comprises the in-line derivatization of the polymer by reaction with sulfonate dye. The reaction results in an analyte-derivative, carried in a mobile phase, that can be detected and quantitatively determined by ultraviolet absorption or by fluorescence measurement. The method can provide sensitive and precise measurement in spite of limited solubility of the analyte.
1 . A method for determining the concentration of polyaminosaccharide polymer in a test sample, the method comprising:
flowing a derivatizing dye solution through a tube to a detector;
injecting an aliquot of the test sample into a buffered mobile phase solution;
flowing the buffered mobile phase solution into the tube that contains the flowing derivatizing dye solution;
mixing the test sample and the derivatizing dye solution to form a reaction product by the contact of the dye solution and the test sample;
detecting the reaction product to obtain a quantitative measure; and
comparing the quantitative measure of the reaction product detection with a calibration curve that is established by the quantitative measure of two or more samples containing known concentrations, of which at least two are differing, of the polyaminosaccharide polymer.
2 . The method of claim 1 , wherein the polyaminosaccharide polymer is a chitosan polymer.
3 . The method of claim 2 , wherein the derivatizing dye solution contains an anionic sulfonates dye having two or more sulfonates groups.
4 . The method of claim 3 , wherein the derivatizing dye solution contains a dye selected from the group comprising Cibacron Brilliant Red 3B-A and Cibacron Brilliant Yellow 3G-P.
5 . The method of claim 2 , wherein detecting comprises detecting by either or both of light absorption and fluorescence.
6 . The method of claim 2 , wherein the buffered mobile phase solution is 0.1 M citric acid.
7 . The method of claim 1 , wherein flowing a buffered mobile phase solution comprises flowing the solution through a tee or a binary mixer.