Malaria, caused by an intracellular protozoan parasite of the genus Plasmodium, is one of the most important infectious diseases worldwide. In 2017, a total of 219 millions cases were reported with 435,000 deaths related to malaria. A major complication of malaria infection is cerebral malaria (CM), characterized by enhanced blood-brain barrier permeability, leukocyte infiltration and/or activation, and neuronal dropout resulting in coma and death in significant numbers of individuals, especially children. Despite the high incidence and mortality, the pathogenesis of cerebral malaria is not well characterized. Hemozoin (HMZ) or "malaria pigment," a by-product of intraerythrocytic parasite-mediated hemoglobin catabolism, is released into the bloodstream after lysis of the host infected erythrocyte. The effects of HMZ on brain cells has not been studied due to the contamination/adhesion/aggregation of the HMZ with host and toxic parasitic factors. We now demonstrate that extracellular purified HMZ is taken up by human neurons and astrocytes, resulting in cellular dysfunction and toxicity. These findings contribute to a better understanding of the neuropathogenesis of CM and provide evidence that HMZ accumulation in the bloodstream could result in CNS compromise. Thus, alternative approaches to reducing circulating HMZ could serve as a potential treatment.
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http://dx.doi.org/10.1016/j.brainres.2019.146317 | DOI Listing |
Biomed Khim
December 2024
Faculty of Pharmacy, Obafemi Awolowo University, Ile-Ife, Osun State, Nigeria; College of Health Sciences, Osun State University, Osogbo, Osun State, Nigeria.
Cerebral malaria (CM) is a fatal complication of Plasmodium falciparum infection. The biological and physiological links between CM, inflammation, and inflammasome, point to the complexity of its pathology. Resistance to available and affordable drugs, worsening economic crisis, and urgent need for integration of orthodox with traditional/alternative medicine, actualized the search for sustainable pharmacotherapy.
View Article and Find Full Text PDFChem Biodivers
December 2024
UFPA: Universidade Federal do Para, Biological Science, Rua Augusto Corrêa S/N, Guamá, Belém 66075-900, Pará, Brazil, Belem, BRAZIL.
Oxidative stress is a pivotal factor in the pathogenesis of malaria, contributing to the development of conditions such as anemia, respiratory complications, and cerebral malaria. To counteract oxidative damage, we evaluated the effects of vitamin E (α-TOH) and D-α-tocopherol polyethylene glycol succinate 1000 (TPGS) supplementation on parasitemia progression, mortality rate, and blood-brain barrier (BBB) permeability in Plasmodium berghei ANKA-infected mice. The mice were divided into four groups: a control group (untreated and uninfected), an infected group (Pb), a TPGS+Pb group, and an α-TOH+Pb group.
View Article and Find Full Text PDFMalar J
December 2024
Department of Infectious Diseases and Tropical Medicine, Hospital St. Georg, Leipzig, Germany.
Background: Post malaria neurologic syndrome (PMNS) is a rare complication of malaria, usually caused by Plasmodium falciparum. The clinical picture is highly variable and ranges from qualitative disturbances of consciousness and psychosis to damage to the peripheral nerves, usually occurring three to eight weeks after treated malaria.
Case Presentation: We report the case of a 54-year-old male who presented with recurrent clinical symptoms three and a half weeks after severe falciparum malaria.
J Infect Dis
December 2024
Department of Infection Biology, London School of Hygiene and Tropical Medicine, United Kingdom.
Background: Malaria remains a major public health concern with substantial morbidity and mortality worldwide. In Malaysia, the emergence of Plasmodium knowlesi has led to a surge in zoonotic malaria cases and deaths in recent years. Signs of cerebral involvement have been observed in a noncomatose, fatal case of knowlesi infection, but the potential impact of this malaria species on the brain remains unexplored.
View Article and Find Full Text PDFForensic Sci Med Pathol
December 2024
Chair and Department of Forensic Medicine, Jagiellonian University Medical College, Kraków, Poland.
The diagnosis of malaria during the autopsy of a decomposed corpse may prove challenging. Macroscopic changes are non-specific and may include, among others, cerebral oedema, pulmonary oedema, hepatosplenomegaly and, on occasion, the presence of petechiae. The most effective diagnostic tools for malaria are the examination of blood smears and the use of rapid immunochromatographic tests.
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