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1.
J Med Chem ; 54(12): 4109-18, 2011 Jun 23.
Artigo em Inglês | MEDLINE | ID: mdl-21591683

RESUMO

17(R),18(S)-epoxyeicosatetraenoic acid [17(R),18(S)-EETeTr], a cytochrome P450 epoxygenase metabolite of eicosapentaenoic acid (EPA), exerts negative chronotropic effects and protects neonatal rat cardiomyocytes against Ca(2+)-overload with EC(50) ≈ 1-2 nM. Structure-activity studies revealed that a cis-Δ(11,12)- or Δ(14,15)-olefin and a 17(R),18(S)-epoxide are minimal structural elements for antiarrhythmic activity whereas antagonist activity was often associated with the combination of a Δ(14,15)-olefin and a 17(S),18(R)-epoxide. Compared with natural material, the agonist and antagonist analogues are chemically and metabolically more robust and several show promise as templates for future development of clinical candidates.


Assuntos
Alcenos/síntese química , Antiarrítmicos/síntese química , Ácidos Araquidônicos/síntese química , Ácido Eicosapentaenoico/análogos & derivados , Ácido Eicosapentaenoico/síntese química , Contração Miocárdica/efeitos dos fármacos , Miócitos Cardíacos/efeitos dos fármacos , Alcenos/farmacologia , Animais , Animais Recém-Nascidos , Antiarrítmicos/farmacologia , Ácidos Araquidônicos/farmacologia , Sítios de Ligação , Cálcio/metabolismo , Células Cultivadas , Ácido Eicosapentaenoico/farmacologia , Miócitos Cardíacos/fisiologia , Ratos , Ratos Wistar , Receptores Eicosanoides/agonistas , Receptores Eicosanoides/antagonistas & inibidores , Estereoisomerismo , Relação Estrutura-Atividade
2.
Org Lett ; 13(2): 344-6, 2011 Jan 21.
Artigo em Inglês | MEDLINE | ID: mdl-21141984

RESUMO

Racemic and scalemic α-(acyloxy)-tri-n-butylstannanes undergo Pd-catalyzed cross-couplings with alkenyl/aryl/heteroaryl iodides, bromides, and triflates in moderate to good yields in THF at 45 °C. Simple aryl iodides and unprotected aza-arenes, two classes of electrophiles that typically react sluggishly, are also good substrates. Cross-couplings proceed with retention of configuration at the alkenyl and stannyl-substituted stereocenters.


Assuntos
Hidrocarbonetos Bromados/química , Hidrocarbonetos Iodados/química , Paládio/química , Compostos de Trialquitina/química , Alcenos/química , Catálise , Estrutura Molecular , Estereoisomerismo
3.
Hypertension ; 56(5): 871-8, 2010 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-20837888

RESUMO

We have shown previously that increased vascular endothelial expression of CYP4A2 leads to 20-hydroxyeicosatetraenoic (20-HETE)-dependent hypertension. The renin-angiotensin system is a key regulator of blood pressure. In this study, we examined possible interactions between 20-HETE and the renin-angiotensin system. In normotensive (110±3 mm Hg) Sprague-Dawley rats transduced with a lentivirus expressing the CYP4A2 cDNA under the control of an endothelial-specific promoter (VECAD-4A2), systolic blood pressure increased rapidly, reaching 139±1, 145±3, and 150±2 mm Hg at 3, 5, and 10 days after transduction; blood pressure remained elevated, thereafter, with maximum levels of 163±3 mm Hg. Treatment with lisinopril, losartan, or the 20-HETE antagonist 20-hydroxyeicosa-6(Z), 15(Z)-dienoic acid decreased blood pressure to control values, but blood pressure returned to its high levels after cessation of treatment. Endothelial-specific overexpression of CYP4A2 resulted in increased expression of vascular angiotensin-converting enzyme (ACE) and angiotensin II type 1 receptor and increased levels of plasma and tissue angiotensin II; all were attenuated by treatment with HET0016, an inhibitor of 20-HETE synthesis, or with 20-hydroxyeicosa-6(Z), 15(Z)-dienoic acid. In cultured endothelial cells, 20-HETE specifically and potently induced ACE expression without altering the expression of ACE2, angiotensinogen, or angiotensin II receptors. This is the first study to demonstrate that 20-HETE, a key constrictor eicosanoid in the microcirculation, induces ACE and angiotensin II type 1 receptor expression and increases angiotensin II levels, suggesting that the mechanisms by which 20-HETE promotes hypertension include activation of the renin-angiotensin system that is likely initiated at the level of ACE induction.


Assuntos
Angiotensina II/metabolismo , Sistema Enzimático do Citocromo P-450/genética , Ácidos Hidroxieicosatetraenoicos/metabolismo , Hipertensão/genética , Hipertensão/metabolismo , Amidinas/farmacologia , Análise de Variância , Bloqueadores do Receptor Tipo 1 de Angiotensina II/farmacologia , Bloqueadores do Receptor Tipo 1 de Angiotensina II/uso terapêutico , Inibidores da Enzima Conversora de Angiotensina/farmacologia , Inibidores da Enzima Conversora de Angiotensina/uso terapêutico , Animais , Pressão Sanguínea/genética , Western Blotting , Células Cultivadas , Endotélio Vascular/citologia , Endotélio Vascular/efeitos dos fármacos , Endotélio Vascular/metabolismo , Ácidos Hidroxieicosatetraenoicos/farmacologia , Ácidos Hidroxieicosatetraenoicos/uso terapêutico , Lentivirus , Lisinopril/farmacologia , Lisinopril/uso terapêutico , Losartan/farmacologia , Losartan/uso terapêutico , Espectrometria de Massas , Análise de Sequência com Séries de Oligonucleotídeos , Peptidil Dipeptidase A/genética , Peptidil Dipeptidase A/metabolismo , Ratos , Ratos Sprague-Dawley , Receptor Tipo 1 de Angiotensina/genética , Receptor Tipo 1 de Angiotensina/metabolismo , Sistema Renina-Angiotensina/efeitos dos fármacos , Reação em Cadeia da Polimerase Via Transcriptase Reversa , Fatores de Tempo
4.
J Am Soc Nephrol ; 21(10): 1667-77, 2010 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-20595684

RESUMO

High dietary potassium stimulates the renal expression of cytochrome P450 (CYP) epoxygenase 2C23, which metabolizes arachidonic acid (AA). Because the AA metabolite 11,12-epoxyeicosatrienoic acid (11,12-EET) can inhibit the epithelial sodium channel (ENaC) in the cortical collecting duct, we tested whether dietary potassium modulates ENaC function. High dietary potassium increased 11,12-EET in the isolated cortical collecting duct, an effect mimicked by inhibiting the angiotensin II type I receptor with valsartan. In patch-clamp experiments, a high potassium intake or treatment with valsartan enhanced AA-induced inhibition of ENaC, an effect mediated by a CYP-epoxygenase-dependent pathway. Moreover, high dietary potassium and valsartan each augmented the inhibitory effect of 11,12-EET on ENaC. Liquid chromatography/mass spectrometry showed that the rate of EET conversion to dihydroxyeicosatrienoic acids (DHET) was lower in renal tissue obtained from rats on a high-potassium diet than from those on a control diet, but this was not a result of altered expression of soluble epoxide hydrolase (sEH). Instead, suppression of sEH activity seemed to be responsible for the 11,12-EET-mediated enhanced inhibition of ENaC in animals on a high-potassium diet. Patch-clamp experiments demonstrated that 11,12-DHET was a weak inhibitor of ENaC compared with 11,12-EET, whereas 8,9- and 14,15-DHET were not. Furthermore, inhibition of sEH enhanced the 11,12-EET-induced inhibition of ENaC similar to high dietary potassium. In conclusion, high dietary potassium enhances the inhibitory effect of AA and 11,12-EET on ENaC by increasing CYP epoxygenase activity and decreasing sEH activity, respectively.


Assuntos
Ácido 8,11,14-Eicosatrienoico/análogos & derivados , Ácido Araquidônico/metabolismo , Sistema Enzimático do Citocromo P-450/metabolismo , Canais Epiteliais de Sódio/metabolismo , Túbulos Renais Coletores/metabolismo , Potássio/administração & dosagem , Ácido 8,11,14-Eicosatrienoico/metabolismo , Animais , Citocromo P-450 CYP2J2 , Epóxido Hidrolases/metabolismo , Técnicas In Vitro , Masculino , Ratos , Ratos Sprague-Dawley , Receptor Tipo 1 de Angiotensina/metabolismo
5.
Org Biomol Chem ; 7(9): 1771-4, 2009 May 07.
Artigo em Inglês | MEDLINE | ID: mdl-19590768

RESUMO

Functionalized (Z,E)-1-halo-1,3-dienol esters are synthesized in a highly stereoselective manner via CrCl2-mediated rearrangement of allylic trihalomethylcarbinol esters induced by microwave irradiation.


Assuntos
Cloretos/química , Compostos de Cromo/química , Ésteres/síntese química , Metano/análogos & derivados , Micro-Ondas , Ésteres/química , Metano/química , Estrutura Molecular , Estereoisomerismo
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