Claims
- 1. A flow-through immunosensor comprising:an entrance port for receiving a fluid buffer, said entrance port being machined in or molded and integrated with a monolithic substrate; a microcapillary passage machined in or molded and integrated with said monolithic substrate, said microcapillary passage having an inner diameter of less than about 1 mm and having antibodies immobilized on its inner wall, fluorescently labeled analogs of an antigen being immunologically bound to and saturating antigen-binding sites of said immobilized antibodies; a sample introduction port in fluid connection with said microcapillary passage; a detection cell downstream from and in fluid connection to said sample introduction port and joined to said microcapillary passage, said detection cell including; at least one window transparent to a wavelength of light that fluorescently excites said label, and at least one window transparent to a wavelength of light emitted by said excited label; and an exit port machined in and integral with said monolithic substrate, said exit port being downstream from and in fluid connection with said detection cell, said exit port providing a path for spent buffer and label to exit said monolithic substrate.
- 2. The flow-through immunosensor of claim 1, wherein said immunosensor further includes an electroosmotic pump that establishes buffer flow through said microcapillary passage, said electroosmotic pump being integral with said monolithic substrate.
- 3. The flow-through immunosensor of claim 1, wherein said immunosensor further includes a pneumatic pump that establishes buffer flow through said microcapillary passage.
- 4. The flow-through immunosensor of claim 1, wherein said immunosensor further includes a mechanical pump that establishes buffer flow through said microcapillary passage.
- 5. The flow-through immunosensor of claim 2 or 3 or 4, wherein said buffer flow has a linear flow velocity of about no more than about 105 cm/min.
- 6. A method of performing a displacement assay using a flow-through immunosensor, comprising the steps of:establishing a buffer flow through a microcapillary having an inner diameter of less than about 1 mm, said microcapillary passage having antibodies immobilized on its inner wall, and labeled analogs of an antigen immunologically bound to, and saturating antigen-binding sites of, said immobilized antibodies; introducing a liquid sample, said sample being suspected of containing said antigen, into an introduction port in said microcapillary passage; detecting, downstream from said introduction port and joined to said microcapillary passage, any of said bound labeled analogs displaced from said microcapillary passage by any molecules of said antigen present in said sample, wherein: said bound labeled antigen is fluorescently labeled; said microcapillary passage is machined or molded and integrated with said monolithic substrate; said detecting step is carried out in a detection cell that is machined in or molded and integrated with said monolithic substrate, said detection cell including at least one window transparent to a wavelength of light that fluorescently excites said label, and at least one window transparent to a wavelength of light emitted by said excited label; and an exit port is machined in or molded and integral with said monolithic substrate, said exit port being downstream from and in fluid connection with said detection cell, said exit port providing a path for spent buffer and label to exit said monolithic substrate.
- 7. The method of claim 6, wherein said buffer flow is established by an electroosmotic pump that is integral with said monolithic substrate.
- 8. The method of claim 6, wherein said buffer flow is established by a pneumatic pump.
- 9. The method of claim 6, wherein said buffer flow is established by a mechanical pump.
Parent Case Info
This application is a divisional application of prior application Ser. No. 08/845,894, filed Apr. 28, 1997, now issued as U.S. Pat. No. 6,020,209 on Feb. 1, 2000.
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