|
(11) | EP 2 054 476 B9 |
(12) | CORRECTED EUROPEAN PATENT SPECIFICATION |
Note: Bibliography reflects the latest situation |
|
|
(54) |
FLOURESCENT DYES FOR USE IN GLUCOSE SENSING FLUORESZENZFARBSTOFFE ZUR VERWENDUNG BEI DER GLUKOSEERFASSUNG COLORANTS FLUORESCENTS POUR UNE UTILISATION DANS LA DÉTECTION DU GLUCOSE |
|
|
|||||||||||||||||||||||||||||||
Note: Within nine months from the publication of the mention of the grant of the European patent, any person may give notice to the European Patent Office of opposition to the European patent granted. Notice of opposition shall be filed in a written reasoned statement. It shall not be deemed to have been filed until the opposition fee has been paid. (Art. 99(1) European Patent Convention). |
RELATED APPLICATIONS
BACKGROUND OF THE INVENTION
Field of the Invention
Description of the Related Art
SUMMARY OF THE INVENTION
R2 is
R3 is -(CH2)n-A-M+,
wherein n is 1-4,
wherein A- is an anionic group selected from the group consisting of SO3-, HPO3-, CO2- and
, and
wherein M+ is a cationic group selected from the group consisting of H+, an alkali metal ion, Li+, Na+, K+, Rb+, Cs+, Fr+, an onium ion and NR4+, wherein R is selected from the group consisting of alkyl, alkylaryl and aromatic
groups;
R4 is
R5 is selected from the group consisting of
and
wherein n is equal to 1-10, n' is equal to 2-4, and Y is selected from the group consisting
ofNH and O;
R6 is selected from the group consisting of NHR7, OR7 and CO2H; and
R7 is H or an ethylenically unsaturated group selected from the group consisting of
methacryloyl, acryloyl, styryl, acrylamido and methacrylamido.
R3 is -(CH2)n-A-M+,
wherein n is 1-4,
wherein A- is an anionic group selected from the group consisting of SO3-, HPO3-, CO2- and
, and
wherein M+ is a cationic group selected from the group consisting of H+, an alkali metal ion, Li+, Na+, K+, Rb+, Cs+, Fr+, an onium ion and NR4+, wherein R is selected from the group consisting of alkyl, alkylaryl and aromatic
groups;
R8 is selected from the group consisting of
and
wherein n is equal to 1-10, n' is equal to 2-4;
R9 is selected from the group consisting of NHR10, OR10 and CO2H; and
R10 is H or an ethylenically unsaturated group selected from the group consisting of methacryloyl, acryloyl, styryl, acrylamido and methacrylamido.
R2 is
R3 is -(CH2)n -A-M+,
wherein n is 1-4,
wherein A- is an anionic group selected from the group consisting of SO3-, HPO3-, CO2- and
, and
wherein M+ is a cationic group selected from the group consisting of H+, an alkali metal ion, Li+, Na+, K+, Rb+, Cs+, Fr+, an onium ion and NR4+, wherein R is selected from the group consisting of alkyl, alkylaryl and aromatic
groups;
R4 is
R5 is selected from the group consisting of
and
wherein n is equal to 1-10, n' is equal to 2-4 and Y is selected from the group consisting
ofNH and O;
R6 is selected from the group consisting of NHR7, OR7 and CO2H;
R7 is H or an ethylenically unsaturated group selected from the group consisting of methacryloyl, acryloyl, styryl, acrylamide and methacrylamido; and
Z is an amino protecting group selected from the group consisting of phthalimido, Boc and Fmoc).
R3 is -(CH2)n -A-M+,
wherein n is 1-4,
wherein A- is an anionic group selected from the group consisting of SO3-, NPO3-, CO2- and
, and
wherein M+ is a cationic group selected from the group consisting of H+, an alkali metal ion, Li+, Na+, K+, Rb+, Cs+, Fr+, an onium ion and NR4+, wherein R is selected from the group consisting of alkyl, alkylaryl and aromatic
groups;
R8 is selected from the group consisting of
and
wherein n is equal to 1-10, n' is equal to 2-4;
R9 is selected from the group consisting of NHR10, OR10 and CO2H; and
R10 is H or an ethylenically unsaturated group selected from the group consisting of methacryloyl, acryloyl, styryl, acrylamide and methacrylamido.
BRIEF DESCRIPTION OF THE DRAWINGS
Figure 1. Stern-Volmer Quenching of HPTS-CysMA/3,3'-oBBV in Solution. Shows the relative emission change (Stern-Volmer curve) upon addition of 3,3'-oBBV indicating the quenching of HPTS-CysMA with 3,3'-oBBV.
Figure 2. Glucose Response of HPTS-CysMA/3,3'-oBBV in Solution. Shows the fluorescence emission measured after addition of glucose to HPTS-CysMA and 3,3'-oBBV.
Figure 3. Fluorescence Spectra of HPTS-CysMA in Hydrogel. Shows fluorescence excitation and emission spectra of a polymer hydrogel comprising HPTS-CysMA.
Figure 4. Time Drive of HPTS-Cys-MA in hydrogel at Different pHs, Em = 532 nm. Shows time drive of HPTS-CysMA in hydrogel at different pH's.
Figure 5. pH profile of HPTS-Cys-MA at two different excitations, Em = 532 nm. Shows pH profile of HPTS-CysMA at two different excitation wavelengths.
Figure 6. Glucose Response of HPTS-CysMA/3,3'-oBBV in hydrogel. Shows the glucose response of HPTS-CysMA/3,3'-oBBV in a hydrogel.
Figure 7 Fluorescence Spectra of HPTS-CysMA and HPTS-LysMA. Shows a comparison of the fluorescence spectra of HPTS-Cys-MA and HPTS-Lys-MA. (1x10-5 M); Ex Slit 8 nm, Em Slit 12 nm.
Figure 8 Comparison of Stern-Volmer Quenching Using HPTS-LysMA and HPTS-CysMA with 3,3'-oBBV, [Dye] = 1x10-5 M. Shows a comparison of 3,3'-oBBV Stern-Volmer quenching study using HPTS-Cys-MA and HPTS-Lys-MA.
Figure 9 Comparison of Glucose Modulation Using HPTS-LysMA and HPTS-CysMA with 3,3'-oBBV; [Dye] = 1x10-5 M; Q/D = 150. Shows a comparison glucose modulation using HPTS-Cys-MA and HPTS-Lys-MA with 3,3'-oBBV.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
Fluorescent Dyes
R2 is
R3 is -(CH2)n-A-M+,
wherein n is 1-4,
wherein A- is an anionic group selected from the group consisting of SO3-, HPO3-, CO2- and
, and
wherein M+ is a cationic group selected from the group consisting of H+, an alkali metal ion, Li+, Na+, K+, Rb+, Cs+, Fr+, an onium ion and NR4+, wherein R is selected from the group consisting of alkyl, alkylaryl and aromatic
groups);
R4 is
R5 is selected from the group consisting of
and
wherein n is equal to 1-10, n' is equal to 2-4 and Y is selected from the group consisting
of NH and O;
R6 is selected from the group consisting of NHR7, OR7and CO2H; and
R7 is H or an ethylenically unsaturated group selected from the group consisting of methacryloyl, acryloyl, styryl, acrylamide and methacrylamido.
R3 is -(CH2)n-A-M+,
wherein n is 1-4,
wherein A- is an anionic group selected from the group consisting of SO3-, HPO3-, CO2- and
, and
wherein M+ is a cationic group selected from the group consisting of H+, an alkali metal ion, Li+, Na+, K+, Rb+, Cs+, Fr+, an onium ion and NR4+, wherein R is selected from the group consisting of alkyl, alkylaryl and aromatic
groups;
R4 is
R8 is selected from the group consisting of
and
wherein n is equal to 1-10, n' is equal to 2-4;
R9 is selected from the group consisting of NHR10, OR10 and CO2H; and
R10 is H or an ethylenically unsaturated group selected from the group consisting of methacryloyl, acryloyl, styryl, acrylamido and methacrylamido.
First Method of making the generic class of compounds to which HPTS-Cys-MA belongs
R2 is
R3 is -(CH2)n-A-M+,
wherein n is 1-4,
wherein A- is an anionic group selected from the group consisting of SO3-, HPO3-, CO2- and
, and
wherein M+ is a cationic group selected from the group consisting of N+, an alkali metal ion, Li+, Na+, K4, Rb+, Cs+, Fr+, an onium ion and NR4+, wherein R is selected from the group consisting of alkyl, alkylaryl and aromatic
groups;
R4 is
R5 is selected from the group consisting of
and
wherein n is equal to 1-10, n' is equal to 2-4 and Y is selected from the group consisting
ofNH and O;
R6 is selected from the group consisting of NHR7, OR7and CO2H;
R7 is H or an ethylenically unsaturated group selected from the group consisting of methacryloyl, acryloyl, styryl, acrylamide and methacrylamido; and
Z is an amino protecting group selected from the group consisting of phthalimido, Boc and Fmoc).
Second method of making the generic class of compounds to which HPTS-Cys-MA belongs
R3 is -(CH2)n-A-M+,
wherein n is 1-4,
wherein A- is an anionic group selected from the group consisting of SO3-, HPO3-, CO2- and
, and
wherein M+ is a cationic group selected from the group consisting of H+, an alkali metal ion, Li+, Na+, K+, Rb+, Cs+, Fr+, an onium ion and NR4+, wherein R is selected from the group consisting of alkyl, alkylaryl and aromatic
groups;
R8 is selected from the group consisting of
and
wherein n is equal to 1-10, n' is equal to 2-4;
R9 is selected from the group consisting of NHR10, OR10 and CO2H; and
R10 is H or an ethylenically unsaturated group selected from the group consisting of methacryloyl, acryloyl, styryl, acrylamide and methacrylamido.
First Specific Method of Synthesizing HPTS-Cys-MA
Second Specific Method of Synthesizing HPTS-Cys-MA
Step 1: Synthesis of TBCys:
Step 2: Synthesis of Phth acid:
Step 3: Synthesis of Phth MA:
Step 4: Synthesis of AminoCysMA:
Step 5: Synthesis of HPTS-Cys-MA:
Quenchers
Functional Analysis of Dyes
Solution Studies
Polymer Studies
Comparison Studies
Glucose Sensors
R2 is
R3 is -(CH2)n-A-M+,
wherein n is 1-4,
wherein A- is an anionic group selected from the group consisting of SO3-, HPO3-, CO2- and
, and
wherein M+ is a cationic group selected from the group consisting of H+, an alkali metal ion, Li+, Na+, K+, Rb+, Cs+, Fr+, an onium ion and NR4+, wherein R is selected from the group consisting of alkyl, alkylaryl and aromatic
groups;
R4 is
R5 is selected from the group consisting of
and
wherein n is equal to 1-10, n' is equal to 2-4 and Y is selected from the group consisting
of NH and O;
R6 is selected from the group consisting of NHR7, OR7 and CO2H; and
R7 is H or an ethylenically unsaturated group selected from the group consisting of methacryloyl, acryloyl, styryl, acrylamido and methacrylamido.
R3 is -(CH2)n -A-M+,
wherein n is 1-4,
wherein A- is an anionic group selected from the group consisting of SO3-, HPO3-, CO2- and
, and
wherein M+ is a cationic group selected from the group consisting of H+, an alkali metal ion, Li+, Na+, K+, Rb+, Cs+, Fr+, an onium ion and NR4+, wherein R is selected from the group consisting of alkyl, alkylaryl and aromatic
groups;
R4 is
R8 is selected from the group consisting of
and
wherein n is equal to 1-10, n' is equal to 2-4;
R9 is selected from the group consisting of NHR10, OR10 and CO2H; and
R10 is H or an ethylenically unsaturated group selected from the group consisting of methacryloyl, acryloyl, styryl, acrylamido and methacrylamido.
R2 is
R3 is -(CH2)n-A-M+,
wherein n is 1-4,
wherein A- is an anionic group selected from the group consisting of SO3-, HPO3-, CO2- and
, and
wherein M+ is a cationic group selected from the group consisting of H+, an alkali metal ion, Li+, Na+, K+, Rb+, Cs+, Fr+, an onium ion and NR4+, wherein R is selected from the group consisting of alkyl, alkylaryl and aromatic
groups;
R4 is
R5 is selected from the group consisting of
and
wherein n is equal to 1-10, n' is equal to 2-4 and Y is selected from the group consisting
of NH and O;
R6 is selected from the group consisting of NHR7, OR7 and CO2H;
R7 is H or an ethylenically unsaturated group selected from the group consisting of methacryloyl, acryloyl, styryl, acrylamido and methacrylamido; and
Z is an amino protecting group selected from the group consisting of Phthalimido, Boc and Fmoc.
R3 is -(CH2)n-A-M+,
wherein n is 1-4,
wherein A- is an anionic group selected from the group consisting of SO3-, HPO3-, CO2- and
, and
wherein M+ is a cationic group selected from the group consisting of H+, an alkali metal ion, Li+, Na+, K+, Rb+, Cs+, Fr+, an onium ion and NR4+, wherein R is selected from the group consisting of alkyl, alkylaryl and aromatic
groups;
R8 is selected from the group consisting of
and
wherein n is equal to 1-10, n' is equal to 2-4;
R9 is selected from the group consisting of NHR10, OR10 and CO2H; and
R10 is H or an ethylenically unsaturated group selected from the group consisting of methacryloyl, acryloyl, styryl, acrylamido and methacrylamido.
making TBCys as follows:
making Phth acid as follows:
making Phth MA as follows:
making AminoCysMA as follows:
and
making HPTS-Cys-MA as follows:
R2 gleich
ist;
R3 gleich -(CH2)n-A-M+ ist,
worin n gleich 1-4 ist,
wobei A- eine anionische Gruppe ist, ausgewählt aus der Gruppe, bestehend aus SO3-, HPO3-, CO2- und
und wobei M+ eine kationische Gruppe ist, ausgewählt aus der Gruppe, bestehend aus H+, einem Alkalimetallion, Li+, Na+, K+, Rb+, Cs+, Fr+, einem Oniumion und NR4+, wobei R ausgewählt ist aus der Gruppe, bestehend aus Alkyl-, Alkylaryl- und aromatischen
Gruppen;
R4 gleich
ist;
R5 ausgewählt ist aus der Gruppe bestehend aus
und
worin n gleich 1-10 ist, n' gleich 2-4 ist und Y ausgewählt ist aus der Gruppe, bestehend
aus NH und O;
R6 ausgewählt ist aus der Gruppe, bestehend aus NHR7, OR7 and CO2H, und
R7 gleich H oder eine ethylenisch ungesättigte Gruppe ist, ausgewählt aus der Gruppe, bestehend aus Methacryloyl, Acryloyl, Styryl, Acrylamido und Methacrylamido.
R3 gleich -(CH2)n-A-M+ ist,
worin n gleich 1-4 ist,
wobei A- eine anionische Gruppe ist, ausgewählt aus der Gruppe, bestehend aus SO3-, HPO3-, CO2- und
und wobei M+ eine kationische Gruppe ist, ausgewählt aus der Gruppe, bestehend aus H+, einem Alkalimetallion, Li+, Na+, K+, Rb+, Cs+, Fr+, einem Oniumion und NR4+, wobei R ausgewählt ist aus der Gruppe, bestehend aus Alkyl-, Alkylaryl- und aromatischen
Gruppen;
R4 gleich
ist;
R8 ausgewählt ist aus der Gruppe, bestehend aus
und
worin n gleich 1-10 ist, n' gleich 2-4 ist;
R9 ausgewählt ist aus der Gruppe, bestehend aus NHR10, OR10 und CO2H, und
R10 gleich H oder eine ethylenisch ungesättigte Gruppe ist, ausgewählt aus der Gruppe, bestehend aus Methacryloyl, Acryloyl, Styryl, Acrylamido und Methacrylamido.
R2 gleich
ist;
R3 gleich -(CH2)n-A-M+ ist,
worin n gleich 1-4 ist,
wobei A- eine anionische Gruppe ist, ausgewählt aus der Gruppe, bestehend aus SO3-, HPO3-, CO2- und
und wobei M+ eine kationische Gruppe ist, ausgewählt aus der Gruppe, bestehend aus H+, einem Alkalimetallion, Li+, Na+, K+, Rb+, Cs+, Fr+, einem Oniumion und NR4+, wobei R ausgewählt ist aus der Gruppe, bestehend aus Alkyl-, Alkylaryl- und aromatischen
Gruppen;
R4 gleich
ist;
R5 ausgewählt ist aus der Gruppe bestehend aus
und
worin n gleich 1-10 ist, n' gleich 2-4 ist und Y ausgewählt ist aus der Gruppe, bestehend
aus NH und O;
R6 ausgewählt ist aus der Gruppe, bestehend aus NHR7, OR7 and CO2H;
R7 gleich H oder eine ethylenisch ungesättigte Gruppe ist, ausgewählt aus der Gruppe, bestehend aus Methacryloyl, Acryloyl, Styryl, Acrylamido und Methacrylamido, und
Z eine Aminoschutzgruppe darstellt, ausgewählt aus der Gruppe bestehend aus Phthalimido, Boc und Fmoc.
R3 gleich -(CH2)n-A-M+ ist,
worin n gleich 1-4 ist,
wobei A- eine anionische Gruppe ist, ausgewählt aus der Gruppe, bestehend aus SO3-, HPO3-, CO2- und
und wobei M+ eine kationische Gruppe ist, ausgewählt aus der Gruppe, bestehend aus H+, einem Alkalimetallion, Li+, Na+, K+, Rb+, Cs+, Fr+, einem Oniumion und NR4+, wobei R ausgewählt ist aus der Gruppe, bestehend aus Alkyl-, Alkylaryl- und aromatischen
Gruppen;
R8 ausgewählt ist aus der Gruppe, bestehend aus
und
worin n gleich 1-10 ist, n' gleich 2-4 ist;
R9 ausgewählt ist aus der Gruppe, bestehend aus NHR10, OR10 und CO2H, und
R10 gleich H oder eine ethylenisch ungesättigte Gruppe ist, ausgewählt aus der Gruppe, bestehend aus Methacryloyl, Acryloyl, Styryl, Acrylamido und Methacrylamido.
Herstellen von TBCys wie folgt:
Herstellen der Phtalsäure wie folgt:
Herstellen von Phth MA wie folgt:
und
Herstellen von AminoCysMA wie folgt:
und
Herstellen von HPTS-Cys-MA wie folgt:
R2 est
R3 est -(CH2)n-A-M+,
où n vaut 1 à 4,
où A- est un groupe anionique choisi dans le
groupe constitué par SO3-, HPO3-, CO2- et
et
où M+ est un groupe cationique choisi dans le groupe constitué par H+, un ion de métal alcalin, Li+, Na+, K+, Rb+, Cs+, Fr+, un ion onium et NR4+, où R est choisi dans le groupe constitué par les groupes alkyle, alkylaryle et aromatiques ;
R4 est
R5 est choisi dans le groupe constitué par Y-(CH2)n-R6 et
où n est égal à 1 à 10, n' est égal à 2 à 4 et Y est choisi dans le groupe constitué
par NH et 0 ;
R6 est choisi dans le groupe constitué par NHR7, OR7 et CO2H ;
R7 est H ou un groupe éthyléniquement insaturé choisi dans le groupe constitué par un groupe méthacryloyle, acryloyle, styryle, acrylamido et méthacrylamido ; et
Z est un groupe protecteur d'amino choisi dans le groupe constitué par phthalimido, Boc et Fmoc.
R3 est -(CH2)n-A-M+,
où n vaut 1 à 4,
où A- est un groupe anionique choisi dans le groupe constitué par SO3-, HPO3-, CO2- et
et
où M+ est un groupe cationique choisi dans le groupe constitué par H+, un ion de métal alcalin, Li+, Na+, K+, Rb+, Cs+, Fr+, un ion onium et NR4+, où R est choisi dans le groupe constitué par les groupes alkyle, alkylaryle et aromatiques ;
R8 est choisi dans le groupe constitué
par -(CH2)n-R9 et
où n est égal à 1 à 10, n' est égal à 2 à 4 ;
R9 est choisi dans le groupe constitué par NHR10, OR10 et CO2H ; et
R10 est H ou un groupe éthyléniquement insaturé choisi dans le groupe constitué par un groupe méthacryloyle, acryloyle, styryle, acrylamido et méthacrylamido.
préparer du TBCys comme suit :
préparer de l'acide Phth comme suit :
préparer du Phth MA comme suit :
préparer de l'aminoCysMA comme suit :
et
préparer du HPTS-Cys-MA comme suit :
REFERENCES CITED IN THE DESCRIPTION
Patent documents cited in the description
Non-patent literature cited in the description