IP Library Patent Application 15953200
Patent Application
App. No. 15/953,200

HIGH-BRIGHTNESS FLUOROPHORES

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
15/953,200
Abstract

An example fluorophore according to the present application includes a carrier, at least one fluorescent entity, and an amphiphilic linker linking each of the at last one fluorescent entities to the carrier. The linker has a linker length that corresponds to its molecular weight, and the molecular weight is greater than 1000 Da.

Claims (42)

1 . A fluorophore, comprising:

a carrier;

at least one fluorescent entity; and

an amphiphilic linker linking each of the at last one fluorescent entities to the carrier, the linker having a linker length that corresponds to its molecular weight, and wherein the molecular weight is greater than 1000 Da.

2 . The fluorophore of claim 1 , wherein the carrier is a nanomaterial.

3 . The fluorophore of claim 2 , wherein the nanomaterial is a nanotube.

4 . The fluorophore of claim 3 , wherein the nanotube is a boron nitride nanotube or a carbon nanotube.

5 . The fluorophore of claim 2 , wherein a length of the nanotube is between about 50 and 1000 nm.

6 . The fluorophore of claim 1 , wherein the linker has a stretched linker length of greater than about 5 nanometers.

7 . The fluorophore of claim 1 , wherein the linker has a molecular weight greater than about 3400 Da.

8 . The fluorophore of claim 1 , wherein the linker has a molecular weight less than about 10000 Da.

9 . The fluorophore of claim 1 , wherein the linker is non-covalently bonded to the carrier and is covalently bonded to the fluorescent entity.

10 . The fluorophore of claim 9 , wherein the linker comprises at least one hydrophilic portion and a hydrophobic portion, and wherein the hydrophobic portion is non-covalently bonded to the carrier and the hydrophilic portion is covalently bonded to the fluorescent entity.

11 . The fluorophore of claim 10 , wherein the hydrophilic portion includes a chain of water soluble polymeric molecules attached to the hydrophobic portion at a first end, and the at least one fluorescent entity is attached to the chain at a second end.

12 . The fluorophore of claim 11 , wherein the linker comprises a DSPE (1,2-distearoyl-sn-glycero-3-phosphoethanolamine) group and a chain of polyethylene glycol (PEG) molecules.

13 . The fluorophore of claim 9 , wherein the linker is covalently bonded to the fluorescent entity via a reactive functional group.

14 . The fluorophore of claim 1 , wherein the at least one fluorescent entity comprises at least one of a coumarin, a benzoxadiazole, an acridone, an acridine, a bisbenzimide, indole, benzoisoquinoline, naphthalene, anthracene, xanthene, pyrene, porphyrin, fluorescein, rhodamine, boron-dipyrromethene (BODIPY), and a cyanine derivative.

15 . The fluorophore of claim 1 , comprising at least 100 fluorescent entities.

16 . The fluorophore of claim 15 , comprising at least 1000 fluorescent entities.

17 . The fluorophore of claim 1 , wherein the at least one fluorescent entity comprises a first fluorescent entity and a second fluorescent entity different from the first fluorescent entity.

18 . The fluorophore of claim 1 , further comprising a moiety selected from a group of a crown ether, a carbohydrate, a nucleic acid, a peptide, an oligonucleotide, a protein and an antibody, the linker being a first linker and a second linker linking the moiety to the carrier.

19 . A fluorophore, comprising:

a nanotube;

at least one amphiphilic linker having a hydrophobic portion and a hydrophilic portion, wherein the hydrophobic portion is non-covalently bonded to the nanotube, wherein the at least one amphiphilic linker has a linker length that corresponds to its molecular weight, and wherein the molecular weight is than 1000 Da; and

at least one fluorescent entity covalently bonded to the hydrophilic portion of the at least one amphiphilic linker.

20 . The fluorophore of claim 19 , wherein the nanotube is a boron nitride nanotube (BNNT) or carbon nanotube (CNT).

21 . The fluorophore of claim 20 , wherein the hydrophilic portion includes a chain of water soluble polymeric molecules.

22 . The fluorophore of claim 21 , wherein the water soluble polymeric molecules are polyethelene glycol (PEG) molecules.

23 . The fluorophore of claim 22 , wherein the linker comprises a DSPE (1,2-distearoyl-sn-glycero-3-phosphoethanolamine) group.

24 . The fluorophore of claim 21 , wherein the chain of PEG molecules has a molecular weight of greater than 1000 Da.

25 . The fluorophore of claim 24 , wherein the chain of PEG molecules has a stretched length of greater than about 5 nanometers.

26 . The fluorophore of claim 23 , wherein the linker has a molecular weight greater than about 3400 Da.

27 . The fluorophore of claim 26 , wherein the linker has a molecular weight less than about 10000 Da.

28 . The fluorophore of claim 24 , wherein the length of the nanotube is between about 50 and 1000 nm.

29 . The fluorophore of claim 24 , comprising at least 100 fluorescent entities.

30 . The fluorophore of claim 24 , wherein the at least one fluorescent entity comprises a first fluorescent entity and a second fluorescent entity different from the first fluorescent entity.

31 . The fluorophore of claim 24 , further comprising a moiety selected from a group of a crown ether, a carbohydrate, a nucleic acid, a peptide, an oligonucleotide, a protein and an antibody, the linker being a first linker and a second linker linking the moiety to the nanotube.

32 . The fluorophore of claim 24 , wherein the at least one linker is covalently bonded to the at least one fluorescent entity via a reactive functional group.

33 . A fluorophore, comprising:

a carrier;

at least one fluorescent entity; and

an amphiphilic linker linking each of the at last one fluorescent entities to the carrier, the linker having a stretched linker length that corresponds to its molecular weight, and wherein the stretched linker length is greater than 5 nanometers.

Assignments (3)
CONFIRMATORY LICENSE Recorded May 14, 2018
From: MICHIGAN TECHNOLOGICAL UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 046153/0135 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2018
From: YAP, YOKE KHIN; ZHANG, DONGYAN; YAPICI, NAZMIYE BIHTER
To: MICHIGAN TECHNOLOGICAL UNIVERSITY
Reel/Frame 045553/0493 →
CONFIRMATORY LICENSE Recorded Apr 16, 2018
From: MICHIGAN TECHNOLOGICAL UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 045949/0656 →