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1.
J Med Chem ; 65(6): 4972-4990, 2022 03 24.
Artigo em Inglês | MEDLINE | ID: mdl-35286090

RESUMO

Chromosomal instability (CIN) is a hallmark of cancer that results from errors in chromosome segregation during mitosis. Targeting of CIN-associated vulnerabilities is an emerging therapeutic strategy in drug development. KIF18A, a mitotic kinesin, has been shown to play a role in maintaining bipolar spindle integrity and promotes viability of CIN cancer cells. To explore the potential of KIF18A, a series of inhibitors was identified. Optimization of an initial hit led to the discovery of analogues that could be used as chemical probes to interrogate the role of KIF18A inhibition. Compounds 23 and 24 caused significant mitotic arrest in vivo, which was sustained for 24 h. This would be followed by cell death either in mitosis or in the subsequent interphase. Furthermore, photoaffinity labeling experiments reveal that this series of inhibitors binds at the interface of KIF18A and tubulin. This study represents the first disclosure of KIF18A inhibitors with in vivo activity.


Assuntos
Cinesinas , Neoplasias , Morte Celular , Humanos , Mitose , Neoplasias/tratamento farmacológico , Neoplasias/metabolismo , Fuso Acromático/metabolismo , Tubulina (Proteína)/metabolismo
2.
J Med Chem ; 63(1): 52-65, 2020 01 09.
Artigo em Inglês | MEDLINE | ID: mdl-31820981

RESUMO

KRASG12C has emerged as a promising target in the treatment of solid tumors. Covalent inhibitors targeting the mutant cysteine-12 residue have been shown to disrupt signaling by this long-"undruggable" target; however clinically viable inhibitors have yet to be identified. Here, we report efforts to exploit a cryptic pocket (H95/Y96/Q99) we identified in KRASG12C to identify inhibitors suitable for clinical development. Structure-based design efforts leading to the identification of a novel quinazolinone scaffold are described, along with optimization efforts that overcame a configurational stability issue arising from restricted rotation about an axially chiral biaryl bond. Biopharmaceutical optimization of the resulting leads culminated in the identification of AMG 510, a highly potent, selective, and well-tolerated KRASG12C inhibitor currently in phase I clinical trials (NCT03600883).


Assuntos
Antineoplásicos/uso terapêutico , Neoplasias/tratamento farmacológico , Piperazinas/uso terapêutico , Proteínas Proto-Oncogênicas p21(ras)/antagonistas & inibidores , Piridinas/uso terapêutico , Pirimidinas/uso terapêutico , Pirimidinonas/uso terapêutico , Animais , Antineoplásicos/química , Antineoplásicos/farmacocinética , Ensaios Clínicos como Assunto , Cães , Descoberta de Drogas , Humanos , Isomerismo , Células Madin Darby de Rim Canino , Camundongos Endogâmicos BALB C , Camundongos Nus , Mutação , Piperazinas/química , Piperazinas/farmacologia , Proteínas Proto-Oncogênicas p21(ras)/genética , Piridinas/química , Piridinas/farmacocinética , Piridinas/farmacologia , Pirimidinas/química , Pirimidinas/farmacologia , Pirimidinonas/química , Pirimidinonas/farmacocinética , Ratos , Relação Estrutura-Atividade
4.
Bioorg Med Chem ; 24(10): 2215-34, 2016 05 15.
Artigo em Inglês | MEDLINE | ID: mdl-27085672

RESUMO

One of the challenges for targeting B-Raf(V600E) with small molecule inhibitors had been achieving adequate selectivity over the wild-type protein B-Raf(WT), as inhibition of the latter has been associated with hyperplasia in normal tissues. Recent studies suggest that B-Raf inhibitors inducing the 'DFG-in/αC-helix-out' conformation (Type IIB) likely will exhibit improved selectivity for B-Raf(V600E). To explore this hypothesis, we transformed Type IIA inhibitor (1) into a series of Type IIB inhibitors (sulfonamides and sulfamides 4-6) and examined the SAR. Three selectivity indices were introduced to facilitate the analyses: the B-Raf(V600E)/B-Raf(WT) biochemical ((b)S), cellular ((c)S) selectivity, and the phospho-ERK activation ((p)A). Our data indicates that α-branched sulfonamides and sulfamides show higher selectivities than the linear derivatives. We rationalized this finding based on analysis of structural information from the literature and provided evidence for a monomeric B-Raf-inhibitor complex previously hypothesized to be responsible for the desired B-Raf(V600E) selectivity.


Assuntos
Inibidores de Proteínas Quinases/química , Inibidores de Proteínas Quinases/farmacologia , Proteínas Proto-Oncogênicas B-raf/antagonistas & inibidores , Purinas/química , Purinas/farmacologia , Piridinas/química , Piridinas/farmacologia , Aminação , Cristalografia por Raios X , Desenho de Fármacos , Humanos , Modelos Moleculares , Mutação Puntual , Conformação Proteica em alfa-Hélice/efeitos dos fármacos , Proteínas Proto-Oncogênicas B-raf/química , Proteínas Proto-Oncogênicas B-raf/genética , Proteínas Proto-Oncogênicas B-raf/metabolismo , Relação Estrutura-Atividade
5.
J Med Chem ; 58(24): 9663-79, 2015 Dec 24.
Artigo em Inglês | MEDLINE | ID: mdl-26551034

RESUMO

The HTS-based discovery and structure-guided optimization of a novel series of GKRP-selective GK-GKRP disrupters are revealed. Diarylmethanesulfonamide hit 6 (hGK-hGKRP IC50 = 1.2 µM) was optimized to lead compound 32 (AMG-0696; hGK-hGKRP IC50 = 0.0038 µM). A stabilizing interaction between a nitrogen atom lone pair and an aromatic sulfur system (nN → σ*S-X) in 32 was exploited to conformationally constrain a biaryl linkage and allow contact with key residues in GKRP. Lead compound 32 was shown to induce GK translocation from the nucleus to the cytoplasm in rats (IHC score = 0; 10 mg/kg po, 6 h) and blood glucose reduction in mice (POC = -45%; 100 mg/kg po, 3 h). X-ray analyses of 32 and several precursors bound to GKRP were also obtained. This novel disrupter of GK-GKRP binding enables further exploration of GKRP as a potential therapeutic target for type II diabetes and highlights the value of exploiting unconventional nonbonded interactions in drug design.


Assuntos
Proteínas Adaptadoras de Transdução de Sinal/metabolismo , Glucoquinase/metabolismo , Hipoglicemiantes/química , Sulfonamidas/química , Tiofenos/química , Transporte Ativo do Núcleo Celular , Animais , Glicemia/metabolismo , Núcleo Celular/metabolismo , Cristalografia por Raios X , Citoplasma/metabolismo , Hipoglicemiantes/farmacocinética , Hipoglicemiantes/farmacologia , Masculino , Camundongos , Microssomos Hepáticos/metabolismo , Modelos Moleculares , Conformação Molecular , Ligação Proteica , Ratos Sprague-Dawley , Estereoisomerismo , Relação Estrutura-Atividade , Sulfonamidas/farmacocinética , Sulfonamidas/farmacologia , Tiofenos/farmacocinética , Tiofenos/farmacologia
6.
J Med Chem ; 58(11): 4462-82, 2015 Jun 11.
Artigo em Inglês | MEDLINE | ID: mdl-25914941

RESUMO

The glucokinase-glucokinase regulatory protein (GK-GKRP) complex plays an important role in controlling glucose homeostasis in the liver. We have recently disclosed a series of arylpiperazines as in vitro and in vivo disruptors of the GK-GKRP complex with efficacy in rodent models of type 2 diabetes mellitus (T2DM). Herein, we describe a new class of aryl sulfones as disruptors of the GK-GKRP complex, where the central piperazine scaffold has been replaced by an aromatic group. Conformational analysis and exploration of the structure-activity relationships of this new class of compounds led to the identification of potent GK-GKRP disruptors. Further optimization of this novel series delivered thiazole sulfone 93, which was able to disrupt the GK-GKRP interaction in vitro and in vivo and, by doing so, increases cytoplasmic levels of unbound GK.


Assuntos
Aminopiridinas/farmacologia , Proteínas de Transporte/antagonistas & inibidores , Glucoquinase/antagonistas & inibidores , Hipoglicemiantes/farmacologia , Fígado/efeitos dos fármacos , Bibliotecas de Moléculas Pequenas/farmacologia , Sulfonas/química , Aminopiridinas/química , Animais , Proteínas de Transporte/metabolismo , Cristalografia por Raios X , Glucoquinase/metabolismo , Glucose/metabolismo , Hipoglicemiantes/química , Fígado/citologia , Fígado/metabolismo , Modelos Moleculares , Conformação Molecular , Estrutura Molecular , Ratos , Ratos Sprague-Dawley , Bibliotecas de Moléculas Pequenas/química , Relação Estrutura-Atividade , Sulfonas/farmacologia
7.
J Med Chem ; 57(7): 3094-116, 2014 Apr 10.
Artigo em Inglês | MEDLINE | ID: mdl-24611879

RESUMO

We have recently reported a novel approach to increase cytosolic glucokinase (GK) levels through the binding of a small molecule to its endogenous inhibitor, glucokinase regulatory protein (GKRP). These initial investigations culminated in the identification of 2-(4-((2S)-4-((6-amino-3-pyridinyl)sulfonyl)-2-(1-propyn-1-yl)-1-piperazinyl)phenyl)-1,1,1,3,3,3-hexafluoro-2-propanol (1, AMG-3969), a compound that effectively enhanced GK translocation and reduced blood glucose levels in diabetic animals. Herein we report the results of our expanded SAR investigations that focused on modifications to the aryl carbinol group of this series. Guided by the X-ray cocrystal structure of compound 1 bound to hGKRP, we identified several potent GK-GKRP disruptors bearing a diverse set of functionalities in the aryl carbinol region. Among them, sulfoximine and pyridinyl derivatives 24 and 29 possessed excellent potency as well as favorable PK properties. When dosed orally in db/db mice, both compounds significantly lowered fed blood glucose levels (up to 58%).


Assuntos
Proteínas de Transporte/antagonistas & inibidores , Diabetes Mellitus/tratamento farmacológico , Glucoquinase/antagonistas & inibidores , Hepatócitos/efeitos dos fármacos , Microssomos Hepáticos/efeitos dos fármacos , Piperazinas/química , Sulfonamidas/farmacologia , Animais , Disponibilidade Biológica , Glicemia/metabolismo , Proteínas de Transporte/metabolismo , Cristalografia por Raios X , Diabetes Mellitus/metabolismo , Modelos Animais de Doenças , Glucoquinase/metabolismo , Hepatócitos/metabolismo , Hipoglicemiantes/química , Hipoglicemiantes/farmacologia , Camundongos , Microssomos Hepáticos/metabolismo , Modelos Moleculares , Piperazinas/farmacologia , Ratos , Estereoisomerismo , Relação Estrutura-Atividade , Sulfonamidas/química
8.
J Med Chem ; 57(7): 2989-3004, 2014 Apr 10.
Artigo em Inglês | MEDLINE | ID: mdl-24597733

RESUMO

Transient receptor potential melastatin 8 (TRPM8) is a nonselective cation channel expressed in a subpopulation of sensory neurons in the peripheral nervous system. TRPM8 is the predominant mammalian cold temperature thermosensor and is activated by cold temperatures ranging from 8 to 25 °C and cooling compounds such as menthol or icilin. TRPM8 antagonists are being pursued as potential therapeutics for treatment of pain and bladder disorders. This manuscript outlines new developments in the SAR of a lead series of 1,2,3,4-tetrahydroisoquinoline derivatives with emphasis on strategies to improve pharmacokinetic properties and potency. Selected compounds were profiled in two TRPM8 target-specific in vivo coverage models in rats (the icilin-induced wet dog shake model and the cold pressor test). Compound 45 demonstrated robust efficacy in both pharmacodynamic models with ED90 values <3 mg/kg.


Assuntos
Comportamento Animal/efeitos dos fármacos , Microssomos Hepáticos/efeitos dos fármacos , Atividade Motora/efeitos dos fármacos , Canais de Cátion TRPM/antagonistas & inibidores , Tetra-Hidroisoquinolinas/farmacocinética , Animais , Dicroísmo Circular , Temperatura Baixa , Cães , Humanos , Masculino , Microssomos Hepáticos/metabolismo , Pirimidinonas/farmacologia , Ratos , Ratos Sprague-Dawley , Espectrometria de Massas por Ionização e Dessorção a Laser Assistida por Matriz , Estereoisomerismo , Canais de Cátion TRPM/metabolismo , Tetra-Hidroisoquinolinas/química , Tetra-Hidroisoquinolinas/farmacologia , Distribuição Tecidual
9.
J Med Chem ; 57(2): 325-38, 2014 Jan 23.
Artigo em Inglês | MEDLINE | ID: mdl-24405213

RESUMO

In the previous report , we described the discovery and optimization of novel small molecule disruptors of the GK-GKRP interaction culminating in the identification of 1 (AMG-1694). Although this analogue possessed excellent in vitro potency and was a useful tool compound in initial proof-of-concept experiments, high metabolic turnover limited its advancement. Guided by a combination of metabolite identification and structure-based design, we have successfully discovered a potent and metabolically stable GK-GKRP disruptor (27, AMG-3969). When administered to db/db mice, this compound demonstrated a robust pharmacodynamic response (GK translocation) as well as statistically significant dose-dependent reductions in fed blood glucose levels.


Assuntos
Proteínas de Transporte/metabolismo , Glucoquinase/metabolismo , Hipoglicemiantes/química , Piperazinas/síntese química , Sulfonamidas/síntese química , Alcinos/síntese química , Alcinos/farmacocinética , Alcinos/farmacologia , Animais , Glicemia/metabolismo , Proteínas de Transporte/química , Glucoquinase/química , Hepatócitos/efeitos dos fármacos , Hepatócitos/metabolismo , Humanos , Hipoglicemiantes/farmacocinética , Hipoglicemiantes/farmacologia , Camundongos , Microssomos Hepáticos/metabolismo , Modelos Moleculares , Morfolinas/síntese química , Morfolinas/farmacocinética , Morfolinas/farmacologia , Piperazinas/farmacocinética , Piperazinas/farmacologia , Ligação Proteica , Transporte Proteico , Ratos , Estereoisomerismo , Relação Estrutura-Atividade , Sulfonamidas/farmacocinética , Sulfonamidas/farmacologia
10.
J Med Chem ; 55(17): 7796-816, 2012 Sep 13.
Artigo em Inglês | MEDLINE | ID: mdl-22897589

RESUMO

The phosphoinositide 3-kinase family catalyzes the phosphorylation of phosphatidylinositol-4,5-diphosphate to phosphatidylinositol-3,4,5-triphosphate, a secondary messenger which plays a critical role in important cellular functions such as metabolism, cell growth, and cell survival. Our efforts to identify potent, efficacious, and orally available phosphatidylinositol 3-kinase (PI3K) inhibitors as potential cancer therapeutics have resulted in the discovery of 4-(2-((6-methoxypyridin-3-yl)amino)-5-((4-(methylsulfonyl)piperazin-1-yl)methyl)pyridin-3-yl)-6-methyl-1,3,5-triazin-2-amine (1). In this paper, we describe the optimization of compound 1, which led to the design and synthesis of pyridyltriazine 31, a potent pan inhibitor of class I PI3Ks with a superior pharmacokinetic profile. Compound 31 was shown to potently block the targeted PI3K pathway in a mouse liver pharmacodynamic model and inhibit tumor growth in a U87 malignant glioma glioblastoma xenograft model. On the basis of its excellent in vivo efficacy and pharmacokinetic profile, compound 31 was selected for further evaluation as a clinical candidate and was designated AMG 511.


Assuntos
Inibidores de Fosfoinositídeo-3 Quinase , Inibidores de Proteínas Quinases/farmacologia , Triazinas/farmacologia , Cristalografia por Raios X , Modelos Moleculares , Inibidores de Proteínas Quinases/química
11.
Bioorg Med Chem Lett ; 22(17): 5714-20, 2012 Sep 01.
Artigo em Inglês | MEDLINE | ID: mdl-22832322

RESUMO

Phosphoinositide 3-kinase (PI3K) is an important target in oncology due to the deregulation of the PI3K/Akt signaling pathway in a wide variety of tumors. A series of 4-amino-6-methyl-1,3,5-triazine sulfonamides were synthesized and evaluated as inhibitors of PI3K. The synthesis, in vitro biological activities, pharmacokinetic and in vivo pharmacodynamic profiling of these compounds are described. The most promising compound from this investigation (compound 3j) was found to be a pan class I PI3K inhibitor with a moderate (>10-fold) selectivity over the mammalian target of rapamycin (mTOR) in the enzyme assay. In a U87 MG cellular assay measuring phosphorylation of Akt, compound 3j displayed low double digit nanomolar IC(50) and exhibited good oral bioavailability in rats (F(oral)=63%). Compound 3j also showed a dose dependent reduction in the phosphorylation of Akt in a U87 tumor pharmacodynamic model with a plasma EC(50)=193 nM (91 ng/mL).


Assuntos
Neoplasias/tratamento farmacológico , Inibidores de Fosfoinositídeo-3 Quinase , Inibidores de Proteínas Quinases/química , Inibidores de Proteínas Quinases/farmacologia , Sulfonamidas/química , Sulfonamidas/farmacologia , Serina-Treonina Quinases TOR/antagonistas & inibidores , Animais , Antineoplásicos/química , Antineoplásicos/farmacocinética , Antineoplásicos/farmacologia , Antineoplásicos/uso terapêutico , Sítios de Ligação , Linhagem Celular Tumoral , Cristalografia por Raios X , Feminino , Humanos , Camundongos , Simulação de Acoplamento Molecular , Neoplasias/enzimologia , Neoplasias/metabolismo , Fosfatidilinositol 3-Quinases/química , Fosfatidilinositol 3-Quinases/metabolismo , Fosforilação/efeitos dos fármacos , Inibidores de Proteínas Quinases/farmacocinética , Inibidores de Proteínas Quinases/uso terapêutico , Proteínas Proto-Oncogênicas c-akt/metabolismo , Ratos , Transdução de Sinais/efeitos dos fármacos , Relação Estrutura-Atividade , Sulfonamidas/farmacocinética , Sulfonamidas/uso terapêutico , Serina-Treonina Quinases TOR/metabolismo , Triazinas/química , Triazinas/farmacocinética , Triazinas/farmacologia , Triazinas/uso terapêutico
12.
J Med Chem ; 55(11): 5188-219, 2012 Jun 14.
Artigo em Inglês | MEDLINE | ID: mdl-22548365

RESUMO

A highly selective series of inhibitors of the class I phosphatidylinositol 3-kinases (PI3Ks) has been designed and synthesized. Starting from the dual PI3K/mTOR inhibitor 5, a structure-based approach was used to improve potency and selectivity, resulting in the identification of 54 as a potent inhibitor of the class I PI3Ks with excellent selectivity over mTOR, related phosphatidylinositol kinases, and a broad panel of protein kinases. Compound 54 demonstrated a robust PD-PK relationship inhibiting the PI3K/Akt pathway in vivo in a mouse model, and it potently inhibited tumor growth in a U-87 MG xenograft model with an activated PI3K/Akt pathway.


Assuntos
Classe I de Fosfatidilinositol 3-Quinases/antagonistas & inibidores , Piperazinas/síntese química , Piridinas/síntese química , Sulfonamidas/síntese química , Triazinas/síntese química , Animais , Disponibilidade Biológica , Classe I de Fosfatidilinositol 3-Quinases/fisiologia , Cristalografia por Raios X , Desenho de Fármacos , Feminino , Humanos , Indazóis/síntese química , Indazóis/farmacocinética , Indazóis/farmacologia , Camundongos , Camundongos Nus , Microssomos Hepáticos/metabolismo , Modelos Moleculares , Piperazinas/farmacocinética , Piperazinas/farmacologia , Proteínas Proto-Oncogênicas c-akt/fisiologia , Purinas/síntese química , Purinas/farmacocinética , Purinas/farmacologia , Pirazóis/síntese química , Pirazóis/farmacocinética , Pirazóis/farmacologia , Piridinas/farmacocinética , Piridinas/farmacologia , Pirimidinas/síntese química , Pirimidinas/farmacocinética , Pirimidinas/farmacologia , Ratos , Transdução de Sinais , Relação Estrutura-Atividade , Sulfonamidas/farmacocinética , Sulfonamidas/farmacologia , Sulfonas/síntese química , Sulfonas/farmacocinética , Sulfonas/farmacologia , Serina-Treonina Quinases TOR/antagonistas & inibidores , Triazinas/farmacocinética , Triazinas/farmacologia , Ensaios Antitumorais Modelo de Xenoenxerto
13.
J Med Chem ; 55(4): 1593-611, 2012 Feb 23.
Artigo em Inglês | MEDLINE | ID: mdl-22329507

RESUMO

The transient receptor potential melastatin type 8 (TRPM8) is a nonselective cation channel primarily expressed in a subpopulation of sensory neurons that can be activated by a wide range of stimuli, including menthol, icilin, and cold temperatures (<25 °C). Antagonism of TRPM8 is currently under investigation as a new approach for the treatment of pain. As a result of our screening efforts, we identified tetrahydrothienopyridine 4 as an inhibitor of icilin-induced calcium influx in CHO cells expressing recombinant rat TRPM8. Exploration of the structure-activity relationships of 4 led to the identification of a potent and orally bioavailable TRPM8 antagonist, tetrahydroisoquinoline 87. Compound 87 demonstrated target coverage in vivo after oral administration in a rat pharmacodynamic model measuring the prevention of icilin-induced wet-dog shakes (WDS).


Assuntos
Analgésicos/síntese química , Piperidinas/síntese química , Canais de Cátion TRPM/antagonistas & inibidores , Administração Oral , Analgésicos/química , Analgésicos/farmacologia , Animais , Células CHO , Cálcio/metabolismo , Cricetinae , Cricetulus , Técnicas In Vitro , Masculino , Microssomos Hepáticos/metabolismo , Piperidinas/química , Piperidinas/farmacologia , Pirimidinonas/farmacologia , Ratos , Ratos Sprague-Dawley , Estereoisomerismo , Relação Estrutura-Atividade
14.
J Med Chem ; 54(13): 4735-51, 2011 Jul 14.
Artigo em Inglês | MEDLINE | ID: mdl-21612232

RESUMO

The phosphoinositide 3-kinase (PI3K) family catalyzes the ATP-dependent phosphorylation of the 3'-hydroxyl group of phosphatidylinositols and plays an important role in cell growth and survival. There is abundant evidence demonstrating that PI3K signaling is dysregulated in many human cancers, suggesting that therapeutics targeting the PI3K pathway may have utility for the treatment of cancer. Our efforts to identify potent, efficacious, and orally available PI3K/mammalian target of rapamycin (mTOR) dual inhibitors resulted in the discovery of a series of substituted quinolines and quinoxalines derivatives. In this report, we describe the structure-activity relationships, selectivity, and pharmacokinetic data of this series and illustrate the in vivo pharmacodynamic and efficacy data for a representative compound.


Assuntos
Inibidores de Fosfoinositídeo-3 Quinase , Quinolinas/síntese química , Quinoxalinas/síntese química , Serina-Treonina Quinases TOR/antagonistas & inibidores , Animais , Disponibilidade Biológica , Cristalografia por Raios X , Humanos , Técnicas In Vitro , Fígado/irrigação sanguínea , Fígado/metabolismo , Masculino , Camundongos , Modelos Moleculares , Fosfatidilinositol 3-Quinases/química , Fosforilação , Ligação Proteica , Conformação Proteica , Quinolinas/farmacocinética , Quinolinas/farmacologia , Quinoxalinas/farmacocinética , Quinoxalinas/farmacologia , Ratos , Ratos Sprague-Dawley , Relação Estrutura-Atividade , Serina-Treonina Quinases TOR/química , Ensaios Antitumorais Modelo de Xenoenxerto
15.
Bioorg Med Chem Lett ; 21(11): 3384-9, 2011 Jun 01.
Artigo em Inglês | MEDLINE | ID: mdl-21514825

RESUMO

The discovery of novel and highly potent oxopiperazine based B1 receptor antagonists is described. Compared to the previously described arylsulfonylated (R)-3-amino-3-phenylpropionic acid series, the current compounds showed improved in vitro potency and metabolic stability. Compound 17, 2-((2R)-1-((4-methylphenyl)sulfonyl)-3-oxo-2-piperazinyl)-N-((1R)-6-(1-piperidinylmethyl)-1,2,3,4-tetrahydro-1-naphthalenyl)acetamide, showed EC(50) of 10.3 nM in a rabbit biochemical challenge model. The practical syntheses of chiral arylsulfonylated oxopiperazine acetic acids are also described.


Assuntos
Acetamidas/uso terapêutico , Antagonistas de Receptor B1 da Bradicinina , Inflamação/tratamento farmacológico , Dor/tratamento farmacológico , Piperazinas/uso terapêutico , Acetamidas/síntese química , Acetamidas/química , Animais , Cães , Concentração Inibidora 50 , Camundongos , Modelos Animais , Estrutura Molecular , Piperazinas/síntese química , Piperazinas/química , Coelhos , Ratos , Receptor B1 da Bradicinina/química , Estereoisomerismo , Relação Estrutura-Atividade
16.
Mol Pain ; 3: 39, 2007 Dec 17.
Artigo em Inglês | MEDLINE | ID: mdl-18086308

RESUMO

Agonists of TRPA1 such as mustard oil and its key component AITC cause pain and neurogenic inflammation in humans and pain behavior in rodents. TRPA1 is activated by numerous reactive compounds making it a sensor for reactive compounds in the body. Failure of AITC, formalin and other reactive compounds to trigger pain behavior in TRPA1 knockout mice, as well as the ability of TRPA1 antisense to alleviate cold hyperalgesia after spinal nerve ligation, suggest that TRPA1 is a potential target for novel analgesic agents. Here, we have characterized CHO cells expressing human and rat TRPA1 driven by an inducible promoter. As reported previously, both human and rat TRPA1 are activated by AITC and inhibited by ruthenium red. We have also characterized noxious cold response of these cell lines and show that noxious cold activates both human and rat TRPA1. Further, we have used CHO cells expressing human TRPA1 to screen a small molecule compound library and discovered that 'trichloro(sulfanyl)ethyl benzamides' (AMG2504, AMG5445, AMG7160 and AMG9090) act as potent antagonists of human TRPA1 activated by AITC and noxious cold. However, trichloro(sulfanyl)ethyl benzamides' (TCEB compounds) displayed differential pharmacology at rat TRPA1. AMG2504 and AMG7160 marginally inhibited rat TRPA1 activation by AITC, whereas AMG5445 and AMG9090 acted as partial agonists. In summary, we conclude that both human and rat TRPA1 channels show similar AITC and noxious cold activation profiles, but TCEB compounds display species-specific differential pharmacology at TRPA1.


Assuntos
Benzamidas/farmacologia , Canais de Potencial de Receptor Transitório/antagonistas & inibidores , Animais , Benzamidas/química , Células CHO/efeitos dos fármacos , Cálcio/metabolismo , Isótopos de Cálcio/metabolismo , Capsaicina/metabolismo , Temperatura Baixa/efeitos adversos , Cricetinae , Cricetulus , Relação Dose-Resposta a Droga , Interações Medicamentosas , Humanos , Concentração Inibidora 50 , Isotiocianatos/farmacologia , Potenciais da Membrana/efeitos dos fármacos , Potenciais da Membrana/fisiologia , Técnicas de Patch-Clamp/métodos , Ratos , Especificidade da Espécie , Transfecção , Canais de Potencial de Receptor Transitório/genética
17.
J Med Chem ; 50(15): 3497-514, 2007 Jul 26.
Artigo em Inglês | MEDLINE | ID: mdl-17585749

RESUMO

The vanilloid receptor-1 (VR1 or TRPV1) is a member of the transient receptor potential (TRP) family of ion channels and plays a role as an integrator of multiple pain-producing stimuli. From a high-throughput screening assay, measuring calcium uptake in TRPV1-expressing cells, we identified an N-aryl trans-cinnamide (AMG9810, compound 9) that acts as a potent TRPV1 antagonist. We have demonstrated the antihyperalgesic properties of 9 in vivo and have also reported the discovery of novel, orally bioavailable cinnamides derived from this lead. Herein, we expand our investigations and describe the synthesis and biological evaluation of a series of conformationally constrained analogues of the s-cis conformer of compound 9. These investigations resulted in the identification of 4-amino- and 4-oxopyrimidine cores as suitable isosteric replacements for the trans-acrylamide moiety. The best examples from this series, pyrimidines 79 and 74, were orally bioavailable and exhibited potent antagonism of both rat (IC50 = 4.5 and 0.6 nM, respectively) and human TRPV1 (IC50 = 7.4 and 3.7 nM, respectively). In addition, compound 74 was shown to be efficacious at blocking a TRPV1-mediated physiological response in vivo in the capsaicin-induced hypothermia model in rats; however, it was ineffective at preventing thermal hyperalgesia induced by complete Freund's adjuvant in rats.


Assuntos
Aminoquinolinas/síntese química , Analgésicos/síntese química , Pirimidinas/síntese química , Quinolinas/síntese química , Canais de Cátion TRPV/antagonistas & inibidores , Administração Oral , Aminoquinolinas/química , Aminoquinolinas/farmacologia , Analgésicos/química , Analgésicos/farmacologia , Animais , Disponibilidade Biológica , Temperatura Corporal/efeitos dos fármacos , Células CHO , Cricetinae , Cricetulus , Humanos , Hiperalgesia/prevenção & controle , Injeções Intravenosas , Masculino , Modelos Moleculares , Conformação Molecular , Pirimidinas/química , Pirimidinas/farmacologia , Quinolinas/química , Quinolinas/farmacologia , Ratos , Ratos Sprague-Dawley , Estereoisomerismo , Relação Estrutura-Atividade , Termodinâmica
18.
J Med Chem ; 50(15): 3528-39, 2007 Jul 26.
Artigo em Inglês | MEDLINE | ID: mdl-17585751

RESUMO

Based on the previously reported clinical candidate, AMG 517 (compound 1), a series of related piperazinylpyrimidine analogues were synthesized and evaluated as antagonists of the vanilloid 1 receptor (VR1 or TRPV1). Optimization of in vitro potency and physicochemical and pharmacokinetic properties led to the discovery of (R)-N-(4-(6-(4-(1-(4-fluorophenyl)ethyl)piperazin-1-yl)pyrimidin-4-yloxy)benzo[d]thiazol-2-yl)acetamide (16p), a potent TRPV1 antagonist [rTRPV1(CAP) IC50 = 3.7 nM] with excellent aqueous solubility (>or=200 microg/mL in 0.01 N HCl) and a reduced half-life (rat t1/2 = 3.8 h, dog t1/2 = 2.7 h, monkey t1/2 = 3.2 h) as compared to AMG 517. In addition, compound 16p was shown to be efficacious at blocking a TRPV1-mediated physiological response in vivo (ED50 = 1.9 mg/kg, p.o. in the capsaicin-induced flinch model in rats) and was also effective at reducing thermal hyperalgesia induced by complete Freund's adjuvant in rats (MED = 1 mg/kg, p.o). Based on its improved overall profile, compound 16p (AMG 628) was selected as a second-generation candidate for further evaluation in human clinical trials as a potential new treatment for chronic pain.


Assuntos
Analgésicos/síntese química , Benzotiazóis/síntese química , Pirimidinas/síntese química , Canais de Cátion TRPV/antagonistas & inibidores , Analgésicos/farmacocinética , Analgésicos/farmacologia , Animais , Benzotiazóis/química , Benzotiazóis/farmacocinética , Benzotiazóis/farmacologia , Células CHO , Cricetinae , Cricetulus , Cães , Estabilidade de Medicamentos , Haplorrinos , Humanos , Hiperalgesia/tratamento farmacológico , Masculino , Medição da Dor , Pirimidinas/química , Pirimidinas/farmacocinética , Pirimidinas/farmacologia , Ratos , Ratos Sprague-Dawley , Solubilidade , Estereoisomerismo , Relação Estrutura-Atividade , Canais de Cátion TRPV/genética , Termodinâmica
19.
J Am Chem Soc ; 127(32): 11206-7, 2005 Aug 17.
Artigo em Inglês | MEDLINE | ID: mdl-16089425

RESUMO

A new method for the preparation of highly substituted cyclohexenones is reported. [2 + 2] Cycloaddition of 2-silyloxydienes with allenecarboxylate affords the 1-alkenyl-3-alkylidenecyclobutanol silyl ethers. Thermolysis of these compounds affords the methylene cyclohexenyl silyl ethers with excellent exo selectivity (>95:5) when monosubstituted alkenyl groups are used, while the use of disubstituted alkenyl groups gives generally low selectivity ( approximately 2:1). However, rearrangement of the anion of the cyclobutanol (prepared by acidic hydrolysis of the TMS silyl ether) at low temperature gives the endo product with good to excellent diastereoselectivity (5-23:1). Two different mechanistic rationales are given for the two different processes: the first via a diradical and the second via a cleavage intramolecular Michael addition. Thus, the same starting material (e.g., 20) can be converted into either the exo or endo product, 22x or 22n, with good diastereocontrol by just changing the rearrangement conditions.

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