Literature DB >> 27109323

The role of TLR2 in the acute inflammatory response induced by Bothrops atrox snake venom.

Vanessa Moreira1, Catarina Teixeira1, Henrique Borges da Silva2, Maria Regina D'Império Lima2, Maria Cristina Dos-Santos3.   

Abstract

Envenomation by snakes of the species Bothrops atrox induces local and systemic effects. Local effects include drastic tissue damage and a marked inflammatory response as a result of the synthesis and release of a variety of protein and lipid mediators. Toll-like receptor (TLR) signaling pathways can play an important role in this response, leading to synthesis of these inflammatory mediators. This study investigated the influence of TLR2 on the acute inflammatory response induced by Bothrops atrox venom. Wild-type C57BL/6 mice (WT) and TLR2 gene knockout mice (TLR2(-/-)) were injected with Bothrops atrox venom (BaV), and the following responses to the venom were assessed in peritoneal exudate: leukocyte accumulation; release of mediators, including CCL-2, IL-10, IL-1β, IL-6 and LTB4; protein expression of COX-1 and COX-2; and quantification of their products PGE2 and TXA2. After injection with BaV, the TLR2(-/-) mice (TLR2(-/-)BaV) had higher levels of IL-6 and CCL-2 than WT animals kept under the same conditions (WTBaV), together with an accumulation of polymorphonuclear leukocytes (PMNs), inhibition of IL-1β and LTB4 and reduced mononuclear leukocyte influx. However, no significant differences in COX-2 protein expression or PGE2, TXA2 and IL-10 production between the TLR2(-/-)BaV and WTBav animals were observed. Together, these results indicate that the signaling pathway activated by TLR2 acts by modulating the induced inflammatory response to BaV through the direct action of venom-associated molecular patterns (VAMPs) or indirectly by forming damage-associated molecular patterns (DAMPs) and that this may have important therapeutic implications.
Copyright © 2016 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Bothrops atrox snake venom; Cytokines; Eicosanoids; Mediators of inflammation; TLR2

Mesh:

Substances:

Year:  2016        PMID: 27109323     DOI: 10.1016/j.toxicon.2016.04.042

Source DB:  PubMed          Journal:  Toxicon        ISSN: 0041-0101            Impact factor:   3.033


  9 in total

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3.  Viperid Envenomation Wound Exudate Contributes to Increased Vascular Permeability via a DAMPs/TLR-4 Mediated Pathway.

Authors:  Alexandra Rucavado; Carolina A Nicolau; Teresa Escalante; Junho Kim; Cristina Herrera; José María Gutiérrez; Jay W Fox
Journal:  Toxins (Basel)       Date:  2016-11-24       Impact factor: 4.546

Review 4.  Inflammation Induced by Platelet-Activating Viperid Snake Venoms: Perspectives on Thromboinflammation.

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5.  Inflammatory Reaction Induced by Two Metalloproteinases Isolated from Bothrops atrox Venom and by Fragments Generated from the Hydrolysis of Basement Membrane Components.

Authors:  Michelle Teixeira de Almeida; Luciana Aparecida Freitas-de-Sousa; Monica Colombini; Sarah N C Gimenes; Eduardo S Kitano; Eliana L Faquim-Mauro; Solange M T Serrano; Ana Maria Moura-da-Silva
Journal:  Toxins (Basel)       Date:  2020-02-02       Impact factor: 4.546

6.  Human neutrophils functionality under effect of an Asp49 phospholipase A2 isolated from Bothrops atrox venom.

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Journal:  Toxicon X       Date:  2020-03-18

7.  Modulation of Adhesion Molecules Expression by Different Metalloproteases Isolated from Bothrops Snakes.

Authors:  Bianca C Zychar; Patrícia B Clissa; Eneas Carvalho; Adilson S Alves; Cristiani Baldo; Eliana L Faquim-Mauro; Luís Roberto C Gonçalves
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8.  Profiling the Murine Acute Phase and Inflammatory Responses to African Snake Venom: An Approach to Inform Acute Snakebite Pathology.

Authors:  Jaffer Alsolaiss; Chloe A Evans; George O Oluoch; Nicholas R Casewell; Robert A Harrison
Journal:  Toxins (Basel)       Date:  2022-03-22       Impact factor: 5.075

Review 9.  The Search for Natural and Synthetic Inhibitors That Would Complement Antivenoms as Therapeutics for Snakebite Envenoming.

Authors:  José María Gutiérrez; Laura-Oana Albulescu; Rachel H Clare; Nicholas R Casewell; Tarek Mohamed Abd El-Aziz; Teresa Escalante; Alexandra Rucavado
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  9 in total

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