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1.
J Nat Prod ; 84(5): 1434-1441, 2021 05 28.
Artículo en Inglés | MEDLINE | ID: mdl-33979168

RESUMEN

In this study, eight natural isocoumarins (1-8) were isolated from a marine-derived Exserohilum sp. fungus. To explore their structure-activity relationship and discover potent antimalarial leads, a small library of 22 new derivatives (1a-1n, 2a, 3a-3c, 4a-4c, and 7a) were semisynthesized by varying the substituents of the aromatic ring and the aliphatic side chains. The natural compound (1) and three semisynthetic derivatives (1d, 1n, and 2a), possessing an all-cis stereochemistry, exhibited strong antiplasmodial activity with IC50 values of 1.1, 0.8, 0.4, and 2.6 µM, respectively. Mechanism studies show that 1n inhibits hemozoin polymerization and decreases the mitochondrial membrane potential but also inhibits P. falciparum DNA gyrase. 1n not only combines different mechanisms of action but also exhibits a high therapeutic index (CC50/IC50 = 675), high selectivity, and a notable drug-like profile.


Asunto(s)
Antimaláricos/farmacología , Ascomicetos/química , Isocumarinas/farmacología , Animales , Antozoos/microbiología , Antimaláricos/síntesis química , Organismos Acuáticos/química , China , Chlorocebus aethiops , Girasa de ADN , Hemoproteínas , Isocumarinas/síntesis química , Potencial de la Membrana Mitocondrial/efectos de los fármacos , Estructura Molecular , Plasmodium falciparum/efectos de los fármacos , Plasmodium falciparum/enzimología , Especies Reactivas de Oxígeno/metabolismo , Relación Estructura-Actividad , Inhibidores de Topoisomerasa II/farmacología , Células Vero
2.
Cells ; 13(4)2024 Feb 12.
Artículo en Inglés | MEDLINE | ID: mdl-38391947

RESUMEN

Plasmodium parasites need to find red blood cells (RBCs) that, on the one hand, expose receptors for the pathogen ligands and, on the other hand, maintain the right geometry to facilitate merozoite attachment and entry into the red blood cell. Both characteristics change with the maturation of erythrocytes. Some Plasmodia prefer younger vs. older erythrocytes. How does the life evolution of the RBC affect the invasion of the parasite? What happens when the RBC ages? In this review, we present what is known up until now.


Asunto(s)
Malaria Falciparum , Plasmodium falciparum , Humanos , Envejecimiento Eritrocítico , Malaria Falciparum/parasitología , Eritrocitos/parasitología , Proteínas Portadoras
3.
Micromachines (Basel) ; 15(5)2024 Apr 28.
Artículo en Inglés | MEDLINE | ID: mdl-38793163

RESUMEN

Pathological processes often change the mechanical properties of cells. Increased rigidity could be a marker of cellular malfunction. Erythrocytes are a type of cell that deforms to squeeze through tiny capillaries; changes in their rigidity can dramatically affect their functionality. Furthermore, differences in the homeostatic elasticity of the cell can be used as a tool for diagnosis and even for choosing the adequate treatment for some illnesses. More accurate types of equipment needed to study biomechanical phenomena at the single-cell level are very costly and thus out of reach for many laboratories around the world. This study presents a simple and low-cost technique to study the rigidity of red blood cells (RBCs) through the application of electric fields in a hand-made microfluidic chamber that uses a capacitor principle. As RBCs are deformed with the application of voltage, cells are observed under a light microscope. From mechanical force vs. deformation data, the elastic constant of the cells is determined. The results obtained with the capacitor-based method were compared with those obtained using optical tweezers, finding good agreement. In addition, P. falciparum-infected erythrocytes were tested with the electric field applicator. Our technique provides a simple means of testing the mechanical properties of individual cells.

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