7627-38-5Relevant academic research and scientific papers
FUSED PYRIMIDINE COMPOUNDS, COMPOSITIONS AND MEDICINAL APPLICATIONS THEREOF
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Paragraph 0309, (2021/04/02)
The present disclosure relates to a class of fused pyrimidine compounds of Formula I, their stereoisomers, tautomers, pharmaceutically acceptable salts, polymorphs, solvates, and hydrates thereof. The present disclosure also relates to a process of preparation of these fused pyrimidine compounds, and to pharmaceutical compositions containing them.
BICYCLIC KINASE INHIBITORS AND USES THEREOF
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Paragraph 613; 618; 619, (2021/11/06)
The invention relates to kinase inhibitors, in particular inhibitors of protein kinases including the SIK-family, CSF1R, HCK, TEK-family, BRK, ABL, KIT and/or their mutants. Although structurally similar to other bicyclic kinase inhibitors, the kinase inhibitors of the invention are distinctive; possessing a particular class of heterocyclic moiety. Such kinase inhibitors can display one or more certain properties distinct to their structurally similar kinase inhibitors. The kinase inhibitors of the invention or pharmaceutical compositions comprising them may be used in the treatment of a disorder or condition, such as a proliferative disorder, for example, a leukaemia or solid tumour. In particular, these and other structurally related kinase inhibitors may be used in the treatment of a proliferative disorder - such as a mixed phenotype acute leukaemia (MPAL) - characterised by (inter-alia) the presence of MEF2C protein, a human chromosomal translocation at 11q23, and/or a KMT2A fusion oncoprotein. The kinase inhibitors or pharmaceutical compositions of the invention may be used topically to modulate skin pigmentation in a subject, for example to impart UV protection and reduce skin cancer risk.
PYRIMIDO[4,5-D]PYRIMIDIN-2-ONE DERIVATIVES AS PROTEIN KINASE INHIBITORS
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Paragraph 0269; 0287-0289, (2021/03/05)
Disclosed are a compound selected from novel pyrimido[4,5-d]pyrimidin-2-one derivative compounds having excellent anti-proliferative activity against cancer cells, pharmaceutically acceptable salts thereof, hydrates thereof and stereoisomers thereof, a method for preparing the compound, a pharmaceutical composition for preventing, alleviating or treating cancer metastasis and proliferative diseases containing the compound as an active ingredient, and an anticancer composition against cancer cells, containing the compound as an active ingredient. The compounds of this invention exhibit most excellent selective inhibitory activity agaist LCK and anti-proliferative activity against cancer cells, thus being useful for inhibiting cancer cells, and for preventing or treating cancer metastasis and proliferative diseases.
FGFR4 Inhibitor. Compositions and their use in pharmaceutical preparations
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Paragraph 0057; 0061-0064, (2021/10/27)
The invention provides 3 inhibitor which takes 4 - 4 dihydropyrimidine [5 - d,2] pyrimidine - (1H) FGFR4 ketone as a mother nucleus and has a covalent structure. The examples give 9 specific compounds and kinase inhibitory activity testing of these 9 compounds, wherein LX08 for FGFR4 kinase inhibitory activity is only 7 nm, lower than FIIN - 2 of the active control, and potential application prospects. In addition, by subjecting the synthesized compound to MALDI-TOF mass spectrometry, we found that compounds of LX01, LX05, LX06, LX07, LX08 are covalently bound to FGFR4 of Cys552, cannot covalently bind FGFR4 of Cys477, and LX09 are FGFR4 inhibitors which can be covalently bound to the two cysteines Cys552 and Cys477 in FGFR4.
NOVEL PYRIMIDO[4,5-d]PYRIMIDIN-2-ONE DERIVATIVES AS PROTEIN KINASE INHIBITORS
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Paragraph 0362; 0363; 0389-0394, (2021/03/30)
The present invention is a pyrimido [4, 5-d] pyrimid -2 -one derivative compound showing an excellent anti-proliferative effect on cancer cells. The present invention relates to a pharmaceutically acceptable salt, a hydrate thereof, a stereoisomer thereof, a pharmaceutical composition for preventing, alleviating or treating cancer metastasis and proliferative diseases containing the same as an active ingredient, and an anticancer composition comprising the same as an active ingredient.
BICYCLIC NITROGEN CONTAINING HETEROCYCLES AS INHIBITORS OF SALT-INUCED KINASE SIK2
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Paragraph 00137; 00208-00209, (2021/05/07)
Provided are compounds of the Formula (I), and salts and solvates thereof: (Formula (I)) wherein R2, R3, X1, L, A, R6, R7 and Z are defined in the specification. The compounds are inhibitors of salt-inducible kinase (SIK), particular SIK2, and are useful in therapy, particularly in the treatment of a proliferative disorder, a benign neoplasm, pathological angiogenesis, an inflammatory disease or condition, a musculoskeletal disease or condition, an autoimmune disease, a haematological disease or condition, a neurological disease or condition, a psychiatric disorder, or a metabolic disorder.
6-MEMBERED HETEROCYCLIC DERIVATIVE AND PHARMACEUTICAL COMPOSITION COMPRISING SAME
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Paragraph 0677; 0678, (2018/03/25)
A compound represented by Formula (I): wherein or the like Y1 is O or the like; Z1 is C(R4) or N; Z2a is C(R5a) or the like; Z3a is C(R6) or the like; R4, R5a and R6 are each independently a hydrogen atom or the like; R1 is substituted or unsubstituted aromatic carbocyclyl or the like; R2a, R2b, R2c and R2d are each independently a hydrogen atom or the like; X is N(R7a) or the like; R7a is a hydrogen atom or the like; R3 is or the like Ring B is a 6-membered aromatic carbocycle or the like; R9a and R10a are each independently halogen or the like; n is an integer from 1 to 5; m is an integer from 0 to 4; and p1 is an integer from 0 to 3, or a pharmaceutically acceptable salt thereof.
PYRIMIDINE DERIVATIVES AND THEIR USE IN TREATING OR PREVENTING A RESPIRATORY SYNCYTIAL VIRUS INFECTION
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Page/Page column 24, (2018/03/28)
Pyrimidine derivatives of formula (I) wherein: Z is a direct bond or -(CH2)n- wherein n is 1 or 2; one of X and Y is N, CH or CF, and the other of X and Y is CH; one of R1 and R2 is selected from -NHR, -NR2, -OR, -SR, -S(O)R, -S(O)2R and a group of the following formula (A) and the other of R1 and R2 is selected from -NHR', -OH, -OR' and a group of the above formula (A); R is unsubstituted C1-C6 alkyl; R' is a group selected from C1-C6 alkyl, 5- to 12-membered aryl and C3-C6 cycloalkyl, which group is unsubstituted or substituted; W is -(CH2)m-, -CH2-O-CH2-, -CH2-S-CH2- or -CH2-S(O)2-CH2-; p is 1, q is an integer of 1 - 6 and V is N; or p is 1, q is 0 and V is CH; or p is 0, q is 0 and V is N; r is 0 or 1; and R3 is -(CH2)s-NH2 or -(CH2)s-OH wherein s is 0 or an integer of 1 to 4; and the pharmaceutically acceptable salts thereof are inhibitors of RSV and can therefore be used to treat or prevent an RSV infection.
BICYCLIC UREA KINASE INHIBITORS AND USES THEREOF
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Paragraph 00262; 00263, (2018/09/25)
The present disclosure provides compounds of Formula (I), (II), and (III). The provided compounds are able to bind protein kinases (e.g., SIK) and may be useful in modulating (e.g., inhibiting) the activity of a protein kinase (e.g., SIK, (e.g., SIK1, SIK2, or SIK3)) in a subject or cell. The provided compounds may be useful in treating or preventing a disease (e.g., proliferative disease, musculoskeletal disease, genetic disease, hematological disease, neurological disease, painful condition, psychiatric disorder, or metabolic disorder) in a subject in need thereof. Also provided are pharmaceutical compositions, kits, methods, and uses that include or involve a compound described herein.
First SAR Study for Overriding NRAS Mutant Driven Acute Myeloid Leukemia
Cho, Hanna,Shin, Injae,Ju, Eunhye,Choi, Seunghye,Hur, Wooyoung,Kim, Haelee,Hong, Eunmi,Kim, Nam Doo,Choi, Hwan Geun,Gray, Nathanael S.,Sim, Taebo
supporting information, p. 8353 - 8383 (2018/09/27)
GNF-7, a multitargeted kinase inhibitor, served as a dual kinase inhibitor of ACK1 and GCK, which provided a novel therapeutic strategy for overriding AML expressing NRAS mutation. This SAR study with GNF-7 derivatives, designed to target NRAS mutant-driven AML, led to identification of the extremely potent inhibitors, 10d, 10g, and 11i, which possess single-digit nanomolar inhibitory activity against both ACK1 and GCK. These substances strongly suppress proliferation of mutant NRAS expressing AML cells via apoptosis and AKT/mTOR signaling blockade. Compound 11i is superior to GNF-7 in terms of kinase inhibitory activity, cellular activity, and differential cytotoxicity. Moreover, 10k possessing a favorable mouse pharmacokinetic profile prolonged life-span of Ba/F3-NRAS-G12D injected mice and significantly delayed tumor growth of OCI-AML3 xenograft model without causing the prominent level of toxicity found with GNF-7. Taken together, this study provides insight into the design of novel ACK1 and GCK dual inhibitors for overriding NRAS mutant-driven AML.
