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Leishmania amazonensis infection may affect the ability of the host macrophage to be activated by altering their outward potassium currents
Authors:Camacho Marcela  Forero María Elisa  Fajardo Carolina  Niño Andrea  Morales Patricia  Campos Hector
Institution:a Departamento de Biología, Facultad de Ciencias, Universidad Nacional de Colombia, Bogotá, Colombia
b Laboratorio de Biofísica, Centro Internacional de Física, Edificio Manuel Ancizar, Ciudad Universitaria, AA 4948, Bogotá, Colombia
c Departamento de Química, Facultad de Ciencias, Universidad Nacional de Colombia, Bogotá, Colombia
d Departamento de Física, Facultad de Ciencias, Universidad Nacional de Colombia, Bogotá, Colombia
Abstract:Understanding the impact of intracellular pathogens on the behaviour of their host cells is key to designing new interventions. We are interested in how Leishmania alters the electrical functioning of the plasma membrane of the macrophage it infects. The specific question addressed here is whether Leishmania amazonensis infection alters the macrophage’s outward currents and what the consequences of such changes might be. Using the whole cell configuration of the patch clamp technique, we show that outward peak current density remains constant over the period studied but that time to peak and sensitivity to inhibitors vary during infection. Infected cells take 40% longer to activate and are more sensitive to the potassium channel inhibitor tetraethyl ammonium, compared to control cells, indicating increased potassium outward current activity. Activation of macrophages is associated with increases of nitric oxide production and membrane area, depolarization of the macrophage membrane, down regulation of inward potassium and up regulation of outward currents. After Leishmania infection, macrophage activation is characterised by a reduction of nitric oxide production and of outward current density. We therefore suggest that this reflects a weaker activation.
Keywords:Leishmania  Outward  Potassium  Currents  Macrophage  J774  A1  Weaker activation  PV  parasitophorous vacuole  IOUT  outward current  IKIR  inward potassium current  Vm  membrane potential  NO  nitric oxide  Cm  membrane capacitance  DIDS  4  4&prime  -diisothiocyanatostilbene-2  2&prime  -disulfonic acid  TEA  tetraethyl ammonium  4-AP  4-aminopyridine
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