Claims
- 1. A multi-capillary electrophoresis apparatus comprising:
a multi-capillary array having a separation medium filled therein for isolating a sample and comprising a first sample injecting end at one end and a second end; a detector component for acquiring information from the sample in the multi-capillary array at a position remote from the sample injecting end; a voltage applying component for applying a voltage to an electrification path comprising the sample injecting end and the detector component; a temperature regulated chamber containing substantially all of the multi-capillary array except for the first sample injecting end and the second end; a buffer container containing a buffer solution into which the sample injecting end is immersed; and a temperature controlling part capable of controlling a temperature of the buffer solution.
- 2. The multi-capillary electrophoresis apparatus of claim 1, wherein the temperature controlling part comprises a heater in contact with the buffer container.
- 3. The multi-capillary electrophoresis apparatus of claim 1, wherein the detector component comprises a photon accepting unit capable of receiving emission light generated upon irradiating the sample with excitation light.
- 4. The multi-capillary electrophoresis apparatus of claim 1, further comprising additional temperature controlling parts capable of heating portions of the apparatus to temperatures different from a temperature of the temperature regulated chamber.
- 5. The multi-capillary electrophoresis apparatus of claim 1, wherein the voltage applying component surrounds the sample injecting end of each capillary of the multi-capillary array and the apparatus is free of an air gap between the capillaries and the voltage applying component.
- 6. A multi-capillary electrophoresis apparatus comprising:
a multi-capillary array having a separation medium filled therein for isolating a sample and comprising a sample injecting end on one end thereof and a second end; a detector component for acquiring information from the sample in the multi-capillary array at a position remote from the sample injecting end and between the sample injecting end and the second end; a voltage applying component for applying a voltage to an electrification path comprising the sample injecting end and the detector component; a temperature regulated chamber containing substantially all of the multi-capillary array except for at least a portion of the multi-capillary array in a vicinity of the detector component; a first temperature controlling part capable of controlling a temperature of the multi-capillary array in the vicinity of the detector component; and a separate second temperature controlling part capable of controlling a temperature of the multi-capillary array located beyond the detector component.
- 7. The multi-capillary electrophoresis apparatus of claim 6, wherein the first temperature controlling part comprises a heater arranged in a vicinity of the detector component.
- 8. The multi-capillary electrophoresis apparatus of claim 6, further comprising additional temperature controlling parts capable of heating portions of the apparatus to temperatures different from a temperature of the temperature regulated chamber.
- 9. A multi-capillary electrophoresis apparatus comprising:
a multi-capillary array having a separation medium filled therein for isolating a sample, and comprising a sample injecting end on one end thereof; a detector component for acquiring information from the sample in the multi-capillary array at a position remote from the sample injecting end; a voltage applying component for applying a voltage to an electrification path comprising the sample injecting end and the detector component; a temperature regulated chamber containing substantially all the multi-capillary array except for at least the sample injecting end and a portion of the multi-capillary array in the vicinity of the detector component; a buffer container containing a buffer solution into which the sample injecting end is immersed; a first temperature controlling part capable of controlling a temperature of the buffer solution; and a second temperature controlling part capable of controlling a temperature of the detector component.
- 10. The multi-capillary electrophoresis apparatus of claim 9,
wherein the first temperature controlling part comprises a first heater for heating the buffer solution and a first sensor for measuring a temperature of the buffer solution, and the second temperature controlling part comprises a heater for heating the detector component and a second sensor for measuring a temperature of the detector component.
- 11. The multi-capillary electrophoresis apparatus of claim 9, further comprising a separate third temperature controlling part capable of controlling a temperature of the multi-capillary array located beyond the detector component.
- 12. The multi-capillary electrophoresis apparatus of claim 9, further comprising additional temperature controlling parts capable of heating portions of the apparatus to temperatures different from a temperature of the temperature regulated chamber.
- 13. A multi-capillary electrophoresis apparatus comprising:
a multi-capillary array having a separation medium filled therein for isolating a sample, and comprising a sample injecting end at one end thereof; a detector component for acquiring information from the sample in the multi-capillary array at a position remote from the sample injecting end and between the sample injecting end and the second end; a voltage applying device for applying a voltage to an electrification path comprising the sample injecting end and the detector component; a temperature regulated chamber containing substantially all the multi-capillary array except for at least a portion of the multi-capillary array in the vicinity of the detector component; a first temperature controlling part capable of controlling a temperature in a vicinity of an outlet of the temperature regulated chamber on a side of the detector component; and a separate second temperature controlling part capable of controlling a temperature of the multi-capillary array located beyond the detector component.
- 14. The multi-capillary electrophoresis apparatus of claim 13, further comprising additional temperature controlling parts capable of heating portions of the apparatus to temperatures different from a temperature of the temperature regulated chamber.
- 15. A multi-capillary electrophoresis apparatus comprising:
a multi-capillary array having a separation medium filled therein for isolating a sample, and comprising a sample injecting end on one end thereof; a detector component for acquiring information from the sample in the multi-capillary array at a position remote from the sample injecting end; a voltage applying component for applying a voltage to an electrification path comprising the sample injecting end and the detector component; a temperature regulated chamber containing substantially all of the multi-capillary array; a polymer block arranged outside the temperature regulated chamber for changing the separation medium in the capillary array; and a temperature controlling part capable of controlling a temperature of the polymer block.
- 16. The multi-capillary electrophoresis apparatus of claim 15, further comprising additional temperature controlling parts capable of heating portions of the apparatus to temperatures different from a temperature of the temperature regulated chamber.
- 17. A multi-capillary electrophoresis apparatus comprising:
a multi-capillary array having a separation medium filled therein for isolating a sample, and comprising a sample injecting end on one end thereof; a detector component for acquiring information from the sample in the multi-capillary array at a position remote from the sample injecting end; a voltage applying component for applying a voltage to an electrification path comprising the sample injecting end and the detector component; a temperature regulated chamber containing substantially all of the multi-capillary array; a flow path connected to the multi-capillary array situated beyond the detector component and having the separation medium filled therein; and a separate temperature controlling part capable of controlling a temperature of the flow path.
- 18. The multi-capillary electrophoresis apparatus of claim 17, further comprising additional temperature controlling parts capable of heating portions of the apparatus to temperatures different from a temperature of the temperature regulated chamber.
- 19. A multi-capillary electrophoresis apparatus comprising:
a multi-capillary array having a separation medium filled therein for isolating a sample, and comprising a sample injecting end on one end thereof; a detector component for acquiring information from the sample in the multi-capillary array at a position remote from the sample injecting end; a voltage applying component for applying a voltage to an electrification path comprising the sample injecting end and the detector component; a temperature regulated chamber containing substantially all of the multi-capillary array; a flow path connected to the multi-capillary array and having the separation medium filled therein; a buffer container containing a buffer solution into which the flow path is immersed; and a temperature controlling part capable of controlling a temperature of the buffer solution.
- 20. The multi-capillary electrophoresis apparatus of claim 19, wherein the temperature controlling part comprises a heater in contact with the buffer container.
- 21. The multi-capillary electrophoresis apparatus of claim 19, wherein the detector component comprises a photon accepting unit capable of receiving emission light generated upon irradiating the sample with excitation light.
- 22. The multi-capillary electrophoresis apparatus of claim 19, further comprising additional temperature controlling parts capable of heating portions of the apparatus to temperatures different from a temperature of the temperature regulated chamber.
- 23. A method of multi-capillary electrophoresis, comprising:
providing the multi-capillary electrophoresis apparatus of claim 19, immersing the sample injecting end of the multi-capillary array into a buffer solution; conducting an electrophoresis prerun with the sample injecting end of the array immersed in the buffer solution; withdrawing the sample injecting end of the array from the buffer solution; removing a minor portion of the separation medium from the sample injecting end of the array; and immersing the sample injecting end in a sample.
Priority Claims (1)
Number |
Date |
Country |
Kind |
P2001-370349 |
Dec 2001 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] The present application is a Continuation-In-Part application of U.S. patent application Ser. No. 10/245,492 filed Sep. 18, 2002, entitled “Multi-Capillary Electrophoresis Apparatus” in the name of Miho Ozawa et al., which claims a priority benefit from Japanese Patent Application No. P2001-370349, filed Dec. 4, 2001, all of which are incorporated herein in their entireties by reference.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10245492 |
Sep 2002 |
US |
Child |
10309729 |
Dec 2002 |
US |