4.7 Article

Crotoxin Modulates Macrophage Phenotypic Reprogramming

Journal

TOXINS
Volume 15, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/toxins15100616

Keywords

rattlesnake; macrophage plasticity; cytokines; tumor microenvironment; immunomodulatory effect

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Macrophage plasticity plays a vital role in the immune response, and the toxin Crotoxin has been found to influence the phenotypic reprogramming of macrophages, leading to effects on tumor progression.
Macrophage plasticity is a fundamental feature of the immune response since it favors the rapid and adequate change of the functional phenotype in response to the pathogen or the microenvironment. Several studies have shown that Crotoxin (CTX), the major toxin of the Crotalus durissus terrificus snake venom, has a long-lasting antitumor effect both in experimental models and in clinical trials. In this study, we show the CTX effect on the phenotypic reprogramming of macrophages in the mesenchymal tumor microenvironment or those obtained from the peritoneal cavity of healthy animals. CTX (0.9 or 5 mu g/animal subcutaneously) administered concomitantly with intraperitoneal inoculation of tumor cells (1 x 107/0.5 mL, injected intraperitoneally) of Ehrlich Ascitic Tumor (EAT) modulated the macrophages phenotype (M1), accompanied by increased NO center dot production by cells from ascites, and was evaluated after 13 days. On the other hand, in healthy animals, the phenotypic profile of macrophages was modulated in a dose-dependent way at 0.9 mu g/animal: M1 and at 5.0 mu g/animal: M2; this was accompanied by increased NO center dot production by peritoneal macrophages only for the dose of 0.9 mu g/animal of CTX. This study shows that a single administration of CTX interferes with the phenotypic reprogramming of macrophages, as well as with the secretory state of cells from ascites, influencing events involved with mesenchymal tumor progression. These findings may favor the selection of new therapeutic targets to correct compromised immunity in different systems.

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