Publications by authors named "J P Zuliani"

Article Synopsis
  • SVgalLs are toxins from Bothrops snake venoms that bind to galactose-containing carbohydrates in a calcium-dependent way.
  • BjcuL, a key C-type lectin from Bothrops jararacussu venom, has been extensively studied for its role in inflammation by activating immune cell functions.
  • The review discusses the current knowledge on snake venom lectins' effects in pathophysiology and outlines future research directions, including advanced technologies for discovering new therapeutic targets.
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Phospholipases A (PLAs) are highly prevalent in Bothrops snake venom and play a crucial role in inflammatory responses and immune cell activation during envenomation. Despite their significance, the specific role of PLAs from Bothrops mattogrossensis venom (BmV) in inflammation is not fully understood. This study sought to isolate and characterize a novel acidic PLA from BmV, designated BmPLA-A, and to evaluate its effects on human umbilical vein endothelial cells (HUVECs), with a specific focus on cytotoxicity, adhesion, and detachment.

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The immune system is regulated by dendritic cells (DCs), which are highly specialized cells for presenting antigens. They are thought of as natural sentinels that start the immune response triggered by naive T cells against invasive infections. DCs participate in the initial stage of muscle damage in conjunction with monocytes, macrophages, and myogenic cells.

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Background: Crotalus Neutralizing Factor (CNF) is a γ-type Phospholipase A2 (PLA2) inhibitor present in the blood of Crotalus durissus terrificus snake. Particularly, CNF inhibits the toxic action of Crotoxin (CTX), which is a major neurotoxin found in C. d.

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Article Synopsis
  • The study examined how Bothrops atrox venom (BaV) affects the maturation of bone marrow-derived dendritic cells (BMDCs) from mice, focusing on cell markers and cytokine release.
  • BMDCs, which play a key role in initiating immune responses, were influenced by the culture environment and additional stimuli like BaV and LPS, showing changes in surface marker expression indicative of maturation.
  • BaV exposure led to a decrease in key markers for T cell activation, suggesting it may impair the immune system's adaptive response, while also causing selective cytokine release that modifies inflammatory responses.
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