Spatial positioning of spectrally labeled beads
Devices, systems, kits, and methods for detecting and/or identifying a plurality of spectrally labeled bodies well-suited for performing multiplexed assays. By spectrally labeling the beads with materials which generate identifiable spectra, a plurality of beads may be identified within the fluid. Reading of the beads is facilitated by restraining the beads in arrays, and/or using a focused laser.
1. A multiplex assay, comprising:
an assay substrate; and
a plurality of spectrally labeled bodies affixed to the assay substrate in a spatially resolved configuration, wherein each of the spectrally labeled bodies includes a plurality of different markers used to encode discrete and different emission spectra, wherein each emission spectrum has a plurality of signals at differing wavelengths.
2. The multiplex assay of claim 1 wherein the spectrum identifies each of the spectrally labeled bodies.
3. The multiplex assay of claim 1 wherein the markers are fluorescent labels.
4. The multiplex assay of claim 1 wherein the markers are nanocrystals.
5. The multiplex assay of claim 1 wherein the spectrally labeled bodies are affixed via an affinity binding complex.
6. The multiplex assay of claim 5 wherein the spectrally labeled bodies are affixed via a binding pair.
7. The multiplex assay of claim 6 wherein the binding pair includes a biotinylated structure.
8. A multiplex assay apparatus, comprising:
a sample container holding a sample fluid containing a plurality of spectrally labeled bodies; and
a fluidics assembly configured to wash away spectrally labeled bodies not bound to an identifiable substance, transfer the bound spectrally labeled bodies to a reading container and affix the bound spectrally labeled bodies to the reading container in a spatially resolved configuration, wherein each of the bound spectrally labeled bodies includes a plurality of different markers used to encode discrete and different emission spectra, wherein each emission spectrum has a plurality of signals at differing wavelengths.
9. The multiplex assay apparatus of claim 8 wherein the affixation is via affinity binding.
10. The multiplex assay apparatus of claim 8 wherein the identifiable substance is a biological material.
11. A method for making a multiplex assay, comprising:
affixing a plurality of spectrally labeled bodies to an assay substrate in a spatially resolved configuration, wherein each of the spectrally labeled bodies include a plurality of different markers used to encode discrete and different emission spectra, wherein each emission spectrum has a plurality of signals at differing wavelengths.
12. The method for making the multiplex assay of claim 11 further comprising the step of binding the spectrally labeled bodies to an identifiable substance.
13. The method for making the multiplex assay of claim 12 further comprising the step of transferring the bound spectrally labeled bodies to the assay substrate.
14. The method for making the multiplex assay of claim 13 further comprising the step of washing away spectrally labeled bodies not bound to the identifiable substance.
15. The method for making the multiplex assay of claim 12 wherein the identifiable substance is a biological material.
16. The method for making the multiplex assay of claim 11 wherein the markers are fluorescent labels.
17. The method for making the multiplex assay of claim 11 wherein the affixing step occurs via an affinity binding complex.
18. The method for making the multiplex assay of claim 11 wherein the affixing step occurs via an affinity binding pair.
19. The method for making the multiplex assay of claim 18 wherein the affinity binding pair includes a biotinylated structure.
20. The method for making the multiplex assay of claim 11 wherein the spectrum identifies each of the spectrally labeled bodies.