IP Library Patent Application 11192361
Patent Application
App. No. 11/192,361

Fluorescent complex, a fluorescent particle and a fluorescence detection method

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Patent No.
US None
App. No.
11/192,361
Abstract

The fluorescent complexes of the invention each comprise a magnetic nano-particle; an inorganic phosphor nano-particle; and a linker, wherein the magnetic nano-particles have an average particle diameter of 2 to 100 nm, the inorganic phosphor nano-particles have an average particle diameter of 1 to 50 nm, and the linker links the magnetic nano-particles with the inorganic phosphor nano-particles. The fluorescence detection method of the present invention comprises detecting a target substance in a sample by using the fluorescent complex of the present invention.

Claims (52)

1 . Fluorescent complexes, each comprising:

a magnetic nano-particle;

an inorganic phosphor nano-particle; and

a linker;

wherein the magnetic nano-particles have an average particle diameter of 2 to 100 nm, the inorganic phosphor nano-particles have an average particle diameter of 1 to 50 nm, and the linker links the magnetic nano-particles with the inorganic phosphor nano-particles.

2 . The fluorescent complexes of claim 1 , wherein the linker comprises an external stimuli responsive compound.

3 . The fluorescent complexes of claim 2 , wherein the external stimuli responsive compound is disposed at at least one of the magnetic nano-particles or the inorganic phosphor nano-particles.

4 . Fluorescent particles each comprising an inorganic phosphor nano-particle, and an external stimuli responsive compound, wherein the inorganic phosphor nano-particles have an average particle diameter of 1 to 50 nm and the external stimuli responsive compound is disposed on the surface of the inorganic phosphor nano-particles.

5 . The fluorescent particles of claim 4 , further comprising a linker disposed on the surface of the inorganic phosphor nano-particles.

6 . The fluorescent particles of claim 5 , wherein the inorganic phosphor nano-particles are bound to magnetic nano-particles through the linker.

7 . The fluorescent complexes of claim 1 wherein the half width for light emission of the inorganic phosphor nano-particles is 50 to 200 nm.

8 . The fluorescent particles of claim 4 , wherein the half width for light emission of the inorganic phosphor nano-particle is 50 to 200 nm.

9 . The fluorescent complexes of claim 1 , further comprises a ligand for causing a target substance to bind thereto.

10 . The fluorescent particles of claim 4 , further comprises a ligand for causing a target substance to bind thereto.

11 . The fluorescent complexes of claim 1 , wherein the inorganic phosphor nano-particle is a metal oxide or a metal sulfide.

12 . The fluorescent particles of claim 4 , wherein the inorganic phosphor nano-particle is a metal oxide or a metal sulfide.

13 . The fluorescent complexes of claim 1 , wherein the magnetic nano-particle is an iron oxide or a ferrite.

14 . The fluorescent complexes of claim 1 , wherein the inorganic phosphor nano-particle is surface-modified by a compound represented by the following formula [II] or a surface modifier which is a decomposition product thereof:

M-(R) 4   [I]

wherein, M denotes a Si or Ti atom, and R an organic group, Rs may be respectively the same or different but at least one of the Rs denotes a group having reactivity to the linker or the ligand.

15 . The fluorescent particles of claim 4 , wherein the inorganic phosphor nano-particle is surface-modified by a compound represented by the following formula [I] or a surface modifier which is a decomposition product thereof:

M-(R) 4   [I]

wherein, M denotes a Si or Ti atom, and R an organic group, Rs may be respectively the same or different but at least one of the Rs denotes a group having reactivity to the linker or the ligand.

16 . The fluorescent complexes of claim 1 , wherein the inorganic phosphor nano-particle is surface-modified by a compound represented by the following formula [II]:

HS-L-W formula   [II]

wherein, L denotes a bivalent conjugating group, and W denotes COOZ or NH 2 , and Z denotes a hydrogen atom, an alkaline metal atom, or NX 4 , where X denotes a hydrogen atom or an alkyl group.

17 . The fluorescent particles of claim 4 , wherein the inorganic phosphor nano-particle is surface-modified by a compound represented by the following formula [II]:

HS-L-W formula   [II]

wherein, L denotes a bivalent conjugating group, and W denotes COOZ or NH 2 , and Z denotes a hydrogen atom, an alkaline metal atom, or NX 4 , where X denotes a hydrogen atom or an alkyl group.

18 . The fluorescent complexes of claim 2 , wherein the external stimuli responsive compound is at least one of a heat stimuli responsive macromolecule or a pH stimuli responsive compound.

19 . The fluorescent particles of claim 4 , wherein the external stimuli responsive compound is at least one of a heat stimuli responsive macromolecule or a pH stimuli responsive compound.

20 . A fluorescence detection method for detecting a target substance in a sample using a phosphor, comprising:

combining the fluorescent complexes of claim 1 , that further comprise a ligand for causing the target substance to bind thereto, with the sample for formation in the sample of fluorescent complexes to which the target substance has been bound;

applying an external magnetic field to the fluorescent complexes in the sample for collecting the fluorescent complexes;

irradiating the collected fluorescent complexes with excitation light for exciting the phosphor nano-particles to cause the phosphor nano-particles to emit fluorescent light;

detecting the fluorescence emitted from the fluorescent complex; and

detecting the target substance in the sample on the basis of the fluorescence emission.

21 . The fluorescence detection method of claim 20 , wherein at least one of the magnetic nano-particles or the inorganic phosphor nano-particles which constitute the fluorescent complexes have an external stimuli responsive compound on the surface of the particle.

22 . A fluorescence detection method for detecting a target substance in a sample using a phosphor, comprising:

combining magnetic nano-particles, comprising a ligand for causing the target substance to bind thereto and having an average particle diameter of 2 to 100 nm, with the sample for formation in the sample of magnetic nano-particles to which the target substance has been bound;

applying an external magnetic field to the magnetic nano-particles in the sample for collecting the magnetic nano-particles to which the target substance has been bound;

combining inorganic phosphor nano-particles, which can be mutually bound to the magnetic nano-particles through a linker and which have an average particle diameter of 1 to 50 nm, with the collected magnetic nano-particles for formation of fluorescent complexes which are the fluorescent complexes of claim 1 , and to which the target substance has been bound;

irradiating the fluorescent complexes with excitation light for exciting the phosphor nano-particles to cause the phosphor nano-particles to emit fluorescent light;

detecting the fluorescence emitted from the fluorescent complexes; and

detecting the target substance in the sample on the basis of the fluorescence emission.

23 . The fluorescence detection method of claim 22 , wherein at least one of the inorganic phosphor nano-particles or magnetic nano-particles has an external stimuli responsive compound on the surface of the particles.

24 . A fluorescence detection method for detecting a target substance in a sample using a phosphor, comprising:

combining the fluorescent particles of claim 4 , that further comprise a ligand for causing the target substance to bind thereto with the sample for formation of fluorescent particles to which the target substance has been bound;

applying an external stimulus for aggregating the fluorescent particles;

irradiating the phosphor nano-particles with excitation light for exciting it to cause the phosphor nano-particles to emit fluorescent light;

detecting the fluorescence emission from the fluorescent particles; and

detecting the target substance in the sample on the basis of the fluorescence emission.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2007
From: FUJIFILM HOLDINGS CORPORATION (FORMERLY FUJI PHOTO FILM CO. LTD.)
To: FUJIFILM CORPORATION
Reel/Frame 019331/0493 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2005
From: HIRAI, HIROYUKI
To: FUJI PHOTO FILM CO., LTD.
Reel/Frame 016826/0271 →