CA2306501C

Precision fluorescently dyed particles and methods of making and using same

Abstract

An improved method of making a series of bead or microsphere or particle populations characterized by subtle variation in a proportion or ratio of at least two fluorescent dyes distributed within a single bead of each population is provided. These beads, when excited by a single excitation light source are capable of giving off several fluorescent signals simultaneously. A set containing as many as 64 distinct populations of multicolored, fluorescent beads is provided and when combined with analytical reagents bound to the surface of such beads is extremely useful for multiplexed analysis of a plurality of analytes in a single sample. Thus, methods of staining polymeric particles, the particles themselves, and methods of using such particles are claimed.

CA2306501C, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Expired 14 October 2018, 7.9 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

40 claims: 3 independent, 37 dependent

  1. 1
    CA 02306501 2010-03-16 WHAT IS CLAIMED IS:1. A méthod of staining polymeric microspheres with two or more fluorescent dyes comprising: (a) combining at least two fluorescent dyes in a solvent mixture to provide a solution of mixed dyes which is further characterized as having the capacity to swell at least partially, but not dissolve, a plurality of dehydrated polymeric microspheres brought into contact with said solution;(b) contacting the plurality of dehydrated polymeric microspheres with said solution for a period of time sufficient to provide uniform staining of substantially all 10 of the members of said plurality of polymeric microspheres with the at least two fluorescent dyes, said at least two fluorescent dyes being selected such that on isolation and excitation of said dyed plurality of polymeric microspheres, a distinct fluorescence signal is emitted from each dye, the intensity of which emitted signal is proportional to the amount of said dye in said dyed plurality of polymeric microspheres.
  2. 20
    A population of polymeric microspheres substantially uniformly stained with at least two fluorescent dyes by contacting a plurality of dehydrated polymeric microspheres with a solution comprising the at least two fluorescent dyes, wherein upon excitation each of the uniformly stained microspheres within said population exhibits at least two distinct fluorescence emission signals corresponding to the at CA 02306501 2010-03-16 least two fluorescent dyes, wherein the intensity of each of said at least two emitted signals (i) is proportional to the amount of its corresponding dye in said microsphere, and (ii) exhibits a coefficient of variation among all the members of said population, which is no greater than 20 percent.
  3. 40
    A method of detecting a plurality of analytes in a sample, each of said 20 analytes being recognized by a corresponding analytical reactant, wherein the method comprises:(a) contacting said sample with a plurality of populations of uniformly stained microspheres, wherein the microspheres of each population are uniformly stained by dehydrating the microspheres prior to contacting the dehydrated microspheres CA 02306501 2010-03-16 with at least two fluorescent dyes that have been uniformly mixed at a specific ratio within each microsphere of each said population, wherein each population of said microspheres has a distinct analytical reactant bound to its surface, and wherein said reactant on each population of microspheres specifically interacts with one of said analytes in said sample;(b) providing a label reagent that specifically binds to the analyte and analyzing the microspheres to detect said label indicating binding of the analyte to the analytical reactant;and (c) determining the populations of microspheres having said fluorescent dyes 10 mixed at the specific ratio within microspheres of each population to which the reactant is bound.