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CD95 (FAS) and CD178 (FASL) induce the apoptosis of CD4+ and CD8+ cells isolated from the peripheral blood and spleen of dogs naturally infected with Leishmania spp
(2013-10-08)
Infected dogs are urban reservoirs of Leishmania chagasi, which is a causative agent of visceral leishmaniasis (VL). Dogs exhibit immune suppression during the course of this disease, and lymphocyte apoptosis is involved ...
CD95 (FAS) and CD178 (FASL) induce the apoptosis of CD4+ and CD8+ cells isolated from the peripheral blood and spleen of dogs naturally infected with Leishmania spp
(2013-10-08)
Infected dogs are urban reservoirs of Leishmania chagasi, which is a causative agent of visceral leishmaniasis (VL). Dogs exhibit immune suppression during the course of this disease, and lymphocyte apoptosis is involved ...
Alteration of sFAS and sFAS ligand expression during canine visceral leishmaniosis
(Elsevier B.V., 2014-10-15)
Visceral leishmaniosis (VL) is caused by intracellular parasites of the genus Leishmania that affect humans and several animal species. Dogs are one of the main urban reservoirs of Leishmania infantum and play a central ...
Alteration of sFAS and sFAS ligand expression during canine visceral leishmaniosis
(Elsevier B.V., 2015)
HPV-mediated resistance to TNF and TRAIL is characterized by global alterations in apoptosis regulatory factors, dysregulation of death receptors, and induction of ROS/RNS
(MDPI AG, 2019)
© 2019 by the authors. Licensee MDPI, Basel, Switzerland.Persistent infection with high-risk human papilloma virus (HR-HPV) is the main risk factor for the development of invasive cervical cancer although is not sufficient ...
Implication of NF-κB and p53 in the expression of TRAIL-death receptors and apoptosis by apple procyanidins in human metastatic SW620 cellsImplicación de NF-κB y p53 en la expresión de receptores de muerte-TRAIL y apoptosis por procianidinas en células metastásicas humanas SW620
(Instituto Nacional de SaludAlimentación y Nutrición HumanaImpacto de Componentes Alimentarios en la SaludBogotá, Colombia, 2021)
Alteration of sFAS and sFAS ligand expression during canine visceral leishmaniosis
(Elsevier B.V., 2015)