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US20200070173A1 - Methods for rapid multiplexed amplification of target nucleic acids - Google Patents

Methods for rapid multiplexed amplification of target nucleic acids
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Publication number
US20200070173A1
US20200070173A1US16/411,908US201916411908AUS2020070173A1US 20200070173 A1US20200070173 A1US 20200070173A1US 201916411908 AUS201916411908 AUS 201916411908AUS 2020070173 A1US2020070173 A1US 2020070173A1
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Prior art keywords
temperature
tce
sub
additional
reaction
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Abandoned
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US16/411,908
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Richard F. Selden
Eugene Tan
Heung Chuan Lam
Heidi Susanne Giese
Gregory John Kellogg
John A. Wright
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Ande Corp
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Ande Corp
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Assigned to NETBIO, INC.reassignmentNETBIO, INC.CHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: NETWORK BIOSYSTEMS, INC.
Assigned to ANDE CORPORATIONreassignmentANDE CORPORATIONCHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: NETBIO, INC.
Assigned to NETWORK BIOSYSTEMS, INC.reassignmentNETWORK BIOSYSTEMS, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: SELDEN, RICHARD F., GIESE, HEIDI SUSANNE, KELLOGG, GREGORY JOHN, LAM, HEUNG CHUAN, TAN, EUGENE, WRIGHT, JOHN A.
Assigned to ORBIMED ROYALTY & CREDIT OPPORTUNITIES IV, LPreassignmentORBIMED ROYALTY & CREDIT OPPORTUNITIES IV, LPSECURITY INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: ANDE CORPORATION
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Abstract

A fast, multiplexed PCR system is described that can rapidly generate amplified nucleic acid products, for example, a full STR profile, from a target nucleic acid. Such systems include, for example, microfluidic biochips and a custom built thermal cycler, which are also described. The resulting STR profiles can satisfy forensic guidelines for signal strength, inter-loci peak height balance, heterozygous peak height ratio, incomplete non-template nucleotide addition, and stutter.

Description

Claims (14)

70. A method for simultaneously amplifying of a plurality of loci in a nucleic acid solution comprising:
providing in a single solutions contained in at least two reaction chambers located in a biochip, samples having at least ten target nucleic acid loci to be amplified, with at least ten different primer pairs, each primer pair hybridizing to one of the at least ten loci to be amplified, said solution further comprising:
(i) one or more buffers;
(ii) one or more salts;
(iii) a nucleic acid polymerase; and
(iv) nucleotides; and
providing a thermal control system comprised of (i) a TCE having a first surface in thermal communication with said at least two reaction chambers, said TCE further comprising a means for heating and cooling, (ii) at least one thermosensor, (iii) a controller that receives signals from said at least one thermosensor and (iv)a power supply, said at least one thermosensor positioned and configured to measure the effective temperature of each of the single solutions in the reaction chambers of the biochip and to provide feedback to the TCE to heat or cool the solution to set or maintain the solution at a desired temperature;
obtaining, with said controller of the thermal control system, a target sample solution temperature, from a control algorithm that stores the target sample temperature, for a sample for a first sub-step of a plurality of predetermined processing sub-steps, to be performed on the samples, where in the first sub-step of the processing step is one of a denaturing, an annealing or an extending of a replication of a polymerase chain reaction;
obtaining with said controller from said control algorithm, a time and temperature profile representing a comparison between the target sample temperature as measured by said thermosensor in thermal communication with said at least two reaction chambers, and a plurality of different temperatures for said TCE, wherein the plurality of different temperatures are different from each other and different from the target sample temperature and correspond to different time points, of a predetermined set of time points, of the first sub-step;
identifying, with the controller from said control algorithm, for a first time point of the different time points for the first sub-step, a first temperature of the plurality of different temperatures using the time and temperature profile; and
controlling, with the controller from said control algorithm, a temperature of the TCE at the first time point of the first sub-step to be the first temperature, wherein the TCE is in thermal communication with said at least two reaction chambers and controls a temperature of said samples.
81. The method ofclaim 70 further comprising:
obtaining at least one additional target sample temperature wherein the time and temperature profile provides at least one additional target sample temperature and at least one additional set of temperatures of the TCE for at least one additional sub-step of the processing step;
identifying, for a time point of the at least one additional sub-step, a temperature of the at least one additional set of temperatures using at least one additional time and temperature profile generated using the at least one additional target sample temperatures and the at least one set of additional temperatures and the time point of the at least one additional sub-set; and
controlling the temperature of the TCE at the time point of the at least one additional sub-set at the at least one additional set of temperatures.
82. An apparatus comprising:
a controller of a thermal control system configured to:
obtain a target sample temperature, from a controller that stores the target sample temperature, for a sample for a first sub-step, of a plurality of predetermined sub-steps, of a processing step, of a plurality of predetermined processing steps, to be performed on the sample, wherein the first sub-step of the processing step is one of a denaturing, an annealing or an extending of a replication of a polymerase chain reaction sub-step;
obtain a time and temperature profile, from the controller wherein the profile provides a correlation between the target sample temperature, as measured by a thermosensor in thermal communication with a reaction chamber, with a target sample temperature applied to the reaction chamber, and a plurality of different temperatures for a TCE, wherein the plurality of different temperatures are different from each other and different from the target sample temperature and correspond to different time points, of a predetermined set of time points, of the firsts sub-step;
identify, for a first time point of the different time points for the first sub-step, a first temperature of the plurality of different temperatures using a temperature profile between the target sample temperature and the plurality of different temperatures and the first time point; and
control a temperature of the TCE at the first time point of the first sub-step to be the first temperature; wherein the TCE is in thermal communication with a reaction chamber and controls a temperature of the sample.
US16/411,9082007-04-042019-05-14Methods for rapid multiplexed amplification of target nucleic acidsAbandonedUS20200070173A1 (en)

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US16/411,908US20200070173A1 (en)2007-04-042019-05-14Methods for rapid multiplexed amplification of target nucleic acids

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US92180207P2007-04-042007-04-04
US96450207P2007-08-132007-08-13
US2807308P2008-02-122008-02-12
US12/080,746US8425861B2 (en)2007-04-042008-04-04Methods for rapid multiplexed amplification of target nucleic acids
US13/040,156US9494519B2 (en)2007-04-042011-03-03Methods for rapid multiplexed amplification of target nucleic acids
US15/350,605US20170225164A1 (en)2007-04-042016-11-14Methods for Rapid Multiplexed Amplification of Target Nucleic Acids
US16/411,908US20200070173A1 (en)2007-04-042019-05-14Methods for rapid multiplexed amplification of target nucleic acids

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US20200070173A1true US20200070173A1 (en)2020-03-05

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US12/080,751Active2030-03-19US8018593B2 (en)2007-04-042008-04-04Integrated nucleic acid analysis
US12/080,746Active2028-12-07US8425861B2 (en)2007-04-042008-04-04Methods for rapid multiplexed amplification of target nucleic acids
US12/080,745Active2031-07-07US8858770B2 (en)2007-04-042008-04-04Plastic microfluidic separation and detection platforms
US13/040,156ActiveUS9494519B2 (en)2007-04-042011-03-03Methods for rapid multiplexed amplification of target nucleic acids
US13/191,952ActiveUS9366631B2 (en)2007-04-042011-07-27Integrated systems for the multiplexed amplification and detection of six and greater dye labeled fragments
US13/569,971ActiveUS8961765B2 (en)2007-04-042012-08-08Plastic microfluidic separation and detection platforms
US14/595,785Active2028-07-29US9994895B2 (en)2007-04-042015-01-13Plastic microfluidic separation and detection platforms
US15/151,147ActiveUS9889449B2 (en)2007-04-042016-05-10Integrated systems for the multiplexed amplification and detection of six and greater dye labeled fragments
US15/350,605AbandonedUS20170225164A1 (en)2007-04-042016-11-14Methods for Rapid Multiplexed Amplification of Target Nucleic Acids
US15/894,630Active2029-01-23US11110461B2 (en)2007-04-042018-02-12Integrated nucleic acid analysis
US16/002,079Active2028-06-07US11052398B2 (en)2007-04-042018-06-07Plastic microfluidic separation and detection platforms
US16/411,908AbandonedUS20200070173A1 (en)2007-04-042019-05-14Methods for rapid multiplexed amplification of target nucleic acids

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US12/080,751Active2030-03-19US8018593B2 (en)2007-04-042008-04-04Integrated nucleic acid analysis
US12/080,746Active2028-12-07US8425861B2 (en)2007-04-042008-04-04Methods for rapid multiplexed amplification of target nucleic acids
US12/080,745Active2031-07-07US8858770B2 (en)2007-04-042008-04-04Plastic microfluidic separation and detection platforms
US13/040,156ActiveUS9494519B2 (en)2007-04-042011-03-03Methods for rapid multiplexed amplification of target nucleic acids
US13/191,952ActiveUS9366631B2 (en)2007-04-042011-07-27Integrated systems for the multiplexed amplification and detection of six and greater dye labeled fragments
US13/569,971ActiveUS8961765B2 (en)2007-04-042012-08-08Plastic microfluidic separation and detection platforms
US14/595,785Active2028-07-29US9994895B2 (en)2007-04-042015-01-13Plastic microfluidic separation and detection platforms
US15/151,147ActiveUS9889449B2 (en)2007-04-042016-05-10Integrated systems for the multiplexed amplification and detection of six and greater dye labeled fragments
US15/350,605AbandonedUS20170225164A1 (en)2007-04-042016-11-14Methods for Rapid Multiplexed Amplification of Target Nucleic Acids
US15/894,630Active2029-01-23US11110461B2 (en)2007-04-042018-02-12Integrated nucleic acid analysis
US16/002,079Active2028-06-07US11052398B2 (en)2007-04-042018-06-07Plastic microfluidic separation and detection platforms

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US (12)US8018593B2 (en)
EP (7)EP2155393B1 (en)
JP (9)JP2010523115A (en)
KR (4)KR20100021565A (en)
AU (5)AU2008236612B2 (en)
CA (6)CA2984820C (en)
ES (3)ES2797951T3 (en)
NZ (5)NZ580374A (en)
WO (4)WO2009011942A2 (en)

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