IP Library Patent Application 16934912
Patent Application
App. No. 16/934,912

ULTRA BRIGHT DIMERIC OR POLYMERIC DYES AND METHODS FOR PREPARATION OF THE SAME

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Quick Facts
Patent No.
US None
App. No.
16/934,912
Abstract

Dimeric and/or polymeric dyes and compounds and methods for preparation of the same are disclosed.

Claims (52)

1 .- 70 . (canceled)

71 . A composition, comprising:

a first dye oligomer comprising:

a first compound comprising a first plurality of fluorescent moieties, the first compound having a first terminal and a second terminal;

a first nucleic acid molecule having a first sequence, the first nucleic acid molecule being covalently bound to the first terminal;

a second nucleic acid molecule having a second sequence, the second nucleic acid molecule being covalently bound to the second terminal; and

a second dye oligomer comprising:

a second compound comprising a second plurality of fluorescent moieties, the second compound having a third terminal and a fourth terminal;

a third nucleic acid molecule having a third sequence that is complementary to the second sequence, the third nucleic acid molecule being covalently bound to the third terminal, the third nucleic acid molecule being hybridized to the second nucleic acid molecule;

a fourth nucleic acid molecule having a fourth sequence, the fourth nucleic acid molecule being covalently bound to the fourth terminal.

72 . The composition of claim 71 , further comprising:

a third dye oligomer comprising:

a fourth compound comprising a fourth plurality of fluorescent moieties, the fourth compound having a fifth terminal and a sixth terminal;

a fifth nucleic acid molecule having a fifth sequence that is complementary to the fourth sequence, the fifth nucleic acid molecule being covalently bound to the fifth terminal, the fifth nucleic acid molecule being hybridized to the fourth nucleic acid molecule;

a sixth nucleic acid molecule having a sixth sequence, the sixth nucleic acid molecule being covalently bound to the sixth terminal.

73 . The composition of claim 71 , wherein the first and the third sequences are the same.

74 . The composition of claim 73 , wherein the first dye oligomer and the second dye oligomer are the same.

75 . The composition of claim 74 , wherein the composition comprises a plurality of dye oligomers that are the same, the plurality of dye oligomers comprising the first dye oligomer and the second dye oligomer.

76 . A composition, comprising:

a nucleic acid-polymer composite comprising:

a polymer backbone

a first nucleic acid molecule covalently bound to the polymer backbone, the first nucleic acid molecule having a first sequence; and

a second nucleic acid molecule having a second sequence that is complementary to the first sequence, the second nucleic acid molecule being covalently bound to a first oligomer dye comprising a first plurality of fluorescent moieties, the first nucleic acid molecule being hybridized to the second nucleic acid molecule.

77 . The composition of claim 76 , wherein the nucleic acid-polymer composite further comprises a third nucleic acid molecule covalently bound to the polymer backbone, the third nucleic acid molecule having a third sequence.

78 . The composition of claim 77 , further comprising a fourth nucleic acid molecule having a fourth sequence that is complementary to the third sequence, the fourth nucleic acid molecule being covalently bound to a second oligomer dye comprising a second plurality of fluorescent moieties, the third nucleic acid molecule being hybridized to the fourth nucleic acid molecule

79 . The composition of claim 78 , wherein the first sequence and the third sequence are the same.

80 . The composition of claim 78 , wherein the first oligomer dye and the second oligomer dye are the same.

81 . A method, comprising:

providing a first dye oligomer comprising:

a first compound comprising a first plurality of fluorescent moieties, the first compound having a first terminal and a second terminal;

a first nucleic acid molecule having a first sequence, the first nucleic acid molecule being covalently bound to the first terminal;

a second nucleic acid molecule having a second sequence, the second nucleic acid molecule being covalently bound to the second terminal; and

contacting the first dye oligomer with a second dye oligomer comprising:

a second compound comprising a second plurality of fluorescent moieties, the second compound having a third terminal and a fourth terminal;

a third nucleic acid molecule having a third sequence that is complementary to the second sequence, the third nucleic acid molecule being covalently bound to the third terminal;

a fourth nucleic acid molecule having a fourth sequence, the fourth nucleic acid molecule being covalently bound to the fourth terminal,

wherein the second nucleic acid molecule hybridizes to the third nucleic acid molecule.

82 . The method of claim 81 , further comprising:

contacting the second dye oligomer with a third dye oligomer comprising:

a fourth compound comprising a fourth plurality of fluorescent moieties, the fourth compound having a fifth terminal and a sixth terminal;

a fifth nucleic acid molecule having a fifth sequence that is complementary to the fourth sequence, the fifth nucleic acid molecule being covalently bound to the fifth terminal;

a sixth nucleic acid molecule having a sixth sequence, the sixth nucleic acid molecule being covalently bound to the sixth terminal,

wherein the fourth nucleic acid molecule hybridizes to the fifth nucleic acid molecule.

83 . The method of claim 81 , wherein the first dye oligomer and the second dye oligomer are the same.

84 . The method of claim 81 , wherein the first and the third sequences are the same.

85 . A method, comprising:

providing a nucleic acid-polymer composite comprising a polymer backbone covalently bound to a first nucleic acid molecule having a first sequence; and

contacting the first nucleic acid molecule with a second nucleic acid molecule having a second sequence that is complementary to the first sequence, the second nucleic acid molecule being covalently bound to a first oligomer dye comprising a first plurality of fluorescent moieties, thereby hybridizing the first nucleic acid molecule and the second nucleic acid molecule.

86 . The method of claim 85 , wherein the nucleic acid-polymer composite further comprises a third nucleic acid molecule covalently bound to the polymer backbone, the third nucleic acid molecule having a third sequence.

87 . The method of claim 86 , further comprising contacting the third nucleic acid molecule with a fourth nucleic acid molecule having a fourth sequence that is complementary to the third sequence, the fourth nucleic acid molecule being covalently bound to a second oligomer dye comprising a second plurality of fluorescent moieties, the third nucleic acid molecule hybridizing to the fourth nucleic acid molecule

88 . The method of claim 87 , wherein the first sequence and the third sequence are the same.

89 . The method of claim 87 , wherein the first oligomer dye and the second oligomer dye are the same.

Assignments (3)
CHANGE OF NAME Recorded May 16, 2023
From: SONY CORPORATION
To: SONY GROUP CORPORATION
Reel/Frame 063664/0744 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2021
From: VANBRUNT, MICHAEL; MATRAY, TRACY
To: SONY CORPORATION OF AMERICA; SONY CORPORATION
Reel/Frame 055237/0772 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 14, 2020
From: SONY CORPORATION OF AMERICA
To: SONY CORPORATION
Reel/Frame 054751/0070 →