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EPIS, S.

Publications and source records attributed to EPIS, S..

2 recordsLinked to original sources

Unbiased lexicometry analyses illuminate plague dynamics during the second pandemic

Knowledge of the second plague pandemic that swept over Europe during the 14th-19th centuries, mainly relies on the exegesis of contemporary texts, prone to interpretive bias. Leveraging bioinformatic tools routinely used in biology, we here developed a quantitative lexicography of 32 texts describing two major plague outbreaks using contemporary plague-unrelated texts as negative controls. Nested, network and category analyses of a 207-word pan-lexicome over-represented in plague-related texts, indicated that "buboes" and "carbuncles" words were significantly associated with plague, signaling ectoparasite- borne plague. Moreover, plague-related words were associated with the words "merchandise", "movable", "tatters", "bed" and "clothes", while no association was found with rats and fleas. These results support the hypothesis that during the second plague pandemic, human ectoparasites were the major drivers of plague. Analyzing ancient texts using here reported method would certify plague-related historical records and indicate particularities of each plague outbreak, including sources of the causative Yersinia pestis.

bioinformatics↗

Boosting innate immunity: Asaia bacteria expressing a protein from Wolbachia determine macrophage activation and killing of Leishmania parasites

Leishmaniases are severe vector-borne diseases affecting humans and animals, caused by Leishmania protozoans. Immune polarization plays a major role in determining the outcome of Leishmania infections: hosts displaying M1-polarized macrophages are protected, while those biased on the M2 side acquire a chronic infection, that could develop into an overt and potentially deadly disease. The identification of the factors involved in M1 polarization is essential for the design of therapeutic and prophylactic interventions, including vaccines. Infection by the filarial nematode Dirofilaria immitis could be one of the factors that interfere with leishmaniasis in dogs. Indeed, filarial nematodes induce a partial skew of the immune response towards M1, likely caused by their bacterial endosymbionts, Wolbachia. Here we have examined the potential of AsaiaWSP, a bacterium engineered for the expression of the Wolbachia surface protein (WSP), as an inductor of M1 macrophage activation and Leishmania killing. Macrophages stimulated with AsaiaWSP displayed a strong leishmanicidal activity, comparable to that determined by the choice-drug amphotericin B. Additionally, AsaiaWSP determined the expression of markers of classical macrophage activation, including M1 cytokines, ROS and NO, and an increase in phagocytosis activity. Asaia not expressing WSP also induced macrophage activation, although at a lower extent compared to AsaiaWSP. In summary, our study, while providing a strong evidence for the immune-stimulating properties of Wolbachia, highlights the translational potential of AsaiaWSP in the areas of the immune-prophylaxis and therapy of leishmaniases, as well as of other diseases that could be subverted by M1 macrophage activation.Competing Interest StatementThe authors have declared no competing interest.View Full Text

microbiology↗