IP Library Patent Application 15712135
Patent Application
App. No. 15/712,135

COMPOSITIONS AND METHODS FOR PREPARING SHORT RNA MOLECULES AND OTHER NUCLEIC ACIDS

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Patent No.
US None
App. No.
15/712,135
Abstract

The invention provides methods of preparing nucleic acids, such as RNA molecules, of a defined size or range of sizes. The invention provides compositions, methods and kits for use in the production and preparation of small RNA molecules (including without limitation micro-RNA, siRNA, d-siRNA and e-siRNA) and other nucleic acids of various sizes.

Claims (19)

1 .- 62 . (canceled)

63 . A method for purifying short RNA molecules from about 18 to about 50 nucleotides or base pairs in length, the method comprising:

(a) adding a first fluid mixture or, in any order, fluids or combinations of fluids that contain the components of said first fluid mixture, to a sample comprising said short RNA molecules and other nucleic acids having a size other than said short RNA molecules to produce a first binding mixture,

wherein the first fluid mixture or fluids or combinations of fluids that contain the components of the fluid mixture, comprises guanidine isothiocyanate, and

wherein the first binding mixture comprises m % (v/v) ethanol or isopropanol wherein m is any whole integer from 30 to 45;

(b) filtering said first binding mixture through a first silica based column, wherein said short RNA molecules pass through a composition within the first column, and said other nucleic acids are retained, to produce a first flow-through solution;

(c) adding a second fluid mixture or, in any order, fluids or combinations of fluids that contain the components of said second fluid mixture to said first flow-through solution, to produce a second binding mixture,

wherein the second binding mixture comprises m % (v/v) ethanol or isopropanol wherein m is any whole integer from 65 to 75;

(d) filtering the second binding mixture through a second silica based column, wherein said short RNA molecules bind to a composition within the second column and, optionally, washing the bound nucleic acids; and

(e) eluting the said short RNA molecules with a third fluid mixture, to produce an eluate, wherein said short RNA molecules are present in said eluate.

64 . The method of claim 63 , wherein said RNA molecules are double-stranded.

65 . The method of claim 63 , wherein said RNA molecules are micro-RNA molecules.

66 . The method of claim 63 , wherein said RNA molecules are RNAi molecules.

67 . The method of claim 66 , wherein said RNAi molecules are selected from the group consisting of shRNA, stRNA, siRNA, e-siRNA, and d-siRNA.

68 . The method of claim 63 , wherein the size of said short RNA molecules ranges from about 20 to about 30 nucleotides or base pairs in length, and preferably from about 20 to 25 nucleotides or base pairs in length.

69 . The method of claim 63 , wherein said other nucleic acids are RNA molecules.

70 . The method of claim 63 , wherein said short RNA molecules and said other RNA molecules are double-stranded molecules.

71 . The method of claim 63 , wherein said sample is from a biological system.

72 . The method of claim 63 , wherein the first and second columns are glass fibre columns.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2018
From: MADDEN, KNUT; HARRIS, ADAM; HECKER, KARL; LEE, BYUNG-IN
To: LIFE TECHNOLOGIES CORPORATION
Reel/Frame 044864/0255 →