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1.
ACS Med Chem Lett ; 10(5): 749-753, 2019 May 09.
Artigo em Inglês | MEDLINE | ID: mdl-31097994

RESUMO

We report a potent cationic lipid, SST-02 ((3-hydroxylpropyl)dilinoleylamine), which possesses a simple chemical structure and is synthesized just in one step. Cationic lipids are key components of siRNA-lipid nanoparticles (LNP), which may serve as potential therapeutic agents for various diseases. For a decade, chemists have given enhanced potency and new functions to cationic lipids along with structural complexity. In this study, we conducted a medicinal chemistry campaign pursuing chemical simplicity and found that even dilinoleylmethylamine (SST-01) and methylpalmitoleylamine could be used for the in vitro and in vivo siRNA delivery. Further optimization revealed that a hydroxyl group boosted potency, and SST-02 showed an ID50 of 0.02 mg/kg in the factor VII (FVII) model. Rats administered with 3 mg/kg of SST-02 LNP did not show changes in body weight, blood chemistry, or hematological parameters, while the AST level decreased at a dose of 5 mg/kg. The use of SST-02 avoids a lengthy synthetic route and may thus decrease the future cost of nucleic acid therapeutics.

2.
J Pharmacol Sci ; 123(3): 256-66, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-24162023

RESUMO

Transient receptor potential vanilloid 1 (TRPV1) is a Ca(2+)-permeable non-selective cation channel that transmits pain signals. TRPV1 is activated by multiple stimuli such as capsaicin, acid, and heat. During inflammation, TRPV1 is reported to be sensitized by protein kinase C (PKC) in dorsal root ganglia (DRG) neurons, which leads to reduction in the threshold of the temperature for TRPV1 activation to body temperature. This sensitization is considered to contribute to chronic inflammatory pain. In a previous study, we discovered orally active 5,5-diarylpentadienamide TRPV1 antagonists. To examine the effects of our TRPV1 antagonists on PKC-sensitized TRPV1, we developed an in vitro assay system to monitor the TRPV1 sensitization by PKC. In this assay system, our TRPV1 antagonists, such as (2E,4Z)-N-[(3R)-3-hydroxy-2-oxo-1,2,3,4-tetrahydro-5-quinolyl]-5-(4-isopropoxyphenyl)-5-(4-trifluoromethylphenyl)-2,4-pentadienamide (K-685), inhibited the activation of TRPV1 sensitized by PKC. The potentiation of heat-induced inward currents by PKC was seen in rat DRG neurons, and K-685 attenuated these currents. Furthermore, K-685 reversed the thermal hyperalgesia and mechanical allodynia in a rat complete Freund's adjuvant-induced inflammatory pain model. These results therefore suggest that K-685 has a strong potential as a new analgesic drug for the treatment of inflammatory pain.


Assuntos
Analgésicos , Dor Crônica/tratamento farmacológico , Dor Crônica/genética , Adjuvante de Freund/efeitos adversos , Inflamação/complicações , Ácidos Pentanoicos/farmacologia , Ácidos Pentanoicos/uso terapêutico , Proteína Quinase C/fisiologia , Quinolonas/farmacologia , Quinolonas/uso terapêutico , Canais de Cátion TRPV/antagonistas & inibidores , Canais de Cátion TRPV/metabolismo , Animais , Dor Crônica/etiologia , Modelos Animais de Doenças , Masculino , Ratos , Ratos Sprague-Dawley
3.
J Med Chem ; 55(7): 3436-51, 2012 Apr 12.
Artigo em Inglês | MEDLINE | ID: mdl-22394104

RESUMO

We have developed a novel and potent chemical series of 5,5-diphenylpentadienamides for targeting TRPV1 in vitro and in vivo. In this investigation, we examined a variety of replacements for the 5-position of dienamides with the goal of addressing issues related to pharmacokinetics. Our data suggest that substitution with alkoxy groups on the phenyl ring at the 5-position increases their ability to penetrate the blood-brain barrier. This investigation culminated in the discovery of compound (R)-36b, which showed a good pharmacokinetic profile. In vivo, compound (R)-36b was found to be effective at reversing mechanical allodynia in rats in a dose-dependent manner, and it reversed thermal hyperalgesia in a model of neuropathic pain induced by sciatic nerve injury.


Assuntos
Alcadienos/síntese química , Amidas/síntese química , Analgésicos/síntese química , Quinolonas/síntese química , Canais de Cátion TRPV/antagonistas & inibidores , Alcadienos/farmacocinética , Alcadienos/farmacologia , Amidas/farmacocinética , Amidas/farmacologia , Analgésicos/farmacocinética , Analgésicos/farmacologia , Animais , Barreira Hematoencefálica/metabolismo , Cálcio/metabolismo , Capsaicina/farmacologia , Cães , Antígenos Nucleares do Vírus Epstein-Barr/genética , Células HEK293 , Haplorrinos , Humanos , Hiperalgesia/prevenção & controle , Masculino , Microssomos Hepáticos/metabolismo , Neuralgia/prevenção & controle , Quinolonas/farmacocinética , Quinolonas/farmacologia , Ratos , Ratos Sprague-Dawley , Estereoisomerismo , Relação Estrutura-Atividade , Canais de Cátion TRPV/agonistas , Canais de Cátion TRPV/genética
4.
Bioorg Med Chem Lett ; 18(3): 1053-7, 2008 Feb 01.
Artigo em Inglês | MEDLINE | ID: mdl-18160288

RESUMO

To improve the poor pharmacokinetic characteristics of VLA-4 inhibitors, novel piperazinylphenylalanine derivatives were designed. This structure is expected to improve physicochemical properties by increasing overall basicity. By changing components at the 4-position of piperazine and the terminal group of the amido bond, 12t was found to be the most potent of this series of compounds. In addition, dichlorobenzoyl derivative 12aa exhibited better oral availability and showed efficacy in an in vivo model after oral administration.


Assuntos
Técnicas de Química Combinatória , Integrina alfa4beta1/antagonistas & inibidores , Fenilalanina/análogos & derivados , Fenilalanina/síntese química , Piperazinas/síntese química , Piperazinas/farmacologia , Molécula 1 de Adesão de Célula Vascular/efeitos dos fármacos , Administração Oral , Animais , Desenho de Fármacos , Camundongos , Estrutura Molecular , Fenilalanina/química , Fenilalanina/farmacologia , Piperazinas/administração & dosagem , Piperazinas/sangue , Piperazinas/química , Relação Estrutura-Atividade
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