Claims
- 1. An optical bio-disc for conducting a cellular assay, said disc comprising:
a rotatable substrate; a cap portion associated with said substrate; and a fluidic circuit formed between said substrate and said cap portion, said fluidic circuit comprising:
a mixing chamber, said mixing chamber including an inlet port; a purification chamber in fluid communication with said mixing chamber; a filter means associated with said purification chamber; an analysis chamber in fluid communication with said purification chamber, said analysis chamber including a capture zone; and a vent port associated with said analysis chamber.
- 2. The optical bio-disc according to claim 1 wherein said filter means is selected from the group comprising microspheres and a cellular sieve.
- 3. The optical bio-disc according to claim 2 wherein said microspheres are coated with a purification agent.
- 4. The optical bio-disc according to claim 3 wherein said purification agent is selected from the group comprising monoclonal antibodies, polyclonal antibodies, oligonucleotides, ligands, receptors, and binding agents.
- 5. The optical bio-disc according to claim 4 wherein said monoclonal antibodies is selected from the group comprising anti-CD56, anti-CD14, anti-CD19, anti-CD9, anti-CD31, anti-CD41, anti-CD13, anti-CD31, and anti-CD43.
- 6. The optical bio-disc according to claim 1 wherein said capture zone is coated with a capture agent.
- 7. The optical bio-disc according to claim 6 wherein said capture agent is selected from the group comprising monoclonal antibodies, polyclonal antibodies, oligonucleotides, ligands, receptors, and binding agents.
- 8. The optical bio-disc according to claim 7 wherein said monoclonal antibodies is selected from the group comprising anti-CD4, anti-CD8, and anti-CD2.
- 9. The optical bio-disc according to claim 1 further comprising a lysis buffer reservoir, a lysis channel connecting said lysis buffer reservoir with said mixing chamber, and a lysis buffer valve located in said lysis channel; said lysis buffer reservoir being pre-filled with a lysis buffer.
- 10. The optical bio-disc according to claim 9 further comprising an analysis buffer reservoir, a buffer channel connecting said analysis buffer reservoir with said purification chamber, and an analysis buffer valve located in said buffer channel; said analysis buffer reservoir being pre-filled with an analysis buffer.
- 11. The optical bio-disc according to claim 10 further comprising a waste chamber in fluid communication with said analysis chamber and said vent port.
- 12. The optical bio-disc of claim 11 further comprising a sample mix valve located in the fluidic circuit connecting said mixing chamber and said purification chamber.
- 13. The optical bio-disc according to any of claims 1, 2, 3, 4, 5, 6, 7, or 8 further comprising a RBC capture zone connecting said mixing chamber and said purification chamber such that when a sample is loaded into the mixing chamber, the sample flows through said RBC capture zone prior to entering said purification chamber.
- 14. The optical bio-disc according to claim 13 wherein said RBC capture zone includes pier posts distributed throughout said RBC capture zone.
- 15. The optical bio-disc according to claim 14 wherein said RBC capture zone is coated with a RBC capture agent.
- 16. The optical bio-disc according to claim 15 wherein said RBC capture agent is lectin.
- 17. A method of using the optical bio-disc according to claim 12 for performing a cellular assay, said method of using comprising the steps of:
loading a whole blood sample into said mixing chamber through said inlet port; loading the bio-disc into an optical reader; rotating the bio-disc at a first speed sufficient to open said lysis buffer valve and release said lysis buffer into said mixing chamber containing the blood sample; incubating said sample in said lysis buffer for a sufficient time to allow lysis of red blood cells in the sample; rotating the bio-disc at a second speed sufficient to open said sample mix valve and allow movement of said sample into and through said purification chamber, where unwanted cells are captured, and into said analysis chamber where specific cells are captured on the capture zone; directing an incident beam of electromagnetic radiation to the capture zone; detecting said beam of electromagnetic radiation formed after interacting with the disc at the capture zone; converting the detected beam into an output signal; and analyzing the output signal to extract therefrom information relating to the number of cells captured at the capture zone.
- 18. A method of using the optical bio-disc according to claim 16 for a cellular assay, said method of using comprising the steps of:
loading a whole blood sample into said mixing chamber through said inlet port; loading the bio-disc into an optical reader; rotating the bio-disc at a sufficient speed and time to move said sample through said RBC capture zone where red blood cells in the sample are captured, through said purification zone where unwanted cells in the sample are captured, and through said analysis chamber where specific cells are captured on the capture zone; directing an incident beam of electromagnetic radiation to the capture zone; detecting a beam of electromagnetic radiation formed after interacting with the disc at the capture zone; converting the detected beam into an output signal; and analyzing the output signal to extract therefrom information relating to the number of cells captured at the capture zone.
- 19. An optical bio disc for conducting a cellular assay, said optical bio-disc comprising:
a rotatable substrate; a microfluidic cassette attached to said substrate; and a fluidic circuit formed within said microfluidic cassette.
- 20. The optical bio-disc according to claim 19 wherein said microfluidic cassette is formed from plates having various cut-out sections to form the various components of said fluidic circuit including an inlet port, mixing chamber, flow channel, and purification chamber when the plates are assembled to form the microfluidic cassette.
- 21. The optical bio-disc according to claim 20 wherein said purification chamber is filled with a filter means.
- 22. The optical bio-disc according to claim 21 further comprising:
a cap portion associated with said substrate; and an analysis chamber having capture zones formed between said cap portion and said substrate; said analysis chamber in fluid communication with said purification chamber.
- 23. An optical disc and drive system for receiving a sample, the system comprising:
a bio-disc comprising:
a substrate, a cap parallel to the substrate, a mixing chamber, purification chamber, and analysis chamber defined therebetween, said analysis chamber having capture zones; and a capture layer over the substrate at the capture zones, such that a first capture zone has a first cell capture agent and a second capture zone has a second cell capture agent; an optical disc drive comprising:
a light source for directing light to the disc at the capture zones, a detector for detecting light reflected from or transmitted through the disc at the capture zones and providing a signal; and a processor for using the signal to count items in the sample bound to the capture molecules.
- 24. A method of making an optical bio-disc for use in cellular assays, said method of making comprising the steps of:
forming a rotatable optical disc substrate; forming a cover disc with similar dimensions to said substrate; forming a channel layer with cut out portions to form fluidic circuits; said fluidic circuits including an inlet port, a mixing chamber, a purification chamber, an analysis chamber, and a vent port; said analysis chamber including capture zones; binding capture probes onto said capture zones; attaching said channel layer to said substrate; loading a filter means into said purification chamber; attaching said cover disc to said channel layer to thereby form the optical bio-disc.
- 25. The method of claim 24 wherein said attaching steps are achieved by techniques selected from the group comprising adhesives and plastic welding.
- 26. The method of claim 24 wherein said filter means is selected from the group consisting of microspheres and cellular sieves.
- 27. The method of claim 26 wherein said filter means is coated with a purification agent.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. application Ser. No. 09/988,728 filed Nov. 20, 2001.
[0002] This application also claims the benefit of priority from U.S. Provisional Application Serial Nos. 60/349,392 filed Jan. 17, 2002; 60/349,449 filed Jan. 18, 2002; 60/355,644 filed Feb. 5, 2002; 60/358,479 filed Feb. 19, 2002; and 60/382,327 filed May 22, 2002. These applications are herein incorporated by reference in their entireties.
Provisional Applications (5)
|
Number |
Date |
Country |
|
60349392 |
Jan 2002 |
US |
|
60349449 |
Jan 2002 |
US |
|
60355644 |
Feb 2002 |
US |
|
60358479 |
Feb 2002 |
US |
|
60382327 |
May 2002 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09988728 |
Nov 2001 |
US |
Child |
10293214 |
Nov 2002 |
US |