Methods and Compositions for Highly Sensitive Detection of Molecules
Disclosed are methods, kits, and compositions for the highly sensitive detection of molecules. The methods, kits, and compositions are useful in determining concentrations of molecules in samples to levels of 1 femtomolar, 1 attomolar, or lower. The methods, kits, and compositions also allow the determination of concentration over a wide range, e.g., 7-log range, without need for sample dilution.
1 - 49 . (canceled)
50 . A method for determining the concentration of a protein in a biological sample, comprising labeling a molecule of the protein with a label and detecting the concentration of the label in an analyzer, wherein label comprises a fluorescent moiety that is capable of emitting at least about 200 photons when simulated by a laser emitting light at the excitation wavelength of the moiety, wherein the laser is focused on a spot not less than about 5 microns in diameter that contains the moiety, and wherein the total energy directed at the spot by the laser is no more than about 3 microJoules, the method comprising:
(i) passing a portion of the sample through an interrogation space; and
(ii) subjecting the interrogation space to exposure to electromagnetic radiation, said electromagnetic radiation being sufficient to stimulate the fluorescent moiety to emit photons, if the label is present; and
(iii) detecting photons emitted during the exposure of step (ii).
51 . The method of claim 50 , further comprising determining a background photon level in said interrogation space, wherein the background level represents the average photon emission of the interrogation space when it is subjected to electromagnetic radiation in the same manner as in step (ii), but without label in the interrogation space.
52 . The method of claim 50 further comprising comparing the amount of photons detected in step (iii) to a threshold photon level, wherein the threshold photon level is a function of the background photon level, wherein an amount of photons detected in step (iii) greater that the threshold level indicates the presence of said label, and an amount of photons detected in step (iii) equal to or less than the threshold level indicates the absence of said label.