Immunoassay methods utilizing trapping conjugate
Methods are provided for determining the presence of a first ligand in a sample. In some embodiments depletion conjugates are used to deplete the ligands different from but related to the first ligands from the sample. In some embodiments, interim binding agents are used to enhance the test signal.
1. A method for testing a sample for the presence of a first ligand, comprising:
a) obtaining a test device having a first sorbent strip having a first location for receiving a solution and defining a first migration path, a marker conjugate located on or in said first migration path, said marker conjugate adapted to bind to said first ligand, a second sorbent strip distinct from said first sorbent strip and having a second location for receiving the liquid sample and defining a second migration path, a depletion conjugate located on or in said second migration path wherein said depletion conjugate comprises depletion molecules bound to particles, where the depletion molecules include ligand-binding elements adapted to specifically bind to said second ligands that are different from but related to said first ligand by being cross-reactive therewith to which said depletion molecules will not bind, and a test site located on or in at least one of said first sorbent strip and said second sorbent strip, said test site having an immobilized ligand-binding mechanism for said first ligand, and said first and second sorbent strips touching each other at the test site location, wherein said second location is removed from said test site such that sample applied to said second location requires time to migrate to said test site and does not immediately wet said test site;
b) applying the sample to said second location whereby the sample migrates along said second migration path into contact with the depletion molecules and then with at least some of said depletion molecules to said test site;
c) after said applying the sample, applying a solution to the first location to cause said marker conjugate to migrate along said first migration path; and
d) inspecting said test site to determine an indication of the presence or lack thereof of the first ligand in the sample.
2. A method according to claim 1 , wherein:
said depletion conjugate includes an antigen or antibody for the second ligand and particles that are not readily seen by the human eye against a background of said test site.
3. A method according to claim 2 , wherein:
said test device has a housing defining a first opening adjacent said first location, a second opening adjacent said second location, and a window adjacent said test site through which said test site is viewable,
said applying the sample comprises depositing the sample through said second opening to said second location,
said applying the solution comprises depositing the solution through said first opening to said first location, and
said inspecting comprises inspecting through said window.
4. A method according to claim 1 , wherein:
said test device has a housing defining a first opening adjacent said first location, a second opening adjacent said second location, and a window adjacent said test site through which said test site is viewable,
said applying the sample comprises depositing the sample through said second opening to said second location,
said applying the solution comprises depositing the solution through said first opening to said first location, and
said inspecting comprises inspecting through said window.
5. A method for testing a sample for the presence of a first ligand, comprising:
a) obtaining a test device having a first sorbent strip having a first location for receiving a solution and defining a first migration path, a marker conjugate located on or in said first migration path, said marker conjugate adapted to bind to said first ligand wherein said first ligand is a first flu antibody, a second sorbent strip distinct from said first sorbent strip and having a second location for receiving the liquid sample and defining a second migration path, a depletion conjugate located on or in said second migration path wherein said depletion conjugate comprises depletion molecules bound to particles, where the depletion molecules include ligand-binding elements adapted to specifically bind to second ligands that are different from but related to said first ligand by being cross-reactive therewith to which said depletion molecules will not bind, wherein said second ligand is a second flu antibody different than said first flu antibody, and a test site located on or in at least one of said first sorbent strip and said second sorbent strip, said test site having an immobilized ligand-binding mechanism for said first ligand, and said first and second sorbent strips touching each other at the test site location, wherein said second location is removed from said test site such that sample applied to said second location requires time to migrate to said test site and does not immediately wet said test site;
b) applying the sample to said second location;
c) after said applying the sample, applying a solution to the first location to cause said marker conjugate to migrate along said first migration path; and
d) inspecting said test site to determine an indication of the presence or lack thereof of the first ligand in the sample.
6. A method according to claim 5 , wherein:
said depletion conjugate includes an antigen or antibody for the second ligand and particles that are not readily seen by the human eye against a background of said test site.
7. A method according to claim 6 , wherein:
said test device has a housing defining a first opening adjacent said first location, a second opening adjacent said second location, and a window adjacent said test site through which said test site is viewable,
said applying the sample comprises depositing the sample through said second opening to said second location,
said applying the solution comprises depositing the solution through said first opening to said first location, and
said inspecting comprises inspecting through said window.