Almeida_2020_Biomolecules_10_

Reference

Title : Structure-Antifouling Activity Relationship and Molecular Targets of Bio-Inspired(thio)xanthones - Almeida_2020_Biomolecules_10_
Author(s) : Almeida JR , Palmeira A , Campos A , Cunha I , Freitas M , Felpeto AB , Turkina MV , Vasconcelos V , Pinto M , Correia-da-Silva M , Sousa E
Ref : Biomolecules , 10 : , 2020
Abstract :

The development of alternative ecological and effective antifouling technologies is still challenging. Synthesis of nature-inspired compounds has been exploited, given the potential to assure commercial supplies of potential ecofriendly antifouling agents. In this direction, the antifouling activity of a series of nineteen synthetic small molecules, with chemical similarities with natural products, were exploited in this work. Six (4, 5, 7, 10, 15 and 17) of the tested xanthones showed in vivo activity toward the settlement of Mytilus galloprovincialis larvae (EC(50): 3.53-28.60 muM) and low toxicity to this macrofouling species (LC(50) > 500 muM and LC(50)/EC(50): 17.42-141.64), and two of them (7 and 10) showed no general marine ecotoxicity (<10% of Artemia salina mortality) after 48 h of exposure. Regarding the mechanism of action in mussel larvae, the best performance compounds 4 and 5 might be acting by the inhibition of acetylcholinesterase activity (in vitro and in silico studies), while 7 and 10 showed specific targets (proteomic studies) directly related with the mussel adhesive structure (byssal threads), given by the alterations in the expression of Mytilus collagen proteins (PreCols) and proximal thread proteins (TMPs). A quantitative structure-activity relationship (QSAR) model was built with predictive capacity to enable speeding the design of new potential active compounds.

PubMedSearch : Almeida_2020_Biomolecules_10_
PubMedID: 32751491

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Citations formats

Almeida JR, Palmeira A, Campos A, Cunha I, Freitas M, Felpeto AB, Turkina MV, Vasconcelos V, Pinto M, Correia-da-Silva M, Sousa E (2020)
Structure-Antifouling Activity Relationship and Molecular Targets of Bio-Inspired(thio)xanthones
Biomolecules 10 :

Almeida JR, Palmeira A, Campos A, Cunha I, Freitas M, Felpeto AB, Turkina MV, Vasconcelos V, Pinto M, Correia-da-Silva M, Sousa E (2020)
Biomolecules 10 :