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Bernardes, J. P. R. A.

Publications and source records attributed to Bernardes, J. P. R. A..

2 recordsLinked to original sources

Mapping Histoplasma in Bats and Cave Ecosystems: Evidence from Midwestern Brazil

Caves serve as natural reservoirs for diverse microbial species due to their unique biotic and abiotic conditions. Histoplasma spp. is frequently associated with guano-enriched soil, low luminosity, and high humidity, particularly in Latin America, a region highly endemic for histoplasmosis. Despite the continents diverse biomes, local environmental and host distributions of Histoplasma remain poorly understood. To address this knowledge gap, we conducted a Histoplasma-specific quantitative PCR (qPCR) assay targeting the hc100 gene on guano samples from seven bat-inhabited caves and tissue samples from 74 bats of nine species in the Federal District of Brazil and surround-ing regions. We detected Histoplasma DNA in 16 of 80 soil samples (20%) and in 33 bats representing seven species. Among 222 tissue samples (74 lung, 74 spleen, 74 brain), 39 tested positive: 22 lung, 10 spleen, and 7 brain samples. Four bats had Histoplasma DNA in both lung and brain, and two in both lung and spleen. By mapping the presence of Histoplasma across sampled caves, we identified environmental hotspots of fungal prevalence, emphasizing the need for targeted surveillance. ImportanceOur study provides critical insights into the environmental and host distribution of Histoplasma spp. in Brazil, identifying caves with high fungal prevalence and demonstrating its presence in multiple bat species. These findings underscore the necessity of public health interventions to mitigate the risk of histoplasmosis among cave visitors in the region. Additionally, we highlight the utility of qPCR for detecting Histoplasma in environmental and biological samples, supporting future epidemiological research in Latin America.

microbiology↗

Potential antiviral and immunomodulatory Amazonian medicinal plant compounds

BackgroundNovel antiretroviral drugs are in constant need for HIV/AIDS patients to face the continuous emerging resistance to the commonly prescribed combination of anti-HIV synthetic agents and their side effects. MethodsAmazonian medicinal plants, Licania macrophylla (Chrysobalanaceae) and Ouratea hexasperma (Ochnaceae) were assayed for antiretroviral and immunomodulatory activity, utilizing an established human leukocyte cell line and the Simian Immunodeficiency Virus. The IL-4, IL-6, IL-8, IL-10 and IFN-y cytokines were quantified after leukocyte culture stimulation with ethanolic plant extracts and challenged with lentivirus infection. ResultsMitotic activity induced by O. hexasperma extract was significatively more pronounced than L. macrophylla extract. Cytokine modulation was recorded in SIV infected cells under independent treatment with O. hexasperma and L. macrophylla extracts. Betulinic acid, ninuriflavone, (-)epigallocathechine, (-)gallocatechine and 4-O-methyl-epigallocatechin were isolated from L. macrophyla. ConclusionsCellular proliferative activity and cytokine modulation by the extracts assayed have potential applications in the therapy of HIV/AIDS pathology, as the isolated compounds of these plants have been reported for antiviral activity.

immunology↗