marine toxins
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Marine Drugs ◽  
2021 ◽  
Vol 19 (10) ◽  
pp. 562
Author(s):  
Rawan Mackieh ◽  
Rita Abou-Nader ◽  
Rim Wehbe ◽  
César Mattei ◽  
Christian Legros ◽  
...  

Voltage-gated sodium channels (VGSCs) are considered to be one of the most important ion channels given their remarkable physiological role. VGSCs constitute a family of large transmembrane proteins that allow transmission, generation, and propagation of action potentials. This occurs by conducting Na+ ions through the membrane, supporting cell excitability and communication signals in various systems. As a result, a wide range of coordination and physiological functions, from locomotion to cognition, can be accomplished. Drugs that target and alter the molecular mechanism of VGSCs’ function have highly contributed to the discovery and perception of the function and the structure of this channel. Among those drugs are various marine toxins produced by harmful microorganisms or venomous animals. These toxins have played a key role in understanding the mode of action of VGSCs and in mapping their various allosteric binding sites. Furthermore, marine toxins appear to be an emerging source of therapeutic tools that can relieve pain or treat VGSC-related human channelopathies. Several studies documented the effect of marine toxins on VGSCs as well as their pharmaceutical applications, but none of them underlined the principal marine toxins and their effect on VGSCs. Therefore, this review aims to highlight the neurotoxins produced by marine animals such as pufferfish, shellfish, sea anemone, and cone snail that are active on VGSCs and discuss their pharmaceutical values.


Food Control ◽  
2021 ◽  
pp. 108428
Author(s):  
Francesco Martelli ◽  
Martina Cirlini ◽  
Luca Dellafiora ◽  
Erasmo Neviani ◽  
Chiara Dall’Asta ◽  
...  
Keyword(s):  

Talanta ◽  
2021 ◽  
Vol 228 ◽  
pp. 122215
Author(s):  
Joost L.D. Nelis ◽  
Davide Migliorelli ◽  
Lea Mühlebach ◽  
Silvia Generelli ◽  
Linda Stewart ◽  
...  

2021 ◽  
Vol 12 ◽  
Author(s):  
Norma Estrada ◽  
Erick J. Núñez-Vázquez ◽  
Alejandra Palacios ◽  
Felipe Ascencio ◽  
Laura Guzmán-Villanueva ◽  
...  

Programmed cell death (PCD) is an essential process for the immune system's development and homeostasis, enabling the remotion of infected or unnecessary cells. There are several PCD's types, depending on the molecular mechanisms, such as non-inflammatory or pro-inflammatory. Hemocytes are the main component of cellular immunity in bivalve mollusks. Numerous infectious microorganisms produce toxins that impair hemocytes functions, but there is little knowledge on the role of PCD in these cells. This study aims to evaluate in vitro whether marine toxins induce a particular type of PCD in hemocytes of the bivalve mollusk Crassostrea gigas during 4 h at 25°C. Hemocytes were incubated with two types of marine toxins: non-proteinaceous toxins from microalgae (saxitoxin, STX; gonyautoxins 2 and 3, GTX2/3; okadaic acid/dynophysistoxin-1, OA/DTX-1; brevetoxins 2 and 3, PbTx-2,-3; brevetoxin 2, PbTx-2), and proteinaceous extracts from bacteria (Vibrio parahaemolyticus, Vp; V. campbellii, Vc). Also, we used the apoptosis inducers, staurosporine (STP), and camptothecin (CPT). STP, CPT, STX, and GTX 2/3, provoked high hemocyte mortality characterized by apoptosis hallmarks such as phosphatidylserine translocation into the outer leaflet of the cell membrane, exacerbated chromatin condensation, DNA oligonucleosomal fragments, and variation in gene expression levels of apoptotic caspases 2, 3, 7, and 8. The mixture of PbTx-2,-3 also showed many apoptosis features; however, they did not show apoptotic DNA oligonucleosomal fragments. Likewise, PbTx-2, OA/DTX-1, and proteinaceous extracts from bacteria Vp, and Vc, induced a minor degree of cell death with high gene expression of the pro-inflammatory initiator caspase-1, which could indicate a process of pyroptosis-like PCD. Hemocytes could carry out both PCD types simultaneously. Therefore, marine toxins trigger PCD's signaling pathways in C. gigas hemocytes, depending on the toxin's nature, which appears to be highly conserved both structurally and functionally.


2021 ◽  
Author(s):  
Paz Otero ◽  
Carmen Vale ◽  
Andrea Boente-Juncal ◽  
Sandra Raposo-García ◽  
Celia Costas ◽  
...  
Keyword(s):  

2021 ◽  
Author(s):  
Charlotta Wirén ◽  
Mònica Campàs ◽  
Maria Rambla-Alegre ◽  
Anna Safont ◽  
Carles Alcaraz ◽  
...  
Keyword(s):  

2021 ◽  
Author(s):  
Paz Otero ◽  
Carmen Vale ◽  
Andrea Boente-Juncal ◽  
Celia Costas ◽  
M. Carmen Louzao ◽  
...  

2020 ◽  
Vol 59 ◽  
pp. 119-129 ◽  
Author(s):  
Jonathan R. Chekan ◽  
Timothy R. Fallon ◽  
Bradley S. Moore
Keyword(s):  

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