IP Library Patent Application 13650853
Patent Application
App. No. 13/650,853

SAMPLE PREPARATION FOR IN SITU NUCLEIC ACID ANALYSIS, METHODS AND COMPOSITIONS THEREFOR

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Quick Facts
Patent No.
US None
App. No.
13/650,853
Abstract

Sample preparation processes for in situ RNA or DNA analysis, methods and compositions therefor are provided. Processes provided herein allow DNA or RNA analysis to be carried out in the same tube or on an aliquot of the prepared sample without centrifugation or extraction. The preparation process can be carried out at room temperature in as little as seven minutes and is amenable to high throughput processing using manual or robotic platforms.

Claims (29)

1 .- 54 . (canceled)

55 . A kit for preparing a sample containing RNA for in situ analysis of RNA or a surrogate thereof, the kit comprising lysis mixture components,

wherein the lysis mixture components comprise a polypeptide having deoxyribonuclease activity and a surfactant that substantially lacks fluorescence between 300 nm and 750 nm when in use for in situ analysis of RNA or a surrogate thereof,

wherein the lysis mixture components are substantially free of a cation chelator, wherein the cation chelator is EDTA.

56 . The kit of claim 55 further comprising reagents for reverse transcription.

57 . The kit of claim 55 further comprising a ribonuclease inhibitor.

58 . A process for preparing a sample containing nucleic acid for in situ analysis of nucleic acid or a surrogate thereof, the process comprising:

contacting the sample containing nucleic acid with a lysis mixture under conditions and for a time to produce a lysate,

admixing the lysate with a stop mixture at substantially the same temperature as the contacting step to form a stopped mixture compatible with nucleic acid polymerase reaction conditions, and

contacting the stopped mixture with reagents for nucleic acid polymerization to form a first amplification reaction.

59 . The process of claim 58 wherein the sample contains RNA and the nucleic acid polymerase is a reverse transcriptase.

60 . The process of claim 58 wherein the sample contains DNA and the nucleic acid polymerase is a DNA polymerase.

61 . The process of claim 55 wherein contacting the sample with a lysis mixture is for a time of 2 minutes to 30 minutes.

62 . The process of claim 58 wherein the sample comprises one cell to 10 5 or 10 6 cells.

63 . The process of claim 58 wherein the sample is a fixed sample.

64 . The process of claim 58 wherein the sample is obtained by laser capture microdissection.

65 . The process of claim 58 wherein the temperature is from 15° C. to 30° C.

66 . A process for preparing a sample containing nucleic acid for in situ analysis of nucleic acid or a surrogate thereof, the process comprising:

contacting the sample containing nucleic acid with a lysis mixture under conditions and for a time to produce a lysate wherein the lysis mixture comprises a polypeptide having protease activity, and a surfactant,

admixing the lysate with a stop mixture at substantially the same temperature as the contacting step to form a stopped mixture wherein the stop mixture comprises an inhibitor of the polypeptide, and

contacting the stopped mixture with reagents for nucleic acid polymerization to form a first amplification reaction.

67 . The process of claim 66 wherein the sample contains RNA and a reagent for nucleic acid polymerization is a reverse transcriptase.

68 . The process of claim 66 wherein the sample contains DNA and a reagent for nucleic acid polymerization is a DNA polymerase.

69 . The process of claim 66 wherein contacting the sample with a lysis mixture is for a time of 2 minutes to 30 minutes.

70 . The process of claim 66 wherein the sample comprises one cell to 10 5 or 10 6 cells.

71 . The process of claim 66 wherein the sample is a fixed sample.

72 . The process of claim 66 wherein the sample is obtained by laser capture microdissection.

73 . The process of claim 66 wherein the temperature is from 15° C. to 30° C.

74 . The process of claim 66 further comprising contacting the first amplification reaction with reagents for polymerase chain reaction to generate an amplified product.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2017
From: FEKETE, RICHARD; NGUYEN, ANNALEE
To: APPLERA CORPORATION
Reel/Frame 043632/0719 →
MERGER Recorded Sep 19, 2017
From: APPLERA CORPORATION
To: APPLIED BIOSYSTEMS INC.
Reel/Frame 043632/0740 →
MERGER Recorded Sep 19, 2017
From: ATOM ACQUISITION CORPORATION
To: APPLIED BIOSYSTEMS INC.
Reel/Frame 043632/0848 →
MERGER Recorded Sep 19, 2017
From: APPLIED BIOSYSTEMS INC. & ATOM ACQUISITION, LLC
To: APPLIED BIOSYSTEMS, LLC
Reel/Frame 043632/0855 →