IP Library Granted Patent US 8,241,476
Granted Patent B1
US 8,241,476 · App. 12/120,380 · Granted Aug 14, 2012

Sol-gel coatings for on-line preconcentration in capillary electrophoresis

Assignee: University of South Florida
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Quick Facts
Patent No.
US 8,241,476
App. No.
12/120,380
Granted
Aug 14, 2012
Kind
B1
Abstract

A novel on-line method is presented for the extraction and preconcentration of amino acids using a sol-gel coated column coupled to a conventional UV/vis detector. Extraction, stacking and focusing techniques are used in the preconcentration procedures. Sol-gel coatings are created by using N-Octadecyldimethyl[3(trimethoxysilyl)proply]ammonium chloride (C 18 -TMS) in the coating sol solutions. The resulting sol-gel coating carries a positive charge. For extraction, the pH of the samples is properly adjusted to impart a net negative charge to amino acids. A long plug of the sample is then passed through the sol-gel coated capillary to facilitate extraction via electrostatic interaction between the positively charged sol-gel coating and the negatively charged amino acid molecules. The focusing of the extracted amino acids is accomplished through desorption of the extracted amino acid molecules carried out by local pH change. The described procedure provides 150,000-fold enrichment effect for alanine.

Claims (20)

1. A sample pre-concentration system for zwitterionic analytes comprising:

a tube having an electrically-charged inner surface;

a flow-generating device to pass the analyte through the tube;

a capillary electrophoresis system;

a zwitterionic analyte of interest;

a first buffer solution having a pH value higher than the isoelectric point (pI) value of the zwitterionic analyte; and

a second buffer solution having a pH lower than the pI of the zwitterionic analyte.

2. The sample pre-concentration system of claim 1 wherein the electrically-charged surface of the tube is provided by a sol-gel substrate on the tube surface.

3. The sample pre-concentration system of claim 2 wherein the sol-gel substrate has a positive surface charge.

4. The sample pre-concentration system of claim 3 wherein the positively charged sol-gel substrate is formed from a sol-gel precursor containing a quaternary amine moiety.

5. The sample pre-concentration system of claim 4 where the quaternary amine-containing sol-gel precursor is N-octadecyl-dimethyl [3-(trimethoxysilyl)propyl]ammonium chloride.

6. The sample pre-concentration system of claim 2 wherein the sol-gel substrate is chemically bonded to the surface of the tube.

7. The sample pre-concentration system of claim 6 where the sol-gel substrate has a negative surface charge.

8. The sample pre-concentration system of claim 2 wherein the sol-gel substrate is a surface coating on the tube.

9. The sample pre-concentration system of claim 1 wherein the flow-generating device is selected from the group consisting of a pump and an injector.

10. A sample pre-concentration kit for zwitterionic analytes comprising:

a tube having an electrically-charged interior surface, the tube adapted for use in a capillary electrophoresis system;

a zwitterionic analyte of interest;

a first buffer solution having a pH value higher than the isoelectric point (pI) value of the zwitterionic analyte; and

a second buffer solution having a pH lower than the pI of the zwitterionic analyte.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2008
From: MALIK, ABDUL; LI, WEN; FRIES, DAVID P.
To: UNIVERSITY OF SOUTH FLORIDA
Reel/Frame 021529/0326 →
EXECUTIVE ORDER 9424, CONFIRMATORY LICENSE Recorded Jul 25, 2008
From: SOUTH FLORIDA, UNIVERSITY OF
To: NAVY, SECRETARY OF THE, UNITED STATES OF AMERICA OFFICE OF NAVAL RESEARCH
Reel/Frame 021304/0443 →
Continuity (2)
Continuation 10704770 · Nov 10, 2003
Provisional Application 60319680 · Nov 8, 2002