Compositions and methods for inhibition of the JAK pathway

US9920041B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9920041-B2
Application numberUS-201715439705-A
CountryUS
Kind codeB2
Filing dateFeb 22, 2017
Priority dateJul 28, 2010
Publication dateMar 20, 2018
Grant dateMar 20, 2018

How to read this patent

A practical reading order for non-experts. Skip the full description unless you need deep technical detail.

  1. Title

    What the patent document calls the invention.

  2. Abstract

    A short plain-language summary of the technical disclosure.

  3. Assignees and inventors

    Who owns or filed the patent and who is credited as inventor.

  4. Key dates

    Filing, priority, publication, and grant dates set the timeline.

  5. First independent claim

    The legal scope of protection — read this for what is actually claimed.

  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

    Prior art links and similar publications in this corpus.

Abstract

Official abstract text for this publication.

Disclosed are compounds of formula I, compositions containing them, and methods of use for the compounds and compositions in the treatment of conditions in which modulation of the JAK pathway or inhibition of JAK kinases, particularly JAK 2 and JAK3, are therapeutically useful. Also disclosed are methods of making the compounds.

First claim

Opening claim text (preview).

We claim: 1. A compound of formula IA: or salt thereof, wherein: R 1 is H, optionally substituted C 1-6 alkyl, C(O)—C 1-6 alkyl, CO 2 —C 1-6 alkyl or R 50 ; each R 50 is —C(R 9 ) 2 -A-R 10 , where A is O or S; each R 9 is independently for each occurrence H, optionally substituted C 1-6 alkyl, optionally substituted C 6-10 aryl or optionally substituted C 7-16 arylalkyl; or alternatively, two R 9 , together with the carbon to which they are attached, form an optionally substituted C 3-8 cycloalkyl group or an optionally substituted 3-8 membered heteroalicyclyl; R 10 is R a , —P(O)(OR 11 ) 2 , —P(O)(OR 11 )N(R 12 ) 2 or —P(O)(N(R 12 ) 2 ) 2 ; each R 11 is independently for each occurrence R a or a monovalent cationic group; or two R 11 , together with the atoms to which they are attached, form a 4-8 membered cyclic phosphate group; each R 12 is independently for each occurrence R c or —C 1-3 alkyl-N(R c ) 2 ; or two R 12 , each on separate nitrogens of —P(O)(N(R 12 ) 2 ) 2 , together with the atoms to which they are attached, form a 4-8 membered cyclic phosphonic acid bisamide group; or one R 12 along with R 11 , of the group —P(O)(OR 11 )N(R 12 ) 2 , together with the atoms to which they are attached, form a 4-8 membered cyclic phosphonamidate group; each of R 2a-2c is independently for each occurrence H, R e , R b , R e substituted with one or more of the same or different R a and/or R b , —OR e substituted with one or more of the same or different R a and/or R b , —SR e substituted with one or more of the same or different R a and/or R b , —C(O)R e substituted with one or more of the same or different R a and/or R b , —N(R a )R e where R e is substituted with one or more of the same or different R a and/or R b , —S(O) 2 R e substituted with one or more of the same or different R a and/or R b , —N(R a )—S(O) 2 R e where R e is substituted with one or more of the same or different R a and/or R b , —B(OR a ) 2 , —B(N(R c ) 2 ) 2 , —(C(R a ) 2 ) m —R b , —O—(C(R a ) 2 ) m —R b , —S—(C(R a ) 2 ) m —R b , —O—(C(R b ) 2 ) m —R a , —N(R a )—(C(R a ) 2 ) m —R b , —O—(CH 2 ) m —CH((CH 2 ) m R b )R b , —C(O)N(R a )—(C(R a ) 2 ) m —R b , —O—(C(R a ) 2 ) m —C(O)N(R a )—(C(R a ) 2 ) m —R b , —N((C(R a ) 2 ) m R b ) 2 , —S—(C(R a ) 2 ) m —C(O)N(R a )—(C(R a ) 2 ) m —R b , —N(R a )—C(O)—N(R a )—(C(R a ) 2 ) m —R b , —N(R a )—C(O)—(C(R a ) 2 ) m —C(R a )(R b ) 2 or —N(R a )—(C(R a ) 2 ) m —C(O)—N(R a )—(C(R a ) 2 ) m —R b ; R 2d is F; R 2e is halo or optionally substituted C 1-6 alkyl; each R a is independently for each occurrence H, deuterium, C 1-6 alkyl, C 3-8 cycloalkyl, C 4-11 cycloalkylalkyl, C 6-10 aryl, C 7-16 arylalkyl, 2-6 membered heteroalkyl, 3-10 membered heteroalicyclyl, 4-11 membered heteroalicyclylalkyl, 5-15 membered heteroaryl or 6-16 membered heteroarylalkyl; each R b is independently for each occurrence ═O, —OR a , —O—(C(R a ) 2 ) m —OR a , haloC 1-3 alkyloxy, ═S, —SR a , ═NR a , ═NOR a , —N(R c ) 2 , halo, —CF 3 , —CN, —NC, —OCN, —SCN, —NO, —NO 2 , ═N 2 , —N 3 , —S(O)R a , —S(O) 2 R a , —SO 3 R a , —S(O)N(R c ) 2 , —S(O) 2 N(R c ) 2 , —OS(O)R a , —OS(O) 2 R a , —OSO 3 R a , —OS(O) 2 N(R c ) 2 , —C(O)R a , —CO 2 R a , —C(O)N(R c ) 2 , —C(NR a )—N(R c ) 2 , —C(NOH)—R a , —C(NOH)—N(R c ) 2 , —OC(O)R a , —OC(O)OR a , —OC(O)N(R c ) 2 , —OC(NH)—N(R c ) 2 , —OC(NR a )—N(R c ) 2 , —N(R a )—S(O) 2 H, —[N(R a )C(O)] n R a , —[N(R a )C(O)] n OR a , —[N(R a )C(O)] n N(R c ) 2 or —[N(R a )C(NR a )] n —N(R c ) 2 ; each R c is independently for each occurrence R a , or, alternatively, two R c are taken together with the nitrogen atom to which they are bonded to form a 3 to 10-membered heteroalicyclyl or a 5-10 membered heteroaryl optionally comprising one or more of the same or different additional heteroatoms and which is optionally substituted with one or more of the same or different R a and/or R d groups; each R d is ═O, —OR a , haloC 1-3 alkyloxy, C 1-6 alkyl, ═S, —SR a , ═NR a , ═NOR a , —N(R a ) 2 , halo, —CF 3 , —CN, —NC, —OCN, —SCN, —NO, —NO 2 , ═N 2 , —N 3 , —S(O)R a , —S(O 2 )R a , —SO 3 R a , —S(O)N(R a ) 2 , —S(O) 2 N(R a ) 2 , —OS(O)R a , —OS(O) 2 R a , —OSO 3 R a , —OS(O) 2 N(R a ) 2 , —C(O)R a , —CO 2 R a , —C(O)N(R a ) 2 , —C(NR a )N(R a ) 2 , —C(NOH)R a , —C(NOH)N(R a ) 2 , —OCO 2 R a , —OC(O)N(R a ) 2 , —OC(NR a )N(R a ) 2 , —[N(R a )C(O)] n R a , —(C(R a ) 2 ) n —OR a , —N(R a )—S(O) 2 R a , —C(O)—C 1-6 haloalkyl, —S(O) 2 C 1-6 haloalkyl, —OC(O)R a , —O(C(R a ) 2 ) m —OR a , —S(C(R a ) 2 ) m —OR a , —N(R a )C 1-6 haloalkyl, —P(O)(OR a ) 2 , —N(R a )—(C(R a ) 2 ) m —OR a , —[N(R a )C(O)] n OR a , —[N(R a )C(O)] n N(R a ) 2 , —[N(R a )C(NR a )] n N(R a ) 2 or —N(R a )C(O)C 1-6 haloalkyl; two R d , taken together with the atom or atoms to which they are attached, combine to form a 3-10 membered partially or fully saturated mono or bicyclic ring, optionally containing one or more heteroatoms and optionally substituted with one or more R a ; each R e is independently for each occurrence C 1-6 alkyl, C 3-8 cycloalkyl, C 4-11 cycloalkylalkyl, C 6-10 aryl, C 7-16 arylalkyl, 2-6 membered heteroalkyl, 3-10 membered heteroalicyclyl, 4-11 membered heteroalicyclylalkyl, 5-15 membered heteroaryl or 6-16 membered heteroarylalkyl; each m is 1, 2 or 3; each n is 0, 1, 2 or 3; two of R 2a-2c groups, taken together with the atom or atoms to which they are attached, combine to form a 4-10 membered partially or fully saturated mono or bicyclic ring, optionally containing one or more heteroatoms and optionally substituted with one or more R a and/or R b ; R 4 is H or optionally substituted C 1-6 alkyl; and R 5 is H, halo, —CN, optionally substituted C 1-6 alkyl, nitro, —N(R a ) 2 , —C(O)N(R a ) 2 , —CO 2 R a or —C(O)R a . 2. The compound of claim 1 , wherein R 2a is H; R 2b is C 1-3 alkyl; and R 2c is —OC 1-3 alkyl. 3. The compound of claim 2 , wherein R 2a is H; R 2b is CH 3 ; and R 2c is —OCH 3 . 4. The compound of claim 1 , wherein R 2a is H; R 2b is —OC 1-3 alkyl; and R 2c is —OC 1-3 alkyl. 5. The compound of claim 4 , wherein R 2a is H; R 2b is —OC 1-3 alkyl; and R 2c is —OC 1-3 alkyl. 6. The compound of claim 5 , wherein R 2a is H; R 2b is —OCH 3 ; and R 2c is —OCH 3 . 7. The compound of claim 1 , wherein R 2a , R 2b and R 2c are each independently CH 3 , —OCH 3 , or F. 8. The compound of claim 7 , wherein two of R 2a , R 2b and R 2c are CH 3 ; and the other of R 2a , R 2b and R 2c is F. 9. The compound of claim 7 , wherein two of R 2a , R 2b and R 2c are CH 3 ; and the other of R 2a , R 2b and R 2c is —OCH 3 . 10. The compound of claim 7 , wherein two of R 2a , R 2b and R 2c are —OCH 3 ; and the other of R 2a , R 2b and R 2c is F. 11. The compound of claim 7 , wherein two of R 2a , R 2b and R 2c are —OCH 3 ; and the other of R 2a , R 2b and R 2c is CH 3 . 12. The compound of claim 7 , wherein one of R 2a , R 2b and R 2c is CH 3 ; one of R 2a , R 2b and R 2c is —OCH 3 ; and one of R 2a , R 2b and R 2c is F.

Assignees

Inventors

Classifications

  • Immunosuppressants, e.g. drugs for graft rejection · CPC title

  • Antiallergic agents (antiasthmatic agents A61P11/06; ophthalmic antiallergics A61P27/14) · CPC title

  • Drugs for immunological or allergic disorders · CPC title

  • Drugs for specific purposes, not provided for in groups A61P1/00-A61P41/00 · CPC title

  • Immunomodulators · CPC title

Patent family

Related publications grouped by family.

External sources

Frequently asked questions

Answers are generated from the same data shown on this page.

What does patent US9920041B2 cover?
Disclosed are compounds of formula I, compositions containing them, and methods of use for the compounds and compositions in the treatment of conditions in which modulation of the JAK pathway or inhibition of JAK kinases, particularly JAK 2 and JAK3, are therapeutically useful. Also disclosed are methods of making the compounds.
Who is the assignee on this patent?
Rigel Pharmaceuticals Inc
What technology area does this patent fall under?
Primary CPC classification C07D413/12. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Mar 20 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).