Claims
- 1. A nanotube to which is attached a component linked to a label compound capable of being induced to luminesce.
- 2. A nanotube according to claim 1, wherein said nanotube is graphitic and said luminescence is electrochemiluminescence.
- 3. A graphitic nanotube according to claim 1, wherein said component is an enzyme biosensor.
- 4. A composition for the detection of an analyte of interest present in a sample, which composition comprises:
(i) a graphitic nanotube containing a functional group and (ii) an assay-performance-substance linked to said functional group, said assay-performance-substance being capable of binding to the analyte-of-interest.
- 5. A composition for the detection of an analyte of interest present in a sample, which composition comprises:
(i) a graphitic nanotube containing a functional group and (ii) an assay-performance-substance linked to said functional group, said assay-performance-substance being bound to the analyte of interest.
- 6. A composition according to claim 5, further comprising a second assay-performance-substance bound to the analyte, said second assay-performance-substance being linked to a label compound capable of being induced to luminesce.
- 7. A composition according to claim 4, wherein said assay-performance-substance contains at least one substance selected from the group consisting of
(i) added analyte of interest or added analogue of said analyte; (ii) a binding partner of said analyte or a binding partner of said analogue; and (iii) a reactive component capable of binding with the selected substance.
- 8. A composition according to claim 6, wherein said assay-performance-substance contains at least one substance selected from the group consisting of
(i) added analyte of interest or added analogue of said analyte; (ii) a binding partner of said analyte or a binding partner of said analogue; and (iii) a reactive component capable of binding with the selected substance.
- 9. A method for performing a binding assay for an analyte of interest present in a sample comprising the steps of:
(a) forming a composition containing
(i) said sample (ii) an assay-performance-substance linked to a label compound capable of being induced to luminesce, and (iii) a plurality of functionalized graphitic nanotubes bound to an assay-performance-substance; (b) incubating said composition to form a complex which includes a graphitic nanotube and said label compound; (c) collecting said complex in a measurement zone; (d) inducing the label compound in said complex to luminesce, and (e) measuring the emitted luminescence to measure the presence of the analyte of interest in the sample.
- 10. A method as recited in claim 9 wherein said complex is collected on the surface of means for inducing luminescence and measuring said luminescence.
- 11. A method as recited in claim 10 based upon measurement of electrochemiluminescence wherein said complex is collected at an electrode surface.
- 12. A method for performing a binding assay for an analyte of interest present in a sample based upon measurement of electrochemiluminescence at an electrode surface comprising the steps:
(a) forming a composition containing
(i) said sample (ii) an assay-performance-substance linked to a label compound capable of being induced to electrochemiluminesce, and (iii) a plurality of functionalized graphitic nanotubes bound to an assay-performance-substance; (b) incubating said composition to form a complex which includes a graphitic nanotube and said label compound; (c) collecting said complex; (d) causing said collected complex to come in contact with an electrode surface and inducing the label compound in said complex to luminesce by impressing a voltage on said electrode; and (e) measuring the emitted luminescence at the electrode surface to measure the presence of the analyte of interest in the sample
- 13. A method for performing a binding assay for an analyte of interest present in a sample based upon measurement of electrochemiluminescence at an electrode surface comprising the steps:
(a) forming a composition containing
(i) said sample (ii) an assay-performance-substance linked to a label compound capable of being induced to electrochemiluminesce, and (iii) a plurality of magnetically responsive suspended graphitic nanotubes bound to an assay-performance-substance; (b) incubating said composition to form a complex which includes a graphitic nanotube and said label compound; (c) collecting said complex by imposition of a magnetic field on said graphitic nanotubes; (d) causing said collected complex to come in contact with an electrode surface and inducing the label compound in said complex to luminescence by imposing a voltage on said electrode; and (e) measuring the emitted luminescence at the electrode surface to measure the presence of the analyte of interest in the sample.
- 14. A method as recited in claim 13 wherein the imposition of said magnetic field causes said complex to collect at the surface of said electrode.
- 15. A composition of matter for use as a reagent in a microparticulate-based binding assay comprising functionalized graphitic nanotubes bound to an assay- performance-substance and at least one other component selected from the group consisting of:
(a) electrolyte; (b) label compound containing an ECL moiety; (c) analyte of interest or an analog of the analyte of interest; (d) a binding partner of the analyte of interest or of its analog; (e) a reactive component capable of reacting with (c) or (d); (f) a reductant; and (g) an electrochemiluminescent-reaction enhancer; provided, however, that no two components contained within any reagent composition are reactive with one another during storage so as to impair their function in the intended assay.
- 16. A reagent as recited in claim 15 containing magnetically responsive graphitic nanotubes.
- 17. An assay reagent for an assay based upon a binding reaction and the measurement of an electrochemiluminescent phenomenon comprising:
(a) an electrolyte; (b) a plurality of magnetically responsive functionalized graphitic nanotubes bound to an assay-performance-substance; and (c) an assay-performance-substance bound to a chemical moiety having electrochemiluminescent properties.
- 18. A method for performing an assay for an analyte of interest present in a sample comprising the steps of:
(a) forming a composition containing
(i) said sample, and (ii) a functionalized graphitic nanotube bound to a component which is bound to a label compound capable of being induced to luminesce, wherein said component is a substrate of the analyte of interest; (b) incubating said composition under conditions to permit said analyte to cleave said component; (c) separating said graphitic nanotube from said composition; (d) inducing the free label compound to luminesce; and (e) measuring the emitted luminescence to measure the presence of the analyte of interest in the sample.
Parent Case Info
[0001] This application is a continuation-in-part of copending Massey et al. application Ser. No. 08/346,832 filed Nov. 30, 1994, which is a continuation of application Ser. No. 08/158,193, filed Nov. 24, 1993, which is a continuation of application Ser. No. 07/652,427 filed Feb. 6, 1991 and a continuation-in-part of application Ser. No. 07/539,389 filed Jun. 18, 1990, which is a continuation of application Ser. No. 7/266,882, now abandoned entitled Electrochemiluminescent Assays, filed Nov. 3, 1988. This application is also a continuation-in-part of copending Fischer et al. application Ser. No. 08/352,400 entitled Functionalized Nanotubes, filed Dec. 8, 1994. The subject matter of these applications is incorporated herein by reference.
Continuations (2)
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10007526 |
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08611347 |
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Continuation in Parts (1)
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