Tetrahydroisoquinoline sulfonamide derivatives, the preparation thereof, and the use of the same in therapeutics
The disclosure relates to tetrahydroisoquinoline sulfonamide compounds of formula I: wherein R1, R2, n and B are as defined in the disclosure, their preparation and their use in therapies for the treatment of central nervous system diseases such as vigilance and sleep disorders, narcolepsy, Alzheimer's disease and other dementias, Parkinson's disease, attention disorders in hyperkinetic children, memory and learning disorders, epilepsy, schizophrenia, moderate cognitive disorders, depression, anxiety, sexual dysfunction, dizziness and travel sickness.
1. A compound of formula II:
wherein Pg represents a trifluoroacetyl group;
n represents a value from 1 to 6;
—(C)n- represents a C 1-6 alkylidene group optionally substituted with 1 to 4 substituents selected from halogen, hydroxyl, nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino and C 1-3 alkoxy;
R1 represents a hydrogen atom or a C 1-6 alkyl group;
B represents:
NR3R4, where R3 and R4 represent, independently of one another, a C 1-6 alkyl group, or a hydrogen atom; or R3 and R4 together represent a C 1-6 alkylidene group, a C 2-8 alkenylidene group, a C 1-3 alkylidene-O—C 1-3 alkylidene group, or a C 1-3 alkylidene-N(R5)—C 1-3 alkylidene group where R5 represents a hydrogen atom, or a C 1-3 alkyl or C 1-6 alkylcarbonyl group, it being possible for these C 1-3 alkyl and C 1-6 alkylcarbonyl groups to be substituted with a halogen atom, or a hydroxyl, C 1-3 alkoxy, nitro, cyano or amino group;
or B represents an aminocycle, linked via a carbon atom to the group —NR1-(C)n-, said aminocycle being selected from aziridine, azetidine, pyrrolidine, piperidine and morpholine;
wherein the groups R3 and R4 and also the aminocycle are optionally substituted with 1 to 4 substituents selected from a phenyl, a benzyl, a halogen, a hydroxyl, a nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino, C 1-3 alkyl and C 1-3 alkoxy group; and the nitrogen atom being optionally substituted with a C 1-3 alkyl;
or a salt thereof.
2. The compound according to claim 1 , wherein:
R1 represents a hydrogen atom or a C 1-2 alkyl group; and
B represents NR3R4, wherein R3 and R4 represent, independently of one another, a C 1-4 alkyl group; or
when R3 and R4 together represent a C 1-6 alkylidene group, a C 2-8 alkenylidene group, a C 1-3 alkylidene-O—C 1-3 alkylidene group or a C 1-3 alkylidene-N(R5)-C 1-3 alkylidene group, B represents a group selected from:
or B represents an aminocycle linked via a carbon to the group —NR1-(C)n, chosen from aziridine, azetidine, pyrrolidine, piperidine and morpholine;
the groups R3, R4 and R5 and also the aminocycle being optionally substituted;
or a salt thereof.
3. The compound according to claim 2 , wherein, when B represents NR3R4 and R3 and R4 together form a C 1-6 alkylidene group, a C 2-8 alkenylidene group, a C 1-3 alkylidene-O—C 1-3 alkylidene group or a C 1-3 alkylidene-N(R5)-C 1-3 alkylidene group, or when B represents an aminocycle, then B is selected from the group consisting of:
4. The compound according to claim 1 , selected from the group consisting of:
N-[2-(3-Diethylaminopropyl)-2-(2,2,2-trifluoroacetyl)-1,2,3,4-tetrahydroisoquinoline-7-sulfonamide;
N-[2-(3-Diethylaminopropyl)-2-(2,2,2-trifluoroacetyl)-1,2,3,4-tetrahydroisoquinoline-7-sulfonamide; and
N-[2-(3-Diethylaminopropyl)-N-methyl-2-(2,2,2-trifluoroacetyl)-1,2,3,4-tetrahydroisoquinoline-7-sulfonamide;
or a salt thereof.
5. The compound according to claim 1 , which is N-[2-(1-Methylpyrrolidin-2-yl)ethyl]-2-(2,2,2-trifluoroacetyl)-1,2,3,4-tetrahydroisoquinoline-7-sulfonamide, or a salt thereof.
6. A compound of formula II:
wherein Pg represents a trifluoroacetyl group;
n represents a value from 1 to 6;
—(C)n- represents a C 1-6 alkylidene group optionally substituted with 1 to 4 substituents selected from halogen, hydroxyl, nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino and C 1-3 alkoxy;
R1 represents a hydrogen atom or a C 1-6 alkyl group;
B represents:
NR3R4, where R3 and R4 together represent a C 1-6 alkylidene group, a C 2-8 alkenylidene group, a C 1-3 alkylidene-O—C 1-3 alkylidene group, or a C 1-3 alkylidene-N(R5)—C 1-3 alkylidene group where R5 represents a hydrogen atom, or a C 1-3 alkyl or C 1-6 alkylcarbonyl group, it being possible for these C 1-3 alkyl and C 1-6 alkylcarbonyl groups to be substituted with a halogen atom, or a hydroxyl, C 1-3 alkoxy, nitro, cyano or amino group;
or B represents an aminocycle, linked via a carbon atom to the group —NR1-(C)n-, said aminocycle being selected from aziridine, azetidine, pyrrolidine, piperidine and morpholine;
wherein the groups R3 and R4 and also the aminocycle are optionally substituted with 1 to 4 substituents selected from a phenyl, a benzyl, a halogen, a hydroxyl, a nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino, C 1-3 alkyl and C 1-3 alkoxy group; and the nitrogen atom being optionally substituted with a C 1-3 alkyl;
or a salt thereof.
7. A process for preparing a compound of formula I:
wherein n represents a value from 1 to 6;
—(C)n- represents a C 1-6 alkylidene group optionally substituted with 1 to 4 substituents selected from halogen, hydroxyl, nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino and C 1-3 alkoxy;
R1 represents a hydrogen atom, or a C 1-6 alkyl group;
R2 represents a C 1-6 alkyl or C 3-6 cycloalkyl group optionally substituted with 1 to 4 substituents selected from a halogen atom, a hydroxyl, nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino, C 1-2 perhaloalkyl, C 1-3 haloalkyl, C 1-3 alkoxy, C 3-6 cycloalkyl, a monocyclic heteroaryl, and an aryl; the aryl being optionally substituted with 1 to 4 substituents selected from a halogen atom, a hydroxyl, nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino, C 1-3 alkyl, C 1-2 perhaloalkyl, C 1-3 haloalkyl, C 1-3 alkoxy and a C 1-3 alkylidenedioxy group;
B represents NR3R4, wherein
R3 and R4 represent, independently of one another, a C 1-6 alkyl group, or a hydrogen atom; or R3 and R4 together represent a C 1-6 alkylidene group, a C 2-8 alkenylidene group, a C 1-3 alkylidene-O—C 1-3 alkylidene group, or a C 1-3 alkylidene-N(R5)-C 1-3 alkylidene group where R5 represents a hydrogen atom, or a C 1-3 alkyl or C 1-6 alkylcarbonyl group, it being possible for these C 1-3 alkyl and C 1-6 alkylcarbonyl groups to be substituted with a halogen atom, or a hydroxyl, C 1-3 alkoxy, nitro, cyano or amino group;
or B represents an aminocycle, linked via a carbon to the group —NR1-(C)n-, said aminocycle being selected from aziridine, azetidine, pyrrolidine, piperidine and morpholine;
the groups R3 and R4 and also the aminocycle being optionally substituted with 1 to 4 substituents selected from a phenyl, a benzyl, a halogen, a hydroxyl, a nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino, C 1-3 alkyl and C 1-3 alkoxy group; the nitrogen atom being optionally substituted with a C 1-3 alkyl;
or a salt, a hydrate or a solvate thereof;
said method comprising reductive aminating a compound of the formula
wherein R1, n, —(C)n-, and B are as defined for the compound of formula I,
with a compound of formula III:
wherein, after the reaction, R6 and R7 together with carbonyl carbon form R2 as defined above for the compound of formula I.
8. The process according to claim 7 , further comprising deprotecting a compound of formula II:
wherein Pg is a protective group, and R1, n, —(C)n-, and B are as defined in claim 7 for the compound of formula I, to form the compound of the formula:
9. A process for preparing a compound of formula I:
wherein n represents a value from 1 to 6;
—(C)n- represents a C 1-6 alkylidene group optionally substituted with 1 to 4 substituents selected from halogen, hydroxyl, nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino and C 1-3 alkoxy;
R1 represents a hydrogen atom, or a C 1-6 alkyl group;
R2 represents a C 1-6 alkyl or C 3-6 cycloalkyl group optionally substituted with 1 to 4 substituents selected from a halogen atom, a hydroxyl, nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino, C 1-2 perhaloalkyl, C 1-3 haloalkyl, C 1-3 alkoxy, C 3-6 cycloalkyl, a monocyclic heteroaryl, and an aryl; the aryl being optionally substituted with 1 to 4 substituents selected from a halogen atom, a hydroxyl, nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino, C 1-3 alkyl, C 1-2 perhaloalkyl, C 1-3 haloalkyl, C 1-3 alkoxy and a C 1-3 alkylidenedioxy group;
B represents NR3R4, wherein
R3 and R4 represent, independently of one another, a C 1-6 alkyl group, or a hydrogen atom; or R3 and R4 together represent a C 1-6 alkylidene group, a C 2-8 alkenylidene group, a C 1-3 alkylidene-O—C 1-3 alkylidene group, or a C 1-3 alkylidene-N(R5)-C 1-3 alkylidene group where R5 represents a hydrogen atom, or a C 1-3 alkyl or C 1-6 alkylcarbonyl group, it being possible for these C 1-3 alkyl and C 1-6 alkylcarbonyl groups to be substituted with a halogen atom, or a hydroxyl, C 1-3 alkoxy, nitro, cyano or amino group; or
B represents an aminocycle, linked via a carbon to the group —NR1-(C)n-, said aminocycle being selected from aziridine, azetidine, pyrrolidine, piperidine and morpholine;
the groups R3 and R4 and also the aminocycle being optionally substituted with 1 to 4 substituents selected from a phenyl, a benzyl, a halogen, a hydroxyl, a nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino, C 1-3 alkyl and C 1-3 alkoxy group; the nitrogen atom being optionally substituted with a C 1-3 alkyl;
or a salt, a hydrate or a solvate thereof;
said process comprising deprotecting a compound of formula II:
wherein Pg is a protective group, and R1, n, —(C)n-, and B are as defined above for the compound of formula I, to form the compound of the formula:
wherein R1, n, —(C)n-, and B are as defined above for the compound of formula I;
and then reductive aminating said compound of the formula
with a compound of formula III:
wherein, after the reaction, R6 and R7 together with carbonyl carbon form R2 as defined above for the compound of formula I; to form the compound of formula I.
10. A process for preparing the compound of formula II:
wherein
Pg is a protective group;
n represents a value from 1 to 6;
—(C)n- represents a C 1-6 alkylidene group optionally substituted with 1 to 4 substituents selected from halogen, hydroxyl, nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino and C 1-3 alkoxy;
R1 represents a hydrogen atom, or a C 1-6 alkyl group;
B represents NR3R4, wherein
R3 and R4 represent, independently of one another, a C 1-6 alkyl group, or a hydrogen atom; or R3 and R4 together represent a C 1-6 alkylidene group, a C 2-8 alkenylidene group, a C 1-3 alkylidene-O—C 1-3 alkylidene group, or a C 1-3 alkylidene-N(R5)—C 1-3 alkylidene group where R5 represents a hydrogen atom, or a C 1-3 alkyl or C 1-6 alkylcarbonyl group, it being possible for these C 1-3 alkyl and C 1-6 alkylcarbonyl groups to be substituted with a halogen atom, or a hydroxyl, C 1-3 alkoxy, nitro, cyano or amino group; or
B represents an aminocycle, linked via a carbon to the group —NR1-(C)n-, said aminocycle being selected from aziridine, azetidine, pyrrolidine, piperidine and morpholine;
the groups R3 and R4 and also the aminocycle being optionally substituted with 1 to 4 substituents selected from a phenyl, a benzyl, a halogen, a hydroxyl, a nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino, C 1-3 alkyl and C 1-3 alkoxy group; the nitrogen atom being optionally substituted with a C 1-3 alkyl;
said method comprising reacting a compound of formula V:
wherein R1, n, —(C)n-, and B are as defined for the compound of formula II; with a compound of formula IV:
wherein Pg is as defined above for the compound of formula II.
11. A process for preparing a compound of formula II:
wherein
Pg is a protective group;
n represents a value from 1 to 6;
—(C)n- represents a C 1-6 alkylidene group optionally substituted with 1 to 4 substituents selected from halogen, hydroxyl, nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino and C 1-3 alkoxy;
R1 represents a hydrogen atom, or a C 1-6 alkyl group;
B represents NR3R4, wherein
R3 and R4 represent, independently of one another, a C 1-6 alkyl group, or a hydrogen atom; or R3 and R4 together represent a C 1-6 alkylidene group, a C 2-8 alkenylidene group, a C 1-3 alkylidene-O—C 1-3 alkylidene group, or a C 1-3 alkylidene-N(R5)-C 1-3 alkylidene group where R5 represents a hydrogen atom, or a C 1-3 alkyl or C 1-6 alkylcarbonyl group, it being possible for these C 1-3 alkyl and C 1-6 alkylcarbonyl groups to be substituted with a halogen atom, or a hydroxyl, C 1-3 alkoxy, nitro, cyano or amino group; or
B represents an aminocycle, linked via a carbon to the group —NR1-(C)n-, said aminocycle being selected from aziridine, azetidine, pyrrolidine, piperidine and morpholine;
the groups R3 and R4 and also the aminocycle being optionally substituted with 1 to 4 substituents selected from a phenyl, a benzyl, a halogen, a hydroxyl, a nitro, cyano, amino, C 1-3 monoalkylamino, C 2-6 dialkylamino, C 1-3 alkyl and C 1-3 alkoxy group; the nitrogen atom being optionally substituted with a C 1-3 alkyl;
said method comprising reacting a compound of formula VII:
wherein Pg and R1 are as defined for the compound of formula II;
with a compound of formula VIII:
wherein n, —(C)n-, and B are as defined for the compound of formula II.
12. The process according to claim 11 , further comprising reacting a compound of formula IV:
wherein Pg is as defined for the compound of formula Ii; with a compound of formula VI:
wherein R1 is as defined for the compound of formula II, to form the compound of formula VII.