Your browser doesn't support javascript.
loading
Mostrar: 20 | 50 | 100
Resultados 1 - 4 de 4
Filtrar
Más filtros










Base de datos
Intervalo de año de publicación
1.
Pharmaceuticals (Basel) ; 17(2)2024 Feb 08.
Artículo en Inglés | MEDLINE | ID: mdl-38399438

RESUMEN

Malaria, Chagas disease, and leishmaniasis are tropical diseases caused by protozoan parasites of the genera Plasmodium, Trypanosoma and Leishmania, respectively. These diseases constitute a major burden on public health in several regions worldwide, mainly affecting low-income populations in economically poor countries. Severe side effects of currently available drug treatments and the emergence of resistant parasites need to be addressed by the development of novel drug candidates. Natural 2,5-Diketopiperazines (2,5-DKPs) constitute N-heterocyclic secondary metabolites with a wide range of biological activities of medicinal interest. Its structural and physicochemical properties make the 2,5-DKP ring a versatile, peptide-like, and stable pharmacophore attractive for synthetic drug design. In the present work, twenty-three novel synthetic 2,5-DKPs, previously synthesized through the versatile Ugi multicomponent reaction, were assayed for their anti-protozoal activities against P. falciparum, T. cruzi, and L. infantum. Some of the 2,5-DKPs have shown promising activities against the target protozoans, with inhibitory concentrations (IC50) ranging from 5.4 to 9.5 µg/mL. The most active compounds also show low cytotoxicity (CC50), affording selectivity indices ≥ 15. Results allowed for observing a clear relationship between the substitution pattern at the aromatic rings of the 2,5-DKPs and their corresponding anti-Plasmodium activity. Finally, calculated drug-like properties of the compounds revealed points for further structure optimization of promising drug candidates.

2.
J Agric Food Chem ; 70(6): 1799-1809, 2022 Feb 16.
Artículo en Inglés | MEDLINE | ID: mdl-35130436

RESUMEN

To investigate the herbicidal potential of 2,5-diketopiperazines (2,5-DKPs), we applied a known protocol to produce a series of 2,5-DKPs through intramolecular N-alkylation of Ugi adducts. However, the method was not successful for the cyclization of adducts presenting aromatic rings with some substituents at the ortho position. Results from DFT calculations showed that the presence of voluminous groups at the ortho position of a benzene ring results in destabilization of the transition structure. Lower activation enthalpies for the SN2-type cyclization of Ugi adducts were obtained when bromine, instead of a chlorine anion, is the leaving group, indicating that the activation enthalpy for the cyclization step controls the formation of the 2,5-DKP. Some Ugi adducts and 2,5-DKPs formed crystals with suitable qualities for single-crystal X-ray diffraction data collection. Phytotoxic damage of some 2,5-DKPs on leaves of the weed Euphorbia heterophylla did not differ from those caused by the commercial herbicide diquat.


Asunto(s)
Herbicidas , Alquilación , Teoría Funcional de la Densidad , Dicetopiperazinas , Estructura Molecular , Rayos X
3.
J Photochem Photobiol B ; 145: 11-8, 2015 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-25748644

RESUMEN

Natural products called rubrolides have been investigated as a model for the development of new herbicides that act on the photosynthesis apparatus. This study comprises a comprehensive analysis of the photosynthesis inhibitory ability of 27 new structurally diverse rubrolide analogues. In general, the results revealed that the compounds exhibited efficient inhibition of the photosynthetic process, but in some cases low water solubility may be a limiting factor. To elucidate their mode of action, the effects of the compounds on PSII and PSI, as well as their partial reaction on chloroplasts and the chlorophyll a fluorescence transients were measured. Our results showed that some of the most active rubrolide analogues act as a Hill reaction inhibitors at the QB level by interacting with the D1 protein at the reducing side of PSII. All of the active analogues follow Tice's rule of 5, which indicates that these compounds present physicochemical properties suitable for herbicides.


Asunto(s)
Furanos/química , Luz , Complejo de Proteína del Fotosistema I/antagonistas & inhibidores , Complejo de Proteína del Fotosistema II/antagonistas & inhibidores , Clorofila/química , Clorofila A , Cloroplastos/metabolismo , Transporte de Electrón , Furanos/metabolismo , Furanos/toxicidad , Herbicidas/química , Herbicidas/metabolismo , Herbicidas/toxicidad , Fotosíntesis/efectos de los fármacos , Fotosíntesis/efectos de la radiación , Complejo de Proteína del Fotosistema I/metabolismo , Complejo de Proteína del Fotosistema II/metabolismo , Espectrometría de Fluorescencia , Spinacia oleracea/metabolismo
4.
J Agric Food Chem ; 62(25): 5772-80, 2014 Jun 25.
Artículo en Inglés | MEDLINE | ID: mdl-24912105

RESUMEN

In a recent paper, we reported the synthesis and photosynthesis-inhibitory activity of a series of analogues of rubrolides. From quantitative structure-activity relationship (QSAR) studies, we found that the most efficient compounds are those having higher ability to accept electrons. On the basis of those findings, we directed our effort to synthesize new analogues bearing a strong electron-withdrawing group (nitro) in the benzylidene ring and evaluate their effects on photosynthesis. However, the employed synthetic approach led to novel cyclopent-4-ene-1,3-diones as major products. Here, we report the synthesis and mechanism of action of such cyclopent-4-ene-1,3-diones as a new class of photosynthesis inhibitors. These compounds block the electron transport at the QB level by interacting at the D1 protein at the reducing side of Photosystem II and act as Hill reaction inhibitors, with higher activity than the corresponding rubrolides. To the best of our knowledge, this is the first report on the photosynthesis inhibitory activity of cyclopentenediones.


Asunto(s)
Herbicidas/farmacología , Fenilacetatos/farmacología , Fotosíntesis/efectos de los fármacos , Spinacia oleracea/efectos de los fármacos , Cloroplastos/efectos de los fármacos , Cloroplastos/enzimología , Cloroplastos/metabolismo , Transporte de Electrón/efectos de los fármacos , Herbicidas/síntesis química , Herbicidas/química , Estructura Molecular , Fenilacetatos/síntesis química , Fenilacetatos/química , Complejo de Proteína del Fotosistema II/antagonistas & inhibidores , Complejo de Proteína del Fotosistema II/metabolismo , Proteínas de Plantas/antagonistas & inhibidores , Proteínas de Plantas/metabolismo , Spinacia oleracea/metabolismo , Relación Estructura-Actividad
SELECCIÓN DE REFERENCIAS
DETALLE DE LA BÚSQUEDA
...