CA2842404C

Systems and methods to perform assays for detecting or quantifying analytes within samples

Abstract

An automated analyzer for performing multiple diagnostic assays simultaneously includes multiple stations in which discrete aspects of the assay are performed on fluid samples contained in sample vessels. The analyzer includes stations for automatically preparing a sample, incubating the sample, preforming an analyte isolation procedure, ascertaining the presence of a target analyte, and analyzing the amount of a target analyte. An automated receptacle transporting system moves the sample vessels from one station to the next. A method for performing an automated diagnostic assay includes an automated process for isolating and amplifying a target analyte, and, in one embodiment, a method for real-time monitoring of the amplification process.

CA2842404C, drawing sheet 1
Sheet 1 of 74

Term

Term ended

Expired 10 March 2026, 0.5 years ago.

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

2 claims: 2 independent, 0 dependent

  1. 1
    CA 02842404 2015-07-09 What is claimed is:1. A method for processing contents of multiple receptacles to quantitatively determine an amount of a target nucleic acid present in each of said receptacles, said method comprising the automated steps of: a) successively providing said receptacles to a temperature-controlled chamber of an incubator having a housing defining said temperature-controlled chamber, said housing including one or more closable receptacle access openings for moving the receptacles into and out of said incubator, each receptacle being provided with sample material and reagents sufficient to amplify and detect a presence of a target sequence, or its complement, contained within a target nucleic acid under the temperature conditions of said incubator, wherein successively providing the receptacles to said temperature-controlled chamber comprises, for each of the receptacles provided, opening one of said receptacle access openings and moving the receptacle through the opened receptacle access opening and into the temperature-controlled chamber and then closing the receptacle access opening, thereby permitting ambient light from within an analyzer to enter the temperature-controlled chamber of the incubator through the opened receptacle access opening;b) in said incubator, periodically measuring the amount of a signal associated with the presence of an amplification product containing said target sequence or its complement in each receptacle provided to said incubator in accordance with step a);c) quantifying the amount of said target nucleic acid present in each receptacle based upon said measurements obtained in step b);and d) successively removing receptacles from the temperature-controlled chamber, wherein successively removing the receptacles from said temperature-controlled chamber comprises, for each receptacle removed from said temperature-controlled chamber, opening one of said receptacle access openings and moving the receptacle through the opened receptacle access opening and out of said temperature-controlled chamber of said incubator and then closing the receptacle access opening, thereby permitting ambient light from within the analyzer to enter the temperature-controlled chamber of the incubator through the opened receptacle access opening, wherein receptacles are being successively provided to said incubator in accordance - 129CA 02842404 2015-07-09 CA2842404 with step a) as the contents of receptacles previously provided to said incubator are being processed in accordance with steps b)-c). 2. The method of claim 1, wherein said receptacles are provided to said incubator using an automated receptacle transport system. 3. The method of claim 2, wherein said receptacles having contents processed in accordance with steps a)-c) are successively removed from said incubator as said receptacles having contents for processing in accordance with steps a)-c) are successively provided to said incubator using said automated receptacle transport system. 4. The method of claim 2 to 3, wherein said automated receptacle transport system includes a first rotatable transport mechanism for providing said receptacles to said incubator. 5. The method of claim 4, wherein said automated receptacle transport system includes a second rotatable transport mechanism for removing said receptacles from said incubator. 6. The method of any one of claims 1 to 5, wherein said incubator includes a receptacle carrier rotatable about an axis of rotation. 7. The method of any one of claims 1 to 6, wherein said housing of said incubator includes one or more doors for selectively opening or closing the receptacle access openings. 8. The method of claim 7, wherein said incubator includes a rotatable receptacle carrier contained within said housing for receiving and moving receptacles within said incubator. 9. The method of any one of claims 1 to 8, wherein said reagents are provided to said receptacles after said receptacles are provided to said incubator. 10. The method of any one of claims 1 to 9, wherein said reagents include a primer or a promoter-primer, nucleoside triphosphates, and a nucleic acid polymerase capable of extending the 3' end of said primer or promoter-primer hybridized to said target nucleic acid under the temperature conditions of said incubator. -130CA 02842404 2015-07-09 11. The method of any one of claims 1 to 10, wherein said temperature conditions are isothermal. 12. The method of any one of claims 1 to 11, wherein said reagents include a selfhybridizing, detectably labeled probe that binds to said target sequence or its complement under the temperature conditions of said incubator, thereby permitting said probe to emit said signal. 13. The method of claim 12, wherein said probe includes an interacting label pair. 14. The method of claim 13, wherein said label pair includes a fluorescent moiety and a quencher moiety. 15. The method of any one of claims 1 to 14 further comprising simultaneously measuring said signal from each of a plurality of said receptacles. 16. The method of claim 15, wherein said signal is measured with a plurality of spaced-apart fluorescent signal detection devices operatively associated with said incubator. 17. The method of any one of claims 1 to 14 further comprising simultaneously measuring a different signal in each of a plurality of said receptacles, each of said different signals being associated with a different amplification product. 18. The method of claim 17, wherein said different signals are measured with a plurality of spaced-apart fluorescent signal detection devices operatively associated with said incubator and movable relative thereto. 19. The method of any one of claims 1 to 18 further comprising the automated step of exposing sample material present in each of said receptacles to reagents and conditions sufficient to remove amplification inhibitors from said receptacles prior to step a). 20. The method of claim 19, wherein said exposing step includes: providing a solid support material to each receptacle, said solid support material being capable of directly or indirectly binding said target nucleic acid;isolating said solid support material within each receptacle;-131 CA 02842404 2015-07-09 CA2 842404 removing at least a portion of said sample material from each receptacle;and washing said solid support material with a wash solution. 21. The method of claim 20, wherein said solid support material is a magnetically responsive particle and said isolating step is performed with magnets positioned adjacent said receptacles. 22. The method of any one of claims 19 to 21 further comprising transporting said receptacles to said incubator after said exposing step. 23. The method of any one of claims 1 to 22, wherein each receptacle is one of a plurality of integrally formed receptacles. 24. The method of any one of claims 1 to 23, wherein the steps of this method are all performed within a housing of a self-contained analyzer unit. 25. The method of claim 1, wherein said measuring is performed by using one or more signal measuring devices, each said signal measuring device having a portion thereof located outside said housing. 26. A system for processing contents of multiple receptacles to determine a presence of a target nucleic acid in each of said receptacles, said system comprising: (A) a temperature-controlled incubator comprising: (1) a housing defining an incubation chamber therein, said housing comprising a side wall and a top cover and having one or more receptacle access openings provided in said side wall for allowing lateral movement of a receptacle into or out of said incubation chamber through said receptacle access opening, the housing further includes a plurality of signal measuring openings;
  2. 2
    (2) a heat source in thermal communication with said incubation chamber; and (3) a receptacle carrier comprising a generally circular carousel mounted within said incubation chamber so as to be rotatable about an axis of rotation and including a plurality of receptacle stations positioned around a periphery of the carousel, each of said receptacle stations being constructed and arranged to carry at least one - 132CA 02842404 2015-07-09 receptacle, said receptacle carrier being constructed and arranged to present any of said plurality of receptacle stations in a receptacle transfer position with respect to said receptacle access openings; (B) a receptacle transport system including at least one transport mechanism constructed and arranged to transport receptacles laterally to or from said receptacle carrier through said receptacle access openings; (C) a plurality of signal measuring devices disposed at angularly-spaced positions with respect to the axis of rotation of said carousel, each signal measuring device being constructed and arranged to measure the amount of a signal emitted by the contents of a receptacle placed in operative proximity to said signal measuring device, each signal measuring device being constructed and arranged to measure a different signal emitted by the contents of a receptacle, and each signal measuring device being positioned with respect to said receptacle carrier such that receptacles carried on said receptacle carrier are successively moved into operative proximity to said signal measuring device as said receptacle carrier moves the receptacles within said incubation chamber, wherein each signal measuring device is located outside said incubation chamber in a position to measure, through one of said signal measuring openings, the amount of signal emitted by the contents of receptacles within said incubation chamber, and wherein said receptacle carrier is controlled so as to move receptacles within said incubation chamber to successively and periodically place receptacles carried thereby in operative proximity to each signal measuring device, and each signal measuring device is controlled so as to make periodic measurements of the amount of signal emitted by the contents of receptacles placed in operative proximity to said signal measuring device; (D) a plurality of signal measuring device transport mechanisms, each signal measuring device transport mechanism being constructed and arranged to move one of said signal measuring devices with respect to said receptacle carrier, wherein each receptacle station of said receptacle carrier is constructed and arranged to carry more than one receptacle aligned in a radial orientation with respect to the axis of rotation of said carousel, said receptacle carrier is constructed and arranged to successively present said receptacle stations in signal measuring positions with respect to said signal measuring devices, and each signal measuring device transport mechanism is constructed and arranged to move each corresponding signal measuring device with respect to said receptacle carrier in a generally radial - 133 CA 02842404 2015-07-09 CA2842404 direction with respect to the axis of rotation of said carousel to successively place said signal measuring device into operative proximity to each of the receptacles carried in said receptacle station moved into the signal measuring position corresponding to said signal measuring device; and (E) a microprocessor adapted to quantify the amount of a different target nucleic acid in the receptacles based upon the periodic measurements made by each said signal measuring device. 27. The system of claim 26, wherein each receptacle station comprises a radiallyoriented, open-ended slot formed in said carousel. 28. The system of claim 26 or 27, wherein each signal measuring device comprises a fluorometer constructed and arranged to measure a fluorometric emission from the contents of a receptacle, wherein each fluorometer measures a fluorometric emission having a different wavelength. 29. The system of claim 28, wherein each fluorometer comprises:an excitation component constructed and arranged to direct excitation energy at the receptacle, wherein the excitation component of each fluorometer directs an excitation energy of a different wavelength at the receptacle;and a detection component constructed and arranged to detect the amount of emission energy from the contents of the receptacle, wherein the detection component of each fluorometer detects an emission energy of a different wavelength. 30. The system of claim 29, wherein said excitation component includes an excitation light housing and an excitation lens housing and said detection component includes a detection lens housing, and wherein said excitation light housing and said detection lens housing are in spaced-apart relative positions, and said excitation lens housing extends between said excitation light housing and said detection lens housing. 31. The system of any one of claims 28 to 30, wherein said fluorometer comprises a light emitting element adapted to emit excitation light;- 134CA 02842404 2015-07-09 optical elements defining a first optical path, a second optical path, and a third optical path;a beam splitter;and a light detecting element, and wherein: said light emitting element is operatively positioned relative to said first optical path, which is constructed and arranged to transmit at least a portion of the excitation light emitted by said light emitting element, said beam splitter is operatively positioned relative to said first optical path and said second optical path and is constructed and arranged to receive the excitation light transmitted by said first optical path and to direct at least a portion of the received excitation light having desired excitation spectral components to said second optical path, said second optical path being positioned relative to a receptacle in operative proximity to the fluorometer so that said second optical path directs the light having desired excitation spectral components toward the receptacle, and said second optical path receives at least a portion of any fluorometric light emitted by the contents of the receptacle and directs the received portion toward said beam splitter, said beam splitter is operatively positioned relative to said third optical path and is constructed and arranged to receive the fluorometric light transmitted by said second optical path and to direct at least a portion of the received light having desired emission spectral components to said third optical path, and said light detecting element is operatively positioned relative to said third optical path, which is constructed and arranged to transmit at least a portion of the light having desired emission spectral components toward said light detecting element. 32. The system of claim 31, wherein the optical elements of said first optical path are further constructed and arranged to substantially remove any unwanted spectral components of the light transmitted from the light emitting element. 33. The system of claim 31 or 32, wherein the optical elements of said first optical path are further constructed and arranged to condition the light transmitted from said light emitting element so that the light received by said beam splitter from said first optical path is -135CA 02842404 2015-07-09 i CA2842404 substantially within a prescribed excitation angle range with respect to an optic axis of said first optical path. 34. The system of any one of claims 31 to 33, wherein the optical elements of said first optical path comprise: a light pipe having a receiving end operatively positioned with respect to said light emitting element to receive at least a portion of the excitation light emitted by said light emitting element and to transmit the excitation light received from said receiving end to an opposed end of said light pipe;a mirror positioned and oriented so as to redirect light emitted by the opposed end of said light pipe;one or more lenses positioned so as to receive light redirected by said mirror and constructed and arranged to collimate the light received to substantially within a prescribed excitation angle range;an excitation baffle positioned to receive light collimated by said one or more lenses and constructed and arranged to block substantially all light not within the prescribed excitation angle range;and an excitation filter positioned to receive light passing through said baffle and constructed and arranged to substantially remove unwanted spectral components of the excitation light transmitted from said light emitting element. 35. The system of any one of claims 31 to 34, wherein the optical elements of said third optical path are constructed and arranged to eliminate at least a portion of any unwanted spectral components of the light transmitted toward the light detecting element. 36. The system of any one of claims 31 to 35, wherein the optical elements of said third optical path are further constructed and arranged to condition the light transmitted from said beam splitter so that the light received by said light detecting element from said third optical path is substantially within a prescribed detection angle range with respect to an optic axis of said third optical path. -136CA 02842404 2015-07-09 i 37. The system of any one of claims 31 to 36, wherein the optical elements of said third optical path comprise: an emission baffle positioned to receive light transmitted from said beam splitter and constructed and arranged to block substantially all light not within a prescribed detection angle range;an emission filter positioned to receive light passing through said emission baffle and constructed and arranged to substantially remove unwanted spectral components of the light transmitted toward said light detecting element;and at least one lens constructed and arranged to focus light passing though said emission filter toward said light detecting element. 38. The system of any one of claims 31 to 37, wherein said light emitting element and said light detecting element are connected to a circuit board. 39. The system of any one of claims 31 to 38, wherein said beam splitter comprises a dichroic beam splitter. 40. The system of claim 39, wherein said first, second, and third optical paths include first, second, and third optical axes, respectively, and (a) said first optical axis is generally perpendicular to said second optical axis, (b) said second and third optical axes are generally coaxial, and (c) said dichroic beam splitter is oriented at an angle of about 45 degrees with respect to said first, second, and third optical axes. 41. The system of any one of claims 26 to 40, further comprising: a signal detection device constructed and arranged to detect a signal emitted by the contents of a receptacle placed in operative proximity to said signal detection device, said signal detection device being positioned outside said incubation chamber, wherein said receptacle transport system is further constructed and arranged to successively transport receptacles to said signal detection device following incubation of the receptacles within said incubator. -137CA 02842404 2015-07-09 ι 42. The system of claim 41, wherein said signal detection device comprises a luminometer constructed and arranged to detect a chemiluminescent emission from the contents of a receptacle. 43. The system of any one of claims 26 to 42, wherein said receptacle carrier further comprising magnetic dividers, each being disposed adjacent to one of the receptacles stations, said magnetic dividers each including one or more magnetic elements for exposing a receptacle carried in the adjacent receptacle station to a magnetic field. 44. A system configured to process contents of multiple receptacles to determine an amount of a first target nucleic acid present in samples contained in a first group of receptacles and to ascertain a presence or absence of a second target nucleic acid in samples contained in a second group of receptacles, said system comprising: (A) at least one temperature-controlled incubator having a housing defining a temperature-controlled chamber configured to hold a plurality of receptacles, said housing including one or more closable receptacle access openings for moving the receptacles into and out of said incubator;(B) a nucleic acid quantification system including a signal measuring device constructed and arranged to measure a signal emitted by the contents of a receptacle held within said temperature-controlled chamber and placed in operative proximity to said signal measuring device, said nucleic acid quantification system being constructed and arranged to determine the amount of the first target nucleic acid within each receptacle of the first group of receptacles held within said temperature-controlled chamber during a nucleic acid amplification process by: (1) periodically measuring the amount of a signal emitted by the contents of each receptacle with said signal measuring device;and (2) quantifying the amount of the first target nucleic acid present in each receptacle based upon the periodic measurements;(C) a nucleic acid detection system, distinct from said nucleic acid quantification system and said incubator and including a signal detecting device constructed and arranged to detect a signal emitted by the contents of a receptacle placed in operative proximity to said signal detecting device within a detection chamber distinct from said incubator, said nucleic acid detection system being constructed and arranged to ascertain the presence of the second target -138CA 02842404 2015-07-09 CA2842404 nucleic acid within each receptacle of the second group of receptacles after the receptacle is transferred from said incubator to said detection chamber after an end-point nucleic acid amplification assay by: (1) detecting a signal emitted by the contents of each receptacle transferred to said detection chamber with said signal detecting device;and (2) ascertaining the presence or absence of the second target nucleic acid in the receptacle based upon whether or not a signal above a threshold level is detected;and (D) a receptacle transport system configured and controlled to: (1) successively transport a plurality of receptacles to said incubator, by, for each of the receptacles transported to said incubator, opening one of said receptacle access openings and moving the receptacle through the opened receptacle access opening and into said temperature-controlled chamber and then closing the receptacle access opening, thereby permitting ambient light to enter the temperature-controlled chamber of the incubator through the opened receptacle access opening, (2) successively remove receptacles from said incubator after completion of an amplification reaction within the receptacles by, for each receptacle removed from said incubator, opening one of said receptacle access openings and moving the receptacle through the opened receptacle access opening and out of said incubator and then closing the receptacle access opening, thereby permitting ambient light to enter the temperaturecontrolled chamber of the incubator through the opened receptacle access opening, and (3) successively move each receptacle removed from the incubator and belonging to the second group of receptacles to said detection chamber and into operative proximity to said signal detecting device, wherein said receptacle transport system is configured and controlled to successively transport receptacles to said incubator and successively remove receptacles from said incubator while said nucleic acid quantification system determines the amount of the first target nucleic acid within each receptacle of the first group of receptacles held within said temperature-controlled chamber during the nucleic acid amplification process. 45. The system of claim 44, wherein said receptacle transport system comprises a transport mechanism rotatable about an axis of rotation. -139CA 02842404 2015-07-09 CA2 842404 46. The system of claim 44 or 45 further comprising a signal measuring device transport mechanism constructed and arranged to move said signal measuring device into operative proximity with respect to a receptacle disposed within said temperature-controlled chamber. 47. The system any one of claims 44 to 46, wherein said signal measuring device comprises a fluorometer constructed and arranged to measure a fluorometric emission from the contents of a receptacle. 48. The system of any one of claims 44 to 47, wherein said signal detecting device comprises a luminometer constructed and arranged to detect a chemiluminescent emission from the contents of a receptacle. 49. The system of any one of claims 44 to 48, wherein said nucleic acid quantification system and said nucleic acid detection system are contained within an instrument housing. 50. The system of claim 49, wherein said signal measuring device and said signal detecting device are situated on a processing deck within said instrument housing. 51. The system of claim 50, wherein said instrument housing defines a self- contained, stand-alone analyzer unit. 52. The system of claim 51, wherein the analyzer unit is movable. 53. The system of any one of claims 44 to 52, wherein: said temperature-controlled incubator includes a receptacle carrier disposed within said temperature-controlled chamber and including a plurality of receptacle stations, each of said receptacle stations being constructed and arranged to carry at least one receptacle, and said signal measuring device is positioned with respect to said receptacle carrier such that receptacles carried on said receptacle carrier are successively moved into operative proximity to said signal measuring device as said receptacle carrier moves the receptacles within said temperature-controlled chamber, and wherein said receptacle carrier is controlled so as to move receptacles within an incubation chamber to successively and periodically place receptacles carried thereby in -140CA 02842404 2015-07-09 CA2 842404 operative proximity to said signal measuring device, and said signal measuring device is controlled so as to make periodic measurements of the amount of signal emitted by the contents of receptacles placed in operative proximity to said signal measuring device. 54. The system of any one of claims 44 to 53, said nucleic acid quantification system further comprising a microprocessor adapted to quantify the amount of the target nucleic acid in the receptacles based upon the periodic measurements made by said signal measuring device. 55. The system of claim 53 or 54, said nucleic acid quantification system further comprising: a signal measuring device transport mechanism constructed and arranged to move said signal measuring device with respect to said receptacle carrier, wherein each receptacle station of said receptacle carrier is constructed and arranged to carry more than one receptacle, said receptacle carrier is controlled so as to successively present said receptacle stations in a signal measuring position with respect to said signal measuring device, and said signal measuring device transport mechanism is controlled so as to move said signal measuring device with respect to said receptacle carrier to successively place said signal measuring device into operative proximity to each of the receptacles carried in said receptacle station moved into the signal measuring position. 56. The system of claim 53 or 54, said nucleic acid quantification system comprising more than one signal measuring device, each signal measuring device being constructed and arranged to measure a different signal emitted by the contents of a receptacle. 57. The system of claim 56, said nucleic acid quantification system further comprising: a signal measuring device transport mechanism constructed and arranged to move said signal measuring devices with respect to said receptacle carrier, wherein each receptacle station of said receptacle carrier is constructed and arranged to carry more than one receptacle, said receptacle carrier is constructed and arranged to successively present said receptacle stations in signal measuring positions with respect to said signal measuring devices, and said signal measuring device transport mechanism is constructed -141 CA 02842404 2015-07-09 CA2842404 and arranged to move each of said signal measuring devices with respect to said receptacle carrier to successively place said signal measuring device into operative proximity to each of the receptacles carried in said receptacle station moved into the signal measuring position corresponding to the signal measuring device. 58. The system of claim 53 or 54, wherein said receptacle carrier comprises a generally circular carousel mounted within said incubation chamber so as to be rotatable about an axis of rotation, wherein said receptacle stations are positioned around a periphery of said carousel. 59. The system of claim 58, said nucleic acid quantification system further comprising: a signal measuring device transport mechanism constructed and arranged to move said signal measuring device with respect to said receptacle carrier, wherein each receptacle station of said receptacle carrier is constructed and arranged to carry more than one receptacle aligned in a radial orientation with respect to the axis of rotation of said carousel, said receptacle carrier is constructed and arranged to successively present said receptacle stations in a signal measuring position with respect to said signal measuring device, and said signal measuring device transport mechanism is constructed and arranged to move said signal measuring device in a generally radial direction with respect to the axis of rotation of said carousel to successively place said signal measuring device into operative proximity to each of the receptacles carried in said receptacle station moved into the signal measuring position. 60. The system of any one of claims 44 to 46, wherein said signal measuring device comprises a fluorometer constructed and arranged to measure a fluorometric emission from the contents of a receptacle. 61. The system of claim 60, wherein said fluorometer comprises: an excitation component constructed and arranged to direct excitation energy at the receptacle;and - 142CA 02842404 2015-07-09 a detection component constructed and arranged to detect the amount of energy emission from the contents of the receptacle. 62. The system of claim 61, wherein said fluorometer comprises: a light emitting element adapted to emit excitation light;optical elements defining a first optical path, a second optical path, and a third optical path;a beam splitter;and a light detecting element, and wherein: said light emitting element is operatively positioned relative to said first optical path, which is constructed and arranged to transmit at least a portion of the excitation light emitted by said light emitting element, said beam splitter is operatively positioned relative to said first optical path and said second optical path and is constructed and arranged to receive the excitation light transmitted by said first optical path and to direct at least a portion of the received excitation light having desired excitation spectral components to said second optical path, said second optical path being positioned relative to a receptacle in operative proximity to the fluorometer so that said second optical path directs the light having desired excitation spectral components toward the receptacle, and said second optical path receives at least a portion of any fluorometric light emitted by the contents of the receptacle and directs the received portion toward said beam splitter, said beam splitter is operatively positioned relative to said third optical path and is constructed and arranged to receive the fluorometric light transmitted by said second optical path and to direct at least a portion of the received light having desired emission spectral components to said third optical path, and said light detecting element is operatively positioned relative to said third optical path, which is constructed and arranged to transmit at least a portion of the light having desired emission spectral components toward said light detecting element. 63. The system of claim 62, wherein the optical elements of said first optical path are further constructed and arranged to substantially remove any unwanted spectral components of the light transmitted from the light emitting element. -143CA 02842404 2015-07-09 64. The system of claim 63, wherein the optical elements of said first optical path are further constructed and arranged to condition the light transmitted from said light emitting element so that the light received by said beam splitter from said first optical path is substantially within a prescribed excitation angle range with respect to an optic axis of said first optical path. 65. The system of claim 64, wherein the optical elements of said first optical path comprise: a light pipe having a receiving end operatively positioned with respect to said light emitting element to receive at least a portion of the excitation light emitted by said light emitting element and to transmit the excitation light received from said receiving end to an opposed end of said light pipe;a mirror positioned and oriented so as to redirect light emitted by the opposed end of said light pipe;one or more lenses positioned so as to receive light redirected by said mirror and constructed and arranged to collimate the light received to substantially within the prescribed excitation angle range;an excitation baffle positioned to receive light collimated by said one or more lenses and constructed and arranged to block substantially all light not within the prescribed excitation angle range;and an excitation filter positioned to receive light passing through said baffle and constructed and arranged to substantially remove the unwanted spectral components of the excitation light transmitted from said light emitting element. 66. The system of any one of claims 62 to 65, wherein the optical elements of said third optical path are constructed and arranged to eliminate at least a portion of any unwanted spectral components of the light transmitted toward the light detecting element. 67. The system of claim 66, wherein the optical elements of said third optical path are further constructed and arranged to condition the light transmitted from said beam splitter so that the light received by said light detecting element from said third optical path is substantially within a prescribed detection angle range with respect to an optic axis of said third optical path. - 144CA 02842404 2015-07-09 CA2 842404 68. The system of claim 67, wherein the optical elements of said third optical path comprise: an emission baffle positioned to receive light transmitted from said beam splitter and constructed and arranged to block substantially all light not within the prescribed detection angle range;an emission filter positioned to receive light passing through said emission baffle and constructed and arranged to substantially remove the unwanted spectral components of the light transmitted toward said light detecting element;and at least one lens constructed and arranged to focus light passing though said emission filter toward said light detecting element. 69. The system of any one of claims 62 to 68, wherein said light emitting element and said light detecting element are connected to a circuit board. 70. The system of any one of claims 62 to 69, wherein said beam splitter comprises a dichroic beam splitter. 71. The system of any one of claims 62 to 70, wherein said first, second, and third optical paths include first, second, and third optical axes, respectively, and (a) said first optical axis is generally perpendicular to said second optical axis, (b) said second and third optical axes are generally coaxial, and (c) said beam splitter is oriented at an angle of about 45 degrees with respect to said first, second, and third optical axes. 72. The system of any one of claims 53 to 71, wherein said receptacle carrier further comprises magnetic dividers, each being disposed adjacent to one of the receptacles stations, said magnetic dividers each including one or more magnetic elements for exposing a receptacle carried in the adjacent receptacle station to a magnetic field. 73. The system of any one of claims 44 to 72, wherein said detection chamber comprises structure defining a transport path along which a plurality of adjacently-arranged receptacles are moved through the device, and wherein said signal detecting device comprises: -145 CA 02842404 2015-07-09 a photosensitive device disposed along said transport path and constructed and arranged to detect light emitted from the contents of a receptacle operatively positioned with respect to said photosensitive device;and a receptacle isolating device positioned adjacent said transport path and constructed and arranged to pivot between: (1) a first position permitting the plurality of adjacently-arranged receptacles to be moved along said transport path;and (2) a second position operatively engaging one of said receptacles disposed on said transport path and operatively positioned with respect to said photosensitive device, said receptacle isolating device being constructed and arranged to substantially prevent light from sources other than said operatively positioned receptacle engaged by said receptacle isolating device from being detected by said photosensitive device, said receptacle isolating device being constructed and arranged to pivotally rotate between said first and second positions and including structure at least partially surrounding a receptacle engaged by said receptacle isolating device when said receptacle vessel isolating device is in said second position. 74. The system of claim 73, wherein said signal detecting device further comprises a transport mechanism constructed and arranged to move the plurality of adjacently-arranged receptacles along said transport path in such a manner as to operatively position each of the adjacently-arranged receptacles with respect to said photosensitive device for a time duration sufficient to permit said photosensitive device to detect the amount of light emitted from the contents of the operatively positioned receptacle. 75. The system of claim 73 or 74, wherein said signal detecting device further comprises an aperture panel disposed adjacent said transport path and having an aperture formed therein, and wherein said photosensitive device comprises: a photomultiplier tube adapted to detect light emitted from an object placed before a lightadmitting opening at one end of said photomultiplier tube and to generate an electronic signal indicative of light detected by said photomultiplier tube, said photomultiplier tube being positioned on a side of said aperture panel opposite said transport path with said light-admitting opening thereof positioned with respect to said aperture to receive light emitted from the contents of a receptacle disposed on said transport path in front of said aperture;and - 146CA 02842404 2015-07-09 a shutter assembly mounted on said aperture panel and constructed and arranged to selectively admit light through said aperture formed in said aperture panel and into said photomultiplier tube by movement of said shutter assembly between an open position allowing light to pass through said aperture and a closed position preventing light from passing through said aperture, said shutter assembly comprising: a shutter constructed and arranged for rotational movement between open and closed positions corresponding to open and closed positions, respectively, of said shutter assembly, whereby said shutter blocks said aperture when said shutter is in said closed position and does not block said aperture when said shutter is in said open position;and a motor operatively coupled to said shutter for effecting powered rotation of said shutter between said open and closed positions. 76. The system of any one of claims 44 to 75 further comprising a separation device constructed and arranged isolate a solid support material for binding a target nucleic acid present in a receptacle. 77. The system of claim 76, wherein said separation device includes a fluid aspirator mechanism constructed and arranged to aspirate fluid material from the receptacle. 78. The system of claim 77, wherein said separation device further comprises: a fluid dispense mechanism constructed and arranged to provide a wash solution to the receptacle after removing the fluid sample from the receptacle;and a mixing device constructed and arranged to agitate the receptacle to resuspend the solid support material after the wash solution has been provided by the fluid dispense mechanism. 79. The system of any one of claims 76 to 78, wherein the separation device comprises magnetic elements for subjecting a fluid material to a magnetic field. 80. The system of any one of claims 44 to 79, wherein each receptacle is one of a plurality of integrally formed receptacles. -147CA 02842404 2015-07-09 81. The system of any one of claims 44 to 80, further comprising: a label reading device adapted to read machine-readable data associated with each receptacle of the multiple receptacles and a controller in communication with said label reading device and adapted to associate the machine-readable data associated with each receptacle with the first group of receptacles or the second group of receptacle. 82. The system of claim 81, wherein said label reading device comprises a bar code reader. 83. An apparatus for measuring a signal emitted by contents of each of a plurality of receptacles comprising: a moving receptacle carrier including a plurality of receptacle stations, each of said receptacle stations adapted to carry two or more receptacles;a housing containing said receptacles and said receptacle carrier;two or more signal measuring devices, each constructed and arranged to measure an amount of a different optical signal emitted by the contents of a receptacle placed in operative proximity to each signal measuring device, each signal measuring device being positioned with respect to said receptacle carrier such that receptacles carried on said receptacle carrier are successively moved into operative proximity to said signal measuring device as said receptacle carrier moves the receptacles;and a signal measuring device transport mechanism located outside said housing and constructed and arranged to move said signal measuring devices with respect to said receptacle carrier, wherein at least a portion of each of said signal measuring devices is located outside said housing, and each of said signal measuring devices is configured to measure the amount of an optical signal emitted by the contents of a receptacle through an opening formed in said housing;wherein said receptacle carrier is constructed and arranged to successively present said receptacle stations in signal measuring positions in which one of the receptacles carried in the receptacle station is in operative proximity to one of said signal measuring devices, and said signal measuring device transport mechanism is constructed and arranged to move each signal measuring device with respect to said receptacle carrier to successively place each signal measuring device in operative proximity to each of the receptacles carried in the receptacle - 148CA 02842404 2015-07-09 CA2842404 station and moved into the signal measuring position corresponding to the signal measuring device. 84. The apparatus of claim 83, wherein said signal measuring device is positioned below said receptacle carrier. 85. The apparatus of claim 83 or 84 comprising four signal measuring devices. 86. The apparatus of any one of claims 83 to 85, wherein each signal measuring device comprises a fluorometer constructed and arranged to measure a fluorometric emission from the contents of a receptacle, wherein each fluorometer measures a fluorometric emission having a different wavelength. 87. The apparatus of claim 86, wherein each fluorometer comprises: an excitation component constructed and arranged to direct excitation energy at the receptacle, wherein the excitation component of each fluorometer directs an excitation energy of a different wavelength at the receptacle;and a detection component constructed and arranged to detect the amount of emission energy from the contents of the receptacle, wherein the detection component of each fluorometer detects emission energy of a different wavelength. 88. The apparatus of any one of claims 83 to 87, wherein (a) said receptacle carrier comprises a generally circular carousel mounted so as to be rotatable about an axis of rotation with said receptacle stations positioned around the periphery of said carousel, and each receptacle station comprising two or more receptacles aligned in a radial orientation with respect to the axis of rotation of said carousel, (b) rotation of said carousel successively presents said receptacle stations in the signal measuring positions in which one of the radially-aligned receptacles carried in said receptacle station is in operative proximity to the signal measuring device corresponding to that signal measuring position, and (c) said signal measuring device transport mechanism is constructed and arranged to move said signal measuring devices in generally radial directions with respect to the axis of rotation of said carousel to successively place said signal measuring device into operative - 149CA 02842404 2015-07-09 CA2842404 proximity to each of the radially-aligned receptacles carried in the receptacle station moved into the signal measuring position. 89. The apparatus of claim 88, wherein said signal measuring device transport mechanism comprises: a fixed plate oriented generally perpendicularly with respect to the axis of rotation of said carousel;and a translating assembly operatively associated with each signal measuring device, each translating assembly including a track mounted on said fixed plate in a generally radial orientation with respect to the axis of rotation of said carousel, each signal measuring device being mounted on the associated translating assembly and movable along said track. 90. The apparatus of claim 89, further comprising a mounting bracket for mounting each signal measuring device to said translating assembly, wherein each translating assembly further includes a bearing element to which said mounting bracket is attached, said bearing element being constructed and arranged to translate along said track of said translating assembly. 91. The apparatus of any one of claim 89 or 90, further comprising a sensor located at a predetermined position along each track and constructed and arranged to detect the presence of said signal measuring device at said predetermined position along said track. 92. The apparatus of any one of claims 89 to 91, said signal measuring device transport mechanism further comprising: a cam disk rotatably mounted adjacent to said fixed plate, each track of said translating assemblies being arranged generally radially with respect to an axis of rotation of said cam disk, said cam disk including a cam slot associated with each translating assembly, each cam slot being arranged on said cam disk so that the radial distance between the cam slot and the axis of rotation of the cam disk varies from one end of said cam slot to an opposite end of said cam slot;a motor operatively coupled to said cam disk to effect powered rotation of said cam disk;and an engagement pin operatively associated with each signal measuring device and engaged with an associated cam slot such that powered rotation of said cam disk causes said engagement -150CA 02842404 2015-07-09 CA2842404 pin to traverse along said cam slot, thereby causing a change in radial position of the associated signal measuring device in accordance with the change in the radial distance between the axis of rotation of said cam disk and the portion of the associated cam slot with which the engagement pin is engaged. 93. The apparatus of claim 92, wherein each cam slot includes positioning points along said cam slot, said positioning points being defined by each end of said cam slot and by one or more points along said cam slot at which a curvature of said cam slot changes, whereby when said engagement pin is engaged with said cam slot at a positioning point, said signal measurement device is positioned in operative proximity to one of the receptacles carried in the receptacle station. 94. The apparatus of claim 92 or 93 comprising four signal measuring devices, four translating assemblies, and four cam slots. 95. The apparatus of any one of claims 83 to 94, wherein a portion of each said signal measuring device extends into said housing. -151 -